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  • Question 1 - A 61-year-old man recovering from severe community-acquired pneumonia is being assessed by a...

    Incorrect

    • A 61-year-old man recovering from severe community-acquired pneumonia is being assessed by a consultant and a medical student. He has a medical history of hypertension, heart failure, depression, and gout, and is currently taking ramipril, atenolol, furosemide, sertraline, allopurinol, and ibuprofen. The consultant suspects that his slightly low blood pressure may be due to his medications. The patient's urea and electrolyte levels are provided below. Can you identify the role of atenolol in reducing blood pressure?

      Na+ 142 mmol/l
      K+ 4.2 mmol/l
      Urea 6 mmol/l
      Creatinine 68 µmol/l

      Your Answer: Inhibits the conversion of angiotensin I to angiotensin II

      Correct Answer: Inhibits the release of renin from the kidneys

      Explanation:

      Beta-blockers have an added advantage in treating hypertension as they can suppress the release of renin from the kidneys. This is because the release of renin is partly regulated by β1-adrenoceptors in the kidney, which are inhibited by beta-blockers. By reducing the amount of circulating plasma renin, the levels of angiotensin II and aldosterone decrease, leading to increased renal loss of sodium and water, ultimately lowering arterial pressure.

      It is important to note that atenolol does not compete with aldosterone, unlike spironolactone, a potassium-sparing diuretic that does compete with aldosterone for its receptor. Additionally, atenolol does not inhibit the conversion of ATI to ATII, which is achieved by ACE-inhibitors like ramipril.

      While both beta-1 and beta-2 receptors are present in the heart, atenolol primarily acts on beta-1 receptors, resulting in negative inotropic, negative chronotropic, and positive lusitropic effects. Lusitropy refers to the relaxation of the heart.

      Therefore, the statement that atenolol inhibits the release of renin is correct, and the fifth option is incorrect.

      Beta-blockers are a class of drugs that are primarily used to manage cardiovascular disorders. They have a wide range of indications, including angina, post-myocardial infarction, heart failure, arrhythmias, hypertension, thyrotoxicosis, migraine prophylaxis, and anxiety. Beta-blockers were previously avoided in heart failure, but recent evidence suggests that certain beta-blockers can improve both symptoms and mortality. They have also replaced digoxin as the rate-control drug of choice in atrial fibrillation. However, their role in reducing stroke and myocardial infarction has diminished in recent years due to a lack of evidence.

      Examples of beta-blockers include atenolol and propranolol, which was one of the first beta-blockers to be developed. Propranolol is lipid-soluble, which means it can cross the blood-brain barrier.

      Like all drugs, beta-blockers have side-effects. These can include bronchospasm, cold peripheries, fatigue, sleep disturbances (including nightmares), and erectile dysfunction. There are also some contraindications to using beta-blockers, such as uncontrolled heart failure, asthma, sick sinus syndrome, and concurrent use with verapamil, which can precipitate severe bradycardia.

    • This question is part of the following fields:

      • Cardiovascular System
      8.8
      Seconds
  • Question 2 - Mrs. Smith is a 75-year-old woman who presents to the emergency department with...

    Correct

    • Mrs. Smith is a 75-year-old woman who presents to the emergency department with progressive shortness of breath over the past 5 days. Last night she woke up suddenly because she couldn't catch her breath and developed a dry cough. Her breathing improved when she sat upright on the edge of her bed. She denies any chest pain, leg pain or fainting spells.

      Her past medical history includes a myocardial infarction 5 years ago for which she underwent a coronary artery bypass graft, hypertension and type 2 diabetes. She has been smoking for 30 years and doesn't drink any alcohol.

      What is the most likely diagnosis?

      Your Answer: Left-sided heart failure

      Explanation:

      The likely diagnosis for a patient experiencing paroxysmal nocturnal dyspnoea is left-sided heart failure. This symptom, which involves sudden waking at night due to shortness of breath, is a common feature of heart failure, particularly on the left side. Aortic dissection, myocardial infarction, and pulmonary embolism are unlikely diagnoses as they present with different symptoms. Right-sided heart failure is also an unlikely diagnosis as it presents with different features such as raised JVP, ankle oedema, and hepatomegaly.

      Features of Chronic Heart Failure

      Chronic heart failure is a condition that affects the heart’s ability to pump blood effectively. It is characterized by several features that can help in its diagnosis. Dyspnoea, or shortness of breath, is a common symptom of chronic heart failure. Patients may also experience coughing, which can be worse at night and accompanied by pink or frothy sputum. Orthopnoea, or difficulty breathing while lying down, and paroxysmal nocturnal dyspnoea, or sudden shortness of breath at night, are also common symptoms.

      Another feature of chronic heart failure is the presence of a wheeze, known as a cardiac wheeze. Patients may also experience weight loss, known as cardiac cachexia, which occurs in up to 15% of patients. However, this may be hidden by weight gained due to oedema. On examination, bibasal crackles may be heard, and signs of right-sided heart failure, such as a raised JVP, ankle oedema, and hepatomegaly, may be present.

      In summary, chronic heart failure is a condition that can be identified by several features, including dyspnoea, coughing, orthopnoea, paroxysmal nocturnal dyspnoea, wheezing, weight loss, bibasal crackles, and signs of right-sided heart failure. Early recognition and management of these symptoms can help improve outcomes for patients with chronic heart failure.

    • This question is part of the following fields:

      • Cardiovascular System
      6.9
      Seconds
  • Question 3 - During a splenectomy, which structure will need to be divided in a 33-year-old...

    Incorrect

    • During a splenectomy, which structure will need to be divided in a 33-year-old man?

      Your Answer: Left crus of diaphragm

      Correct Answer: Short gastric vessels

      Explanation:

      When performing a splenectomy, it is necessary to cut the short gastric vessels located in the gastrosplenic ligament. The mobilization of the splenic flexure of the colon may also be required, but it is unlikely that it will need to be cut. This is because it is a critical area that would require a complete colonic resection if it were divided.

      Understanding the Anatomy of the Spleen

      The spleen is a vital organ in the human body, serving as the largest lymphoid organ. It is located below the 9th-12th ribs and has a clenched fist shape. The spleen is an intraperitoneal organ, and its peritoneal attachments condense at the hilum, where the vessels enter the spleen. The blood supply of the spleen is from the splenic artery, which is derived from the coeliac axis, and the splenic vein, which is joined by the IMV and unites with the SMV.

      The spleen is derived from mesenchymal tissue during embryology. It weighs between 75-150g and has several relations with other organs. The diaphragm is superior to the spleen, while the gastric impression is anterior, the kidney is posterior, and the colon is inferior. The hilum of the spleen is formed by the tail of the pancreas and splenic vessels. The spleen also forms the apex of the lesser sac, which contains short gastric vessels.

      In conclusion, understanding the anatomy of the spleen is crucial in comprehending its functions and the role it plays in the human body. The spleen’s location, weight, and relations with other organs are essential in diagnosing and treating spleen-related conditions.

    • This question is part of the following fields:

      • Gastrointestinal System
      5.8
      Seconds
  • Question 4 - A 45-year-old man is undergoing psychiatric assessment for presenting symptoms of low mood,...

    Incorrect

    • A 45-year-old man is undergoing psychiatric assessment for presenting symptoms of low mood, lack of interest, fatigue, and suicidal ideation. He has been unemployed for a year and divorced his wife. He is facing financial difficulties and has been heavily drinking alcohol for the past few years. He attempted suicide three years ago.

      What is the primary risk factor for future suicide completion in this patient?

      Your Answer: Alcohol history

      Correct Answer: Previous suicide attempt

      Explanation:

      One of the most significant risk factors for future suicide completion is a history of previous suicide attempts, even when other risk factors such as male sex, young or elderly age, depression, alcohol or drug use, lack of social support, and expressed future intent are present.

      The risk of suicide in psychiatric patients is often stratified into high, medium, or low risk categories, but there is limited evidence on the positive predictive value of individual risk factors. A review in the BMJ concluded that these assessments may not be useful in guiding decision making, as 50% of suicides occur in patients deemed low risk. However, certain factors have been associated with an increased risk of suicide, such as male sex, history of deliberate self-harm, alcohol or drug misuse, mental illness, depression, schizophrenia, chronic disease, advancing age, unemployment or social isolation, and being unmarried, divorced, or widowed.

      If a patient has attempted suicide, there are additional factors that increase the risk of completed suicide in the future, such as efforts to avoid discovery, planning, leaving a written note, final acts such as sorting out finances, and using a violent method. On the other hand, there are protective factors that can reduce the risk of suicide, such as having family support, having children at home, and having a religious belief.

    • This question is part of the following fields:

      • Psychiatry
      6.3
      Seconds
  • Question 5 - A woman in her 30s is stabbed in the chest to the right...

    Correct

    • A woman in her 30s is stabbed in the chest to the right of the manubriosternal angle. Which structure is least likely to be injured in this scenario?

      Your Answer: Right recurrent laryngeal nerve

      Explanation:

      The right vagus nerve gives rise to the right recurrent laryngeal nerve at a more proximal location, which then curves around the subclavian artery in a posterior direction. Therefore, out of the given structures, it is the least susceptible to injury.

      The mediastinum is the area located between the two pulmonary cavities and is covered by the mediastinal pleura. It extends from the thoracic inlet at the top to the diaphragm at the bottom. The mediastinum is divided into four regions: the superior mediastinum, middle mediastinum, posterior mediastinum, and anterior mediastinum.

      The superior mediastinum is the area between the manubriosternal angle and T4/5. It contains important structures such as the superior vena cava, brachiocephalic veins, arch of aorta, thoracic duct, trachea, oesophagus, thymus, vagus nerve, left recurrent laryngeal nerve, and phrenic nerve. The anterior mediastinum contains thymic remnants, lymph nodes, and fat. The middle mediastinum contains the pericardium, heart, aortic root, arch of azygos vein, and main bronchi. The posterior mediastinum contains the oesophagus, thoracic aorta, azygos vein, thoracic duct, vagus nerve, sympathetic nerve trunks, and splanchnic nerves.

      In summary, the mediastinum is a crucial area in the thorax that contains many important structures and is divided into four regions. Each region contains different structures that are essential for the proper functioning of the body.

    • This question is part of the following fields:

      • Respiratory System
      6.2
      Seconds
  • Question 6 - A 28-year-old woman visits her doctor with concerns about her pregnancy. She is...

    Incorrect

    • A 28-year-old woman visits her doctor with concerns about her pregnancy. She is currently 16 weeks pregnant and works as a nurse in a hospital. She has been informed that one of her patients has been diagnosed with cytomegalovirus. She is worried about the potential impact on her baby's development.

      What are the effects of cytomegalovirus on foetal development?

      Your Answer: Chorioretinitis, diffuse intracranial calcifications and hydrocephalus

      Correct Answer: Severe anemia and hydrops fetalis

      Explanation:

      Parvovirus B19 infection in pregnant women can lead to severe anaemia and hydrops fetalis in the foetus. The virus suppresses fetal erythropoiesis, causing a halt in red blood cell production for approximately two weeks. Severe anaemia can result in high output heart failure, leading to left-heart failure and pulmonary oedema. This eventually leads to right heart failure and the accumulation of fluid in serous cavities, causing hydrops fetalis.

      Chorioretinitis, diffuse intracranial calcifications, and hydrocephalus, as well as chorioretinitis, sensorineural hearing loss, and a blueberry muffin rash, are incorrect answers. These are classic triads associated with congenital toxoplasmosis and congenital cytomegalovirus, respectively. Granulomatosis infantiseptica is also an incorrect answer, as it is a condition caused by listeria monocytogenes infection. Increased risk of neural tube defects is also an incorrect answer, as it is typically caused by folate deficiency or teratogenic side-effects of certain medications.

      Parvovirus B19: A Virus with Various Clinical Presentations

      Parvovirus B19 is a type of DNA virus that can cause different clinical presentations. One of the most common is erythema infectiosum, also known as fifth disease or slapped-cheek syndrome. This illness may manifest as a mild feverish condition or a noticeable rash that appears after a few days. The rash is characterized by rose-red cheeks, which is why it is called slapped-cheek syndrome. It may spread to other parts of the body but rarely involves the palms and soles. The rash usually peaks after a week and then fades, but it may recur for some months after exposure to triggers such as warm baths, sunlight, heat, or fever. Most children recover without specific treatment, and school exclusion is unnecessary as the child is no longer infectious once the rash emerges. However, in adults, the virus may cause acute arthritis.

      Aside from erythema infectiosum, parvovirus B19 can also present as asymptomatic, pancytopenia in immunosuppressed patients, or aplastic crises in sickle-cell disease. The virus suppresses erythropoiesis for about a week, so aplastic anemia is rare unless there is a chronic hemolytic anemia. In pregnant women, the virus can cross the placenta and cause severe anemia due to viral suppression of fetal erythropoiesis, which may lead to heart failure secondary to severe anemia and the accumulation of fluid in fetal serous cavities such as ascites, pleural and pericardial effusions. This condition is called hydrops fetalis and is treated with intrauterine blood transfusions.

      It is important to note that parvovirus B19 can affect an unborn baby in the first 20 weeks of pregnancy. If a woman is exposed early in pregnancy, she should seek prompt advice from her antenatal care provider as maternal IgM and IgG will need to be checked. The virus is spread by the respiratory route, and a person is infectious 3 to 5 days before the appearance of the rash. Children are no longer infectious once the rash appears, and there is no specific treatment. Therefore, school exclusion is unnecessary.

    • This question is part of the following fields:

      • General Principles
      5.3
      Seconds
  • Question 7 - The following result is obtained on a 48-year-old male who is admitted with...

    Correct

    • The following result is obtained on a 48-year-old male who is admitted with acute onset chest pain:
      Serum Cholesterol 7.3 mmol/L (<5.2)
      He has a strong family history of ischaemic heart disease.
      What abnormalities might be expected upon examination of this man?

      Your Answer: Tendon nodules

      Explanation:

      Familial Hypercholesterolaemia and its Manifestations

      Familial hypercholesterolaemia is a condition characterized by high levels of cholesterol in the blood. This condition is often indicated by the deposition of cholesterol in various parts of the body. The history of the patient suggests that they may be suffering from familial hypercholesterolaemia. The deposition of cholesterol can be observed around the corneal arcus, around the eye itself (xanthelasma), and in tendons such as achilles, knuckles or triceps tendons (tendon xanthomas).

      While dietary and lifestyle modifications are recommended, they are usually not enough to manage the condition. High dose lifelong statin therapy is often necessary to control the levels of cholesterol in the blood. It is important to seek medical attention and follow the recommended treatment plan to prevent further complications associated with familial hypercholesterolaemia. The National Institute for Health and Care Excellence (NICE) recommends the use of statin therapy in conjunction with lifestyle modifications for the management of familial hypercholesterolaemia.

    • This question is part of the following fields:

      • Pharmacology
      5.7
      Seconds
  • Question 8 - What is the molecule produced at the end of glycolysis that connects to...

    Correct

    • What is the molecule produced at the end of glycolysis that connects to the Kreb cycle?

      Your Answer: Acetyl CoA

      Explanation:

      The Process of Energy Production from Glucose

      The process of producing energy from glucose involves several steps. The first step is glycolysis, where glucose is converted into fructose 1,6 bisphosphate and split into two 3-carbon particles. These particles are then converted into acetyl CoA, which provides the link with the Kreb cycle. The Kreb cycle, also known as the tricarboxylic acid cycle, is a process where organic acids are modified in a series of steps to produce NADH. Succinate and oxaloacetate are intermediates in the Kreb cycle.

      The final step in the process is the electron transfer chain, which occurs inside mitochondria. The NADH generated during the Kreb cycle is used to produce energy in the form of adenosine triphosphate (ATP) by a series of redox reactions. This process is essential for the production of energy in the body, as ATP is the primary source of energy for cellular processes. By the process of energy production from glucose, we can better understand the importance of maintaining a healthy diet and lifestyle to ensure optimal energy production in the body.

    • This question is part of the following fields:

      • Clinical Sciences
      5.3
      Seconds
  • Question 9 - A 60-year-old man comes to the clinic complaining of a lump on the...

    Incorrect

    • A 60-year-old man comes to the clinic complaining of a lump on the left side of his neck. During the examination, a firm and non-tender swelling is found over the angle of the mandible. The patient also displays asymmetrical facial features, including drooping of the angle of the mouth on the left and an inability to close his left eyelid. What is the probable diagnosis?

      Your Answer: Warthin's tumour

      Correct Answer: Malignant parotid tumour

      Explanation:

      Parotid Mass and Facial Nerve Involvement

      Swelling over the angle of the mandible is a common site for a parotid mass. The majority of these masses are benign, with pleomorphic adenomas being the most common type. However, Warthin’s tumour is also a possibility. Malignancy is indicated when there is involvement of the facial nerve, which is a feature found in malignant parotid tumours. Bilateral facial nerve involvement with bilateral parotid swelling may be indicative of sarcoidosis. Parotitis, on the other hand, causes painful acute swelling over the parotid gland with redness. Bell’s palsy is a benign and often temporary paralysis of the facial nerve, which is usually preceded by a viral infection that causes inflammation and paralysis.

    • This question is part of the following fields:

      • Haematology And Oncology
      5.7
      Seconds
  • Question 10 - A 3 week old infant has been diagnosed with hydrocephalus due to congenital...

    Incorrect

    • A 3 week old infant has been diagnosed with hydrocephalus due to congenital spina bifida. Can you identify the location of cerebrospinal fluid (CSF) production?

      Your Answer: Cerebral aqueduct

      Correct Answer: Choroid plexuses

      Explanation:

      The choroid plexuses, located in the ventricles of the brain, are responsible for the production of CSF. The cerebral aqueduct (or aqueduct of Sylvius) does not have a choroid plexus. The cribriform plate, which is a part of the ethmoid bone, does not produce or secrete anything but a fracture in it can cause CSF leakage into the nose and result in anosmia. The arachnoid granulations (or villi) serve as the communication between the subarachnoid space and the venous sinuses, allowing for the continuous reabsorption of CSF into the bloodstream. The pia mater, which is the innermost layer of the meninges around the brain, encloses the CSF within the subarachnoid space.

      Cerebrospinal Fluid: Circulation and Composition

      Cerebrospinal fluid (CSF) is a clear, colorless liquid that fills the space between the arachnoid mater and pia mater, covering the surface of the brain. The total volume of CSF in the brain is approximately 150ml, and it is produced by the ependymal cells in the choroid plexus or blood vessels. The majority of CSF is produced by the choroid plexus, accounting for 70% of the total volume. The remaining 30% is produced by blood vessels. The CSF is reabsorbed via the arachnoid granulations, which project into the venous sinuses.

      The circulation of CSF starts from the lateral ventricles, which are connected to the third ventricle via the foramen of Munro. From the third ventricle, the CSF flows through the cerebral aqueduct (aqueduct of Sylvius) to reach the fourth ventricle via the foramina of Magendie and Luschka. The CSF then enters the subarachnoid space, where it circulates around the brain and spinal cord. Finally, the CSF is reabsorbed into the venous system via arachnoid granulations into the superior sagittal sinus.

      The composition of CSF is essential for its proper functioning. The glucose level in CSF is between 50-80 mg/dl, while the protein level is between 15-40 mg/dl. Red blood cells are not present in CSF, and the white blood cell count is usually less than 3 cells/mm3. Understanding the circulation and composition of CSF is crucial for diagnosing and treating various neurological disorders.

    • This question is part of the following fields:

      • Neurological System
      24.6
      Seconds
  • Question 11 - A 40-year-old male patient complains of shortness of breath, weight loss, and night...

    Incorrect

    • A 40-year-old male patient complains of shortness of breath, weight loss, and night sweats for the past six weeks. Despite being generally healthy, he is experiencing these symptoms. During the examination, the patient's fingers show clubbing, and his temperature is 37.8°C. His pulse is 88 beats per minute, and his blood pressure is 128/80 mmHg. Upon listening to his heart, a pansystolic murmur is audible. What signs are likely to be found in this patient?

      Your Answer: Cervical lymphadenopathy

      Correct Answer: Splinter haemorrhages

      Explanation:

      Symptoms and Diagnosis of Infective Endocarditis

      This individual has a lengthy medical history of experiencing night sweats and has developed clubbing of the fingers, along with a murmur. These symptoms are indicative of infective endocarditis. In addition to splinter hemorrhages in the nails, other symptoms that may be present include Roth spots in the eyes, Osler’s nodes and Janeway lesions in the palms and fingers of the hands, and splenomegaly instead of cervical lymphadenopathy. Cyanosis is not typically associated with clubbing and may suggest idiopathic pulmonary fibrosis or cystic fibrosis in younger individuals. However, this individual has no prior history of cystic fibrosis and has only been experiencing symptoms for six weeks.

    • This question is part of the following fields:

      • Cardiovascular System
      5.3
      Seconds
  • Question 12 - An 82-year-old woman with a history of chronic kidney disease presents to the...

    Correct

    • An 82-year-old woman with a history of chronic kidney disease presents to the general practice with a painful left foot. The pain is sharp in nature and is felt mostly towards the posterior of the sole of the foot. The pain is most severe when the patient takes her first few steps after getting out of bed in the morning. There is no history of trauma. You diagnose plantar fasciitis. The usual treatment of plantar fasciitis is with NSAIDs. However, NSAIDs are contraindicated in severe renal disease. What is the effect of NSAIDs on the glomerular filtration pressure?

      Your Answer: Vasoconstriction of the afferent arteriole

      Explanation:

      The correct answer is vasoconstriction of the afferent arteriole, as explained in the following notes.

      ACE inhibitors and ARBs cause vasodilation of the efferent arteriole, which reduces glomerular filtration pressure. This effect is particularly significant in individuals with renal artery stenosis, as their kidneys receive limited perfusion, including the glomeruli.

      In a healthy individual, the afferent arteriole remains dilated, while the efferent arteriole remains constricted to maintain a fine balance of glomerular pressure. Vasodilation of the afferent arteriole or vasoconstriction of the efferent arteriole would both increase glomerular filtration pressure.

      The patient in the given question is experiencing symptoms that suggest plantar fasciitis, a common condition caused by inflammation of the plantar fascia in the foot.

      The Impact of NSAIDs on Kidney Function

      NSAIDs are commonly used anti-inflammatory drugs that work by inhibiting the enzymes COX-1 and COX-2, which are responsible for the synthesis of prostanoids such as prostaglandins and thromboxanes. In the kidneys, prostaglandins play a crucial role in vasodilating the afferent arterioles of the glomeruli, allowing for increased blood flow and a higher glomerular filtration rate (GFR).

      However, when NSAIDs inhibit the COX enzymes, the levels of prostaglandins decrease, leading to a reduction in afferent arteriole vasodilation and subsequently, a decrease in renal perfusion and GFR. This can have negative consequences for kidney function, particularly in individuals with pre-existing kidney disease or those taking high doses of NSAIDs for prolonged periods of time.

      It is important for healthcare providers to consider the potential impact of NSAIDs on kidney function and to monitor patients accordingly, especially those at higher risk for kidney damage. Alternative treatments or lower doses of NSAIDs may be recommended to minimize the risk of kidney injury.

    • This question is part of the following fields:

      • Renal System
      6.1
      Seconds
  • Question 13 - A 72-year-old male is in the clinic and reports experiencing sharp lightning-like pains...

    Incorrect

    • A 72-year-old male is in the clinic and reports experiencing sharp lightning-like pains in his legs. He mentions spending many years at sea. Upon examination, he displays gait disturbance, weakness, and reduced reflexes. His pupils do not react to light, but his accommodation is intact. What is the probable pathophysiology?

      Your Answer: Autoimmune destruction of myelin in the central nervous system

      Correct Answer: Demyelination of the dorsal columns of the spinal cord

      Explanation:

      The patient in this case is likely experiencing tabes dorsalis, a complication of syphilis that causes degeneration of the dorsal columns of the spinal cord. Given that the patient is a sailor, it is possible that he contracted a sexually transmitted infection. The Argyll-Robertson pupil, a phenomenon seen in syphilis, is also present.

      It is important to note that B12 deficiency can also cause degeneration of the dorsal and lateral columns of the spinal cord, known as subacute combined degeneration of the cord. This condition would also result in loss of function of the spinothalamic tract, which is located laterally in the spinal cord.

      Poliomyelitis, a viral infection of the anterior horn cells, can cause meningitis and paralysis.

      Shingles, a viral infection in the dorsal root ganglia, would present with a dermatomal rash that does not cross the midline and is accompanied by pain.

      Syphilis is a sexually transmitted infection caused by the bacterium Treponema pallidum. The infection progresses through primary, secondary, and tertiary stages, with an incubation period of 9-90 days. The primary stage is characterized by a painless ulcer at the site of sexual contact, along with local lymphadenopathy. Women may not always exhibit visible symptoms. The secondary stage occurs 6-10 weeks after primary infection and presents with systemic symptoms such as fevers and lymphadenopathy, as well as a rash on the trunk, palms, and soles. Other symptoms may include buccal ulcers and genital warts. Tertiary syphilis can lead to granulomatous lesions of the skin and bones, ascending aortic aneurysms, general paralysis of the insane, tabes dorsalis, and Argyll-Robertson pupil. Congenital syphilis can cause blunted upper incisor teeth, linear scars at the angle of the mouth, keratitis, saber shins, saddle nose, and deafness.

    • This question is part of the following fields:

      • General Principles
      4.9
      Seconds
  • Question 14 - A 3-year-old girl comes to her pediatrician for a routine check-up. Her mother...

    Incorrect

    • A 3-year-old girl comes to her pediatrician for a routine check-up. Her mother reports that she has been experiencing bone pain. Upon examination, the pediatrician observes multiple bony deformities, humeral curvature, and frontal bossing. The child's growth is not meeting expected standards, but her limb length is proportional to her height. The mother is a strict vegan and has been feeding her daughter a vegan diet. What is the probable reason for the child's symptoms?

      Your Answer: Vitamin A deficiency

      Correct Answer: Vitamin D deficiency

      Explanation:

      Rickets is caused by a deficiency in vitamin D, which is typically observed in children between the ages of 6 and 36 months due to their rapid growth and need for calcium. The risk of developing rickets is increased in individuals with a diet lacking in vitamin D, as it is primarily found in fatty fish and dairy products. Insufficient levels of vitamin D in the patient’s body result in defective bone formation and hypocalcemia, leading to the development of bony deformities.

      Understanding Vitamin D

      Vitamin D is a type of vitamin that is soluble in fat and is essential for the metabolism of calcium and phosphate in the body. It is converted into calcifediol in the liver and then into calcitriol, which is the active form of vitamin D, in the kidneys. Vitamin D can be obtained from two sources: vitamin D2, which is found in plants, and vitamin D3, which is present in dairy products and can also be synthesized by the skin when exposed to sunlight.

      The primary function of vitamin D is to increase the levels of calcium and phosphate in the blood. It achieves this by increasing the absorption of calcium in the gut and the reabsorption of calcium in the kidneys. Vitamin D also stimulates osteoclastic activity, which is essential for bone growth and remodeling. Additionally, it increases the reabsorption of phosphate in the kidneys.

      A deficiency in vitamin D can lead to two conditions: rickets in children and osteomalacia in adults. Rickets is characterized by soft and weak bones, while osteomalacia is a condition where the bones become weak and brittle. Therefore, it is crucial to ensure that the body receives an adequate amount of vitamin D to maintain healthy bones and overall health.

    • This question is part of the following fields:

      • General Principles
      6.5
      Seconds
  • Question 15 - A 57-year-old male is scheduled for an elective robotic-assisted laparoscopic radical prostatectomy.

    During...

    Correct

    • A 57-year-old male is scheduled for an elective robotic-assisted laparoscopic radical prostatectomy.

      During the procedure, there is a risk of urinary retention if the nerves responsible for providing parasympathetic innervation to the bladder are damaged. Can you correctly identify these nerves?

      Your Answer: Pelvic splanchnic nerves

      Explanation:

      The bladder is innervated by parasympathetic and sympathetic nerves. Parasympathetic nerves come from the pelvic splanchnic nerves, while sympathetic nerves come from L1 and L2 via the hypogastric nerve plexuses. Injury to these nerves can cause urinary retention. The vesicoprostatic venous plexus receives venous drainage from the bladder and prostate. The inferior vesical nerve is not a real nerve.

      Bladder Anatomy and Innervation

      The bladder is a three-sided pyramid-shaped organ located in the pelvic cavity. Its apex points towards the symphysis pubis, while the base lies anterior to the rectum or vagina. The bladder’s inferior aspect is retroperitoneal, while the superior aspect is covered by peritoneum. The trigone, the least mobile part of the bladder, contains the ureteric orifices and internal urethral orifice. The bladder’s blood supply comes from the superior and inferior vesical arteries, while venous drainage occurs through the vesicoprostatic or vesicouterine venous plexus. Lymphatic drainage occurs mainly to the external iliac and internal iliac nodes, with the obturator nodes also playing a role. The bladder is innervated by parasympathetic nerve fibers from the pelvic splanchnic nerves and sympathetic nerve fibers from L1 and L2 via the hypogastric nerve plexuses. The parasympathetic fibers cause detrusor muscle contraction, while the sympathetic fibers innervate the trigone muscle. The external urethral sphincter is under conscious control, and voiding occurs when the rate of neuronal firing to the detrusor muscle increases.

    • This question is part of the following fields:

      • Renal System
      5.1
      Seconds
  • Question 16 - A 25-year-old man admitted to the acute medical ward is administered ceftriaxone for...

    Incorrect

    • A 25-year-old man admitted to the acute medical ward is administered ceftriaxone for suspected bacterial meningitis. However, he experiences facial angioedema, a new urticarial rash, and stridor shortly after receiving the medication. His vital signs are as follows: respiratory rate 22/min; heart rate 110/min; temperature 37.3ºC; blood pressure 104/56 mmHg; oxygen saturations 95% on air. Which type of cells produce the antibody responsible for this reaction?

      Your Answer: T-lymphocytes

      Correct Answer: Plasma cells

      Explanation:

      Plasma cells are responsible for synthesizing IgE. This is important in the context of anaphylactic reactions, which are a type I hypersensitivity reaction. When an antigen is encountered for the first time, plasma cells produce IgE against it. This IgE then binds to Fc receptors on mast cells. Upon re-exposure to the antigen, the bound IgE triggers mast cell degranulation and an anaphylactic reaction. Eosinophils, granulocytes, and mast cells do not synthesize IgE.

      Immunoglobulins, also known as antibodies, are proteins produced by the immune system to help fight off infections and diseases. There are five types of immunoglobulins found in the body, each with their own unique characteristics.

      IgG is the most abundant type of immunoglobulin in blood serum and plays a crucial role in enhancing phagocytosis of bacteria and viruses. It also fixes complement and can be passed to the fetal circulation.

      IgA is the most commonly produced immunoglobulin in the body and is found in the secretions of digestive, respiratory, and urogenital tracts and systems. It provides localized protection on mucous membranes and is transported across the interior of the cell via transcytosis.

      IgM is the first immunoglobulin to be secreted in response to an infection and fixes complement, but does not pass to the fetal circulation. It is also responsible for producing anti-A, B blood antibodies.

      IgD’s role in the immune system is largely unknown, but it is involved in the activation of B cells.

      IgE is the least abundant type of immunoglobulin in blood serum and is responsible for mediating type 1 hypersensitivity reactions. It provides immunity to parasites such as helminths and binds to Fc receptors found on the surface of mast cells and basophils.

    • This question is part of the following fields:

      • General Principles
      6.6
      Seconds
  • Question 17 - Mrs Green is admitted via the emergency department and found to have a...

    Incorrect

    • Mrs Green is admitted via the emergency department and found to have a large liver abscess. She undergoes CT guided aspiration and the fluid is sent off for analysis. Initial microscopy demonstrates a large population of neutrophils.

      Which of the following cytokines is likely to have been responsible for this cell infiltration?

      Your Answer: Interleukin-5

      Correct Answer: Interleukin-8

      Explanation:

      Interleukins (IL) are cytokines that have various important roles in the immune system. One such IL is IL-8, which is produced by macrophages and is responsible for the chemotaxis of neutrophils. This is crucial in the acute inflammatory response, as neutrophils are recruited to areas of inflammation.

      Another important IL is IL-2, which is produced by T helper 1 cells and stimulates the growth and development of various immune cells, including T cells, B cells, and natural killer cells. This makes it essential for fighting infections.

      IL-4, produced by T helper 2 cells, activates B cells and can also induce the differentiation of CD4+ T cells into T helper 2 cells. It plays a crucial role in dealing with infections.

      IL-5, also produced by T helper 2 cells, primarily stimulates the production of eosinophils.

      Finally, IL-10 is produced by both macrophages and T helper 2 cells. It is an anti-inflammatory cytokine that inhibits cytokine production from T helper 1 cells.

      Overview of Cytokines and Their Functions

      Cytokines are signaling molecules that play a crucial role in the immune system. Interleukins are a type of cytokine that are produced by various immune cells and have specific functions. IL-1, produced by macrophages, induces acute inflammation and fever. IL-2, produced by Th1 cells, stimulates the growth and differentiation of T cell responses. IL-3, produced by activated T helper cells, stimulates the differentiation and proliferation of myeloid progenitor cells. IL-4, produced by Th2 cells, stimulates the proliferation and differentiation of B cells. IL-5, also produced by Th2 cells, stimulates the production of eosinophils. IL-6, produced by macrophages and Th2 cells, stimulates the differentiation of B cells and induces fever. IL-8, produced by macrophages, promotes neutrophil chemotaxis. IL-10, produced by Th2 cells, inhibits Th1 cytokine production and is known as an anti-inflammatory cytokine. IL-12, produced by dendritic cells, macrophages, and B cells, activates NK cells and stimulates the differentiation of naive T cells into Th1 cells.

      In addition to interleukins, there are other cytokines with specific functions. Tumor necrosis factor-alpha, produced by macrophages, induces fever and promotes neutrophil chemotaxis. Interferon-gamma, produced by Th1 cells, activates macrophages. Understanding the functions of cytokines is important in developing treatments for various immune-related diseases.

    • This question is part of the following fields:

      • General Principles
      5.3
      Seconds
  • Question 18 - A 47-year-old woman has been diagnosed with primary hyperparathyroidism and her serum PTH...

    Incorrect

    • A 47-year-old woman has been diagnosed with primary hyperparathyroidism and her serum PTH levels are elevated. She undergoes a parathyroidectomy performed by an endocrine surgeon. How long does it typically take for serum PTH levels to decrease after successful removal of the functioning adenoma?

      Your Answer: 6 hours

      Correct Answer: 10 minutes

      Explanation:

      Maintaining Calcium Balance in the Body

      Calcium ions are essential for various physiological processes in the body, and the largest store of calcium is found in the skeleton. The levels of calcium in the body are regulated by three hormones: parathyroid hormone (PTH), vitamin D, and calcitonin.

      PTH increases calcium levels and decreases phosphate levels by increasing bone resorption and activating osteoclasts. It also stimulates osteoblasts to produce a protein signaling molecule that activates osteoclasts, leading to bone resorption. PTH increases renal tubular reabsorption of calcium and the synthesis of 1,25(OH)2D (active form of vitamin D) in the kidney, which increases bowel absorption of calcium. Additionally, PTH decreases renal phosphate reabsorption.

      Vitamin D, specifically the active form 1,25-dihydroxycholecalciferol, increases plasma calcium and plasma phosphate levels. It increases renal tubular reabsorption and gut absorption of calcium, as well as osteoclastic activity. Vitamin D also increases renal phosphate reabsorption in the proximal tubule.

      Calcitonin, secreted by C cells of the thyroid, inhibits osteoclast activity and renal tubular absorption of calcium.

      Although growth hormone and thyroxine play a small role in calcium metabolism, the primary regulation of calcium levels in the body is through PTH, vitamin D, and calcitonin. Maintaining proper calcium balance is crucial for overall health and well-being.

    • This question is part of the following fields:

      • Neurological System
      6.4
      Seconds
  • Question 19 - Which of the following is not a branch of the abdominal aorta? ...

    Incorrect

    • Which of the following is not a branch of the abdominal aorta?

      Your Answer: Renal artery

      Correct Answer: Superior phrenic artery

      Explanation:

      To remember the order of branches, use the phrase ‘Prostitutes Cause Sagging Swollen Red Testicles [in men] Living In Sin’:

      Phrenic [inferior]
      Celiac
      Superior mesenteric
      Suprarenal [middle]
      Renal
      Testicular [‘in men’ only]
      Lumbars
      Inferior mesenteric
      Sacral

      Note that the superior phrenic artery branches from the aorta in the thorax.

      Branches of the Abdominal Aorta

      The abdominal aorta is a major blood vessel that supplies oxygenated blood to the abdominal organs and lower extremities. It gives rise to several branches that supply blood to various organs and tissues. These branches can be classified into two types: parietal and visceral.

      The parietal branches supply blood to the walls of the abdominal cavity, while the visceral branches supply blood to the abdominal organs. The branches of the abdominal aorta include the inferior phrenic, coeliac, superior mesenteric, middle suprarenal, renal, gonadal, lumbar, inferior mesenteric, median sacral, and common iliac arteries.

      The inferior phrenic artery arises from the upper border of the abdominal aorta and supplies blood to the diaphragm. The coeliac artery supplies blood to the liver, stomach, spleen, and pancreas. The superior mesenteric artery supplies blood to the small intestine, cecum, and ascending colon. The middle suprarenal artery supplies blood to the adrenal gland. The renal arteries supply blood to the kidneys. The gonadal arteries supply blood to the testes or ovaries. The lumbar arteries supply blood to the muscles and skin of the back. The inferior mesenteric artery supplies blood to the descending colon, sigmoid colon, and rectum. The median sacral artery supplies blood to the sacrum and coccyx. The common iliac arteries are the terminal branches of the abdominal aorta and supply blood to the pelvis and lower extremities.

      Understanding the branches of the abdominal aorta is important for diagnosing and treating various medical conditions that affect the abdominal organs and lower extremities.

    • This question is part of the following fields:

      • Gastrointestinal System
      5.5
      Seconds
  • Question 20 - During your placement in paediatrics, you evaluate a 6-year-old patient who has recently...

    Incorrect

    • During your placement in paediatrics, you evaluate a 6-year-old patient who has recently undergone chemotherapy. Can you identify the most prevalent types of cancer in children between the ages of 0 and 15?

      Your Answer: Bone cancer

      Correct Answer: Leukaemia

      Explanation:

      Understanding Acute Lymphoblastic Leukaemia

      Acute lymphoblastic leukaemia (ALL) is a type of cancer that commonly affects children, accounting for 80% of childhood leukaemias. It is most prevalent in children aged 2-5 years, with boys being slightly more affected than girls. Symptoms of ALL can be divided into those caused by bone marrow failure, such as anaemia, neutropaenia, and thrombocytopenia, and other features like bone pain, splenomegaly, hepatomegaly, fever, and testicular swelling.

      There are three types of ALL: common ALL, T-cell ALL, and B-cell ALL. Common ALL is the most common type, accounting for 75% of cases, and is characterized by the presence of CD10 and pre-B phenotype. T-cell ALL accounts for 20% of cases, while B-cell ALL accounts for only 5%.

      Certain factors can affect the prognosis of ALL, including age, white blood cell count at diagnosis, T or B cell surface markers, race, and sex. Children under 2 years or over 10 years of age, those with a WBC count over 20 * 109/l at diagnosis, and those with T or B cell surface markers, non-Caucasian, and male sex have a poorer prognosis.

      Understanding the different types and prognostic factors of ALL can help in the early detection and management of this cancer. It is important to seek medical attention if any of the symptoms mentioned above are present.

    • This question is part of the following fields:

      • Haematology And Oncology
      5.8
      Seconds
  • Question 21 - A 16-year-old girl presents to the emergency department with anaphylaxis after unintentionally ingesting...

    Incorrect

    • A 16-year-old girl presents to the emergency department with anaphylaxis after unintentionally ingesting peanuts, to which she has a documented allergy.

      Which immune cell type is primarily responsible for orchestrating this type of allergic reaction?

      Your Answer: Th1 cells

      Correct Answer: Mast cells

      Explanation:

      IgE antibodies play a role in allergic, hypersensitivity, and anaphylactic responses by binding to Fc receptors on mast cells.

      Immunoglobulins, also known as antibodies, are proteins produced by the immune system to help fight off infections and diseases. There are five types of immunoglobulins found in the body, each with their own unique characteristics.

      IgG is the most abundant type of immunoglobulin in blood serum and plays a crucial role in enhancing phagocytosis of bacteria and viruses. It also fixes complement and can be passed to the fetal circulation.

      IgA is the most commonly produced immunoglobulin in the body and is found in the secretions of digestive, respiratory, and urogenital tracts and systems. It provides localized protection on mucous membranes and is transported across the interior of the cell via transcytosis.

      IgM is the first immunoglobulin to be secreted in response to an infection and fixes complement, but does not pass to the fetal circulation. It is also responsible for producing anti-A, B blood antibodies.

      IgD’s role in the immune system is largely unknown, but it is involved in the activation of B cells.

      IgE is the least abundant type of immunoglobulin in blood serum and is responsible for mediating type 1 hypersensitivity reactions. It provides immunity to parasites such as helminths and binds to Fc receptors found on the surface of mast cells and basophils.

    • This question is part of the following fields:

      • General Principles
      5.9
      Seconds
  • Question 22 - A 62-year-old man comes to the emergency department with recent involuntary movements. During...

    Incorrect

    • A 62-year-old man comes to the emergency department with recent involuntary movements. During the examination, it is observed that he has unmanageable thrashing movements of his left arm and leg, which cannot be diverted. A CT scan reveals a fresh acute infarct.

      What part of the brain has been impacted by this infarct, causing these symptoms?

      Your Answer: Thalamus

      Correct Answer: Subthalamic nucleus

      Explanation:

      Lesions of the subthalamic nucleus (STN) within the basal ganglia can result in a hemiballismus, characterized by uncontrollable thrashing movements. The STN plays a role in unconscious motor control by providing excitatory input to the globus pallidus internus (GPi), which then acts in an inhibitory way on motor outflow from the cortex. When the STN is damaged, there is less activity within the GPi and relative hyperactivity of the motor cortex, leading to excessive movements.

      In contrast, lesions of the caudate nucleus within the basal ganglia can cause behavioral changes and agitation. The caudate processes motor information from the cortex and provides an excitatory input to the globus pallidus externus (GPe), which then has an excitatory input to the STN. Lesions of the caudate result in motor hyperactivity, but this manifests as a restless state rather than uncontrolled movements. The caudate also plays a role in the neural circuits underlying goal-directed behaviors, and lesions can result in personality and behavioral changes.

      Lesions of the medial pons can cause hemiplegia and hemisensory loss or locked-in syndrome, depending on the level of disruption to the motor and sensory pathways. Lesions above the level of the trigeminal and facial motor nuclei can result in a full locked-in syndrome, while lesions below these nuclei result in hemiplegia and hemisensory loss but with preservation of facial sensation and movement.

      Lesions of the substantia nigra result in Parkinsonism, as the dopaminergic neurons of the substantia nigra have an inhibitory effect on the outflow of the striatum. This prevents motor information from leaving the cortex, resulting in the bradykinesia characteristic of Parkinsonism.

      Thalamic lesions most commonly cause hemisensory loss, as the thalamus acts as a sensory gateway that allows processing of sensory information before relaying it to the relevant primary cortex. Lesions disrupt this pathway and prevent information from reaching the cortex.

      Brain lesions can be localized based on the neurological disorders or features that are present. The gross anatomy of the brain can provide clues to the location of the lesion. For example, lesions in the parietal lobe can result in sensory inattention, apraxias, astereognosis, inferior homonymous quadrantanopia, and Gerstmann’s syndrome. Lesions in the occipital lobe can cause homonymous hemianopia, cortical blindness, and visual agnosia. Temporal lobe lesions can result in Wernicke’s aphasia, superior homonymous quadrantanopia, auditory agnosia, and prosopagnosia. Lesions in the frontal lobes can cause expressive aphasia, disinhibition, perseveration, anosmia, and an inability to generate a list. Lesions in the cerebellum can result in gait and truncal ataxia, intention tremor, past pointing, dysdiadokinesis, and nystagmus.

      In addition to the gross anatomy, specific areas of the brain can also provide clues to the location of a lesion. For example, lesions in the medial thalamus and mammillary bodies of the hypothalamus can result in Wernicke and Korsakoff syndrome. Lesions in the subthalamic nucleus of the basal ganglia can cause hemiballism, while lesions in the striatum (caudate nucleus) can result in Huntington chorea. Parkinson’s disease is associated with lesions in the substantia nigra of the basal ganglia, while lesions in the amygdala can cause Kluver-Bucy syndrome, which is characterized by hypersexuality, hyperorality, hyperphagia, and visual agnosia. By identifying these specific conditions, doctors can better localize brain lesions and provide appropriate treatment.

    • This question is part of the following fields:

      • Neurological System
      5.8
      Seconds
  • Question 23 - A 65-year-old man with uncontrolled diabetes visits the ophthalmology clinic for his annual...

    Incorrect

    • A 65-year-old man with uncontrolled diabetes visits the ophthalmology clinic for his annual eye examination. During fundoscopy, the ophthalmologist observes fluffy white patches on the retina.

      What is the underlying pathology indicated by this discovery?

      Your Answer: Chronic oedema

      Correct Answer: Retinal infarction

      Explanation:

      Cotton wool spots in diabetic retinopathy indicate areas of retinal infarction.

      Understanding Diabetic Retinopathy

      Diabetic retinopathy is a leading cause of blindness in adults aged 35-65 years-old. The condition is caused by hyperglycaemia, which leads to abnormal metabolism in the retinal vessel walls, causing damage to endothelial cells and pericytes. This damage leads to increased vascular permeability, which causes exudates seen on fundoscopy. Pericyte dysfunction predisposes to the formation of microaneurysms, while neovascularization is caused by the production of growth factors in response to retinal ischaemia.

      Patients with diabetic retinopathy are typically classified into those with non-proliferative diabetic retinopathy (NPDR), proliferative retinopathy (PDR), and maculopathy. NPDR is further classified into mild, moderate, and severe, depending on the presence of microaneurysms, blot haemorrhages, hard exudates, cotton wool spots, venous beading/looping, and intraretinal microvascular abnormalities. PDR is characterized by retinal neovascularization, which may lead to vitreous haemorrhage, and fibrous tissue forming anterior to the retinal disc. Maculopathy is based on location rather than severity and is more common in Type II DM.

      Management of diabetic retinopathy involves optimizing glycaemic control, blood pressure, and hyperlipidemia, as well as regular review by ophthalmology. For maculopathy, intravitreal vascular endothelial growth factor (VEGF) inhibitors are used if there is a change in visual acuity. Non-proliferative retinopathy is managed through regular observation, while severe/very severe cases may require panretinal laser photocoagulation. Proliferative retinopathy is treated with panretinal laser photocoagulation, intravitreal VEGF inhibitors, and vitreoretinal surgery in severe or vitreous haemorrhage cases. Examples of VEGF inhibitors include ranibizumab, which has a strong evidence base for slowing the progression of proliferative diabetic retinopathy and improving visual acuity.

    • This question is part of the following fields:

      • Neurological System
      5.1
      Seconds
  • Question 24 - A 63-year-old male presents to his GP with a complaint of blood in...

    Correct

    • A 63-year-old male presents to his GP with a complaint of blood in his stools. The blood is bright red and occurs during defecation, but it is not painful. He has been feeling more tired lately, but he has not experienced night sweats, weight loss, loss of appetite, or changes in bowel habits.

      The patient has a history of liver cirrhosis and underwent an oesophageal endoscopy two years ago, but he cannot recall the results. He is a known alcoholic and attends AA.

      Upon examination, the patient appears pale with conjunctival pallor, and ascites is present.

      What is the most likely diagnosis?

      Your Answer: Haemorrhoids

      Explanation:

      Haemorrhoids in Portal Hypertension

      A likely diagnosis for a patient with a history of portal hypertension, ascites, endoscopy, and cirrhotic liver is haemorrhoids. Portal hypertension causes pressure to be passed on to the middle and inferior rectal veins, leading to their dilation and the development of haemorrhoids. While haemorrhoids are common in the general population, significant blood loss is rare. However, in patients with established cirrhosis, large amounts of blood can be lost through these varices.

      An anal fissure is unlikely in this case, as there is no history of straining or a low-fibre diet, and they are typically painful. While colorectal carcinoma is an important diagnosis to consider, painless bright fresh blood is more likely to be caused by haemorrhoids in patients with a strong history of portal hypertension. In malignancy, fresh blood is less common, and a change in bowel habit is often a prominent feature.

      A perianal haematoma is a thrombosed haemorrhoid that typically presents with severe pain, making it an unlikely diagnosis in this case. The patient’s presentation of painless bleeding further supports the diagnosis of haemorrhoids in the context of portal hypertension.

    • This question is part of the following fields:

      • Gastrointestinal System
      6
      Seconds
  • Question 25 - A 22-year-old male comes to the clinic complaining of dark urine after finishing...

    Incorrect

    • A 22-year-old male comes to the clinic complaining of dark urine after finishing an ultra-marathon. Upon examination, a urine dipstick reveals myoglobin and the patient is diagnosed with rhabdomyolysis.

      What specific amino acid components contribute to the tertiary structure of this protein?

      Your Answer: Carboxyl group

      Correct Answer: R group

      Explanation:

      Proteins and Peptides: Structure and Function

      Proteins and peptides are essential molecules in the human body, made up of 20 amino acids bonded together by peptide bonds. Peptides are short chains of amino acids, while proteins are longer chains of 100 or more amino acids with more complex structures. The process of protein synthesis begins in the nucleus, where DNA is transcribed into messenger RNA, which is then translated by transfer RNA on cell ribosomes. The resulting protein folds into its destined structure, with primary, secondary, tertiary, and quaternary modifications.

      The primary structure of a protein refers to the order of amino acids in the basic chain, while the secondary structure refers to the spatial arrangement of the primary structure. The tertiary structure is formed from structural changes and influences the protein’s role, while the quaternary structure is formed from multiple proteins to make a functional protein. The function of a protein is governed by its structure, with globular proteins having a wide range of roles, including enzymes.

      Enzymes have an active site with a structure specific for one substrate, and when substrate and enzyme meet, they temporarily bond to form the enzyme-substrate complex. The substrate undergoes a biochemical change facilitated by the enzyme, resulting in the breakdown of the complex. Proteins also have structural roles, forming structures within the body such as keratin and collagen, and key roles in cell signaling and homeostasis, acting as mediators of transmembrane transport, cell receptors, and cell signaling. The endocrine system is an example of this, where hormones bind to cell surface receptors, triggering a cascade of protein interactions.

    • This question is part of the following fields:

      • General Principles
      5.8
      Seconds
  • Question 26 - A case of ischaemic left colon is diagnosed in a patient. Which artery,...

    Correct

    • A case of ischaemic left colon is diagnosed in a patient. Which artery, originating from the aorta at approximately the level of L3, is the most probable cause of this condition?

      Your Answer: Inferior mesenteric artery

      Explanation:

      The left side of the colon is most likely to be affected by the IMA, which typically originates at L3.

      The Inferior Mesenteric Artery: Supplying the Hindgut

      The inferior mesenteric artery (IMA) is responsible for supplying the embryonic hindgut with blood. It originates just above the aortic bifurcation, at the level of L3, and passes across the front of the aorta before settling on its left side. At the point where the left common iliac artery is located, the IMA becomes the superior rectal artery.

      The hindgut, which includes the distal third of the colon and the rectum above the pectinate line, is supplied by the IMA. The left colic artery is one of the branches that emerges from the IMA near its origin. Up to three sigmoid arteries may also exit the IMA to supply the sigmoid colon further down the line.

      Overall, the IMA plays a crucial role in ensuring that the hindgut receives the blood supply it needs to function properly. Its branches help to ensure that the colon and rectum are well-nourished and able to carry out their important digestive functions.

    • This question is part of the following fields:

      • Gastrointestinal System
      5.6
      Seconds
  • Question 27 - A 55-year-old man with a recent diagnosis of essential hypertension and prescribed ramipril...

    Incorrect

    • A 55-year-old man with a recent diagnosis of essential hypertension and prescribed ramipril has returned for a follow-up appointment after 6 weeks. He has a medical history of osteoarthritis and benign prostate hypertrophy. Despite being compliant with his medication, his blood pressure reading is 145/90 mmHg, which is higher than his previous readings at home. What could be the reason for his inadequate blood pressure control despite medical treatment?

      Your Answer: Nitrates

      Correct Answer: Ibuprofen

      Explanation:

      The patient with osteoarthritis is likely taking NSAIDs, which can diminish the effectiveness of ACE inhibitors in controlling hypertension. Additionally, NSAIDs can worsen the hyperkalemic effects of ACE inhibitors, contributing to the patient’s uncontrolled blood pressure. It is important to note that alcohol can also exacerbate the hypotensive effects of ACE inhibitors. Nitrates, on the other hand, are useful in managing hypertension.

      Angiotensin-converting enzyme (ACE) inhibitors are commonly used as the first-line treatment for hypertension and heart failure in younger patients. However, they may not be as effective in treating hypertensive Afro-Caribbean patients. ACE inhibitors are also used to treat diabetic nephropathy and prevent ischaemic heart disease. These drugs work by inhibiting the conversion of angiotensin I to angiotensin II and are metabolized in the liver.

      While ACE inhibitors are generally well-tolerated, they can cause side effects such as cough, angioedema, hyperkalaemia, and first-dose hypotension. Patients with certain conditions, such as renovascular disease, aortic stenosis, or hereditary or idiopathic angioedema, should use ACE inhibitors with caution or avoid them altogether. Pregnant and breastfeeding women should also avoid these drugs.

      Patients taking high-dose diuretics may be at increased risk of hypotension when using ACE inhibitors. Therefore, it is important to monitor urea and electrolyte levels before and after starting treatment, as well as any changes in creatinine and potassium levels. Acceptable changes include a 30% increase in serum creatinine from baseline and an increase in potassium up to 5.5 mmol/l. Patients with undiagnosed bilateral renal artery stenosis may experience significant renal impairment when using ACE inhibitors.

      The current NICE guidelines recommend using a flow chart to manage hypertension, with ACE inhibitors as the first-line treatment for patients under 55 years old. However, individual patient factors and comorbidities should be taken into account when deciding on the best treatment plan.

    • This question is part of the following fields:

      • Cardiovascular System
      5.4
      Seconds
  • Question 28 - Which of the following is involved in the breakdown of polypeptides? ...

    Correct

    • Which of the following is involved in the breakdown of polypeptides?

      Your Answer: Proteasome

      Explanation:

      Functions of Cell Organelles

      The functions of major cell organelles can be summarized in a table. The rough endoplasmic reticulum (RER) is responsible for the translation and folding of new proteins, as well as the manufacture of lysosomal enzymes. It is also the site of N-linked glycosylation. Cells such as pancreatic cells, goblet cells, and plasma cells have extensive RER. On the other hand, the smooth endoplasmic reticulum (SER) is involved in steroid and lipid synthesis. Cells of the adrenal cortex, hepatocytes, and reproductive organs have extensive SER.

      The Golgi apparatus modifies, sorts, and packages molecules that are destined for cell secretion. The addition of mannose-6-phosphate to proteins designates transport to lysosome. The mitochondrion is responsible for aerobic respiration and contains mitochondrial genome as circular DNA. The nucleus is involved in DNA maintenance, RNA transcription, and RNA splicing, which removes the non-coding sequences of genes (introns) from pre-mRNA and joins the protein-coding sequences (exons).

      The lysosome is responsible for the breakdown of large molecules such as proteins and polysaccharides. The nucleolus produces ribosomes, while the ribosome translates RNA into proteins. The peroxisome is involved in the catabolism of very long chain fatty acids and amino acids, resulting in the formation of hydrogen peroxide. Lastly, the proteasome, along with the lysosome pathway, is involved in the degradation of protein molecules that have been tagged with ubiquitin.

    • This question is part of the following fields:

      • General Principles
      14.9
      Seconds
  • Question 29 - A 65-year-old man visits his doctor complaining of a productive cough and difficulty...

    Incorrect

    • A 65-year-old man visits his doctor complaining of a productive cough and difficulty breathing for the past 10 days. The doctor prescribes antibiotics, but after a week, the patient's symptoms persist and he develops a fever and pain when breathing in. The doctor orders a chest x-ray, which indicates the presence of an empyema. What is the probable causative agent responsible for this condition?

      Your Answer: Listeria monocytogenes

      Correct Answer: Streptococcus pneumoniae

      Explanation:

      An accumulation of pus in the pleural space, known as empyema, is a possible complication of pneumonia and is responsible for the patient’s pleurisy. Streptococcus pneumoniae, the most frequent cause of pneumonia, is also the leading cause of empyema.

      Pneumonia is a common condition that affects the alveoli of the lungs, usually caused by a bacterial infection. Other causes include viral and fungal infections. Streptococcus pneumoniae is the most common organism responsible for pneumonia, accounting for 80% of cases. Haemophilus influenzae is common in patients with COPD, while Staphylococcus aureus often occurs in patients following influenzae infection. Mycoplasma pneumoniae and Legionella pneumophilia are atypical pneumonias that present with dry cough and other atypical symptoms. Pneumocystis jiroveci is typically seen in patients with HIV. Idiopathic interstitial pneumonia is a group of non-infective causes of pneumonia.

      Patients who develop pneumonia outside of the hospital have community-acquired pneumonia (CAP), while those who develop it within hospitals are said to have hospital-acquired pneumonia. Symptoms of pneumonia include cough, sputum, dyspnoea, chest pain, and fever. Signs of systemic inflammatory response, tachycardia, reduced oxygen saturations, and reduced breath sounds may also be present. Chest x-ray is used to diagnose pneumonia, with consolidation being the classical finding. Blood tests, such as full blood count, urea and electrolytes, and CRP, are also used to check for infection.

      Patients with pneumonia require antibiotics to treat the underlying infection and supportive care, such as oxygen therapy and intravenous fluids. Risk stratification is done using a scoring system called CURB-65, which stands for confusion, respiration rate, blood pressure, age, and is used to determine the management of patients with community-acquired pneumonia. Home-based care is recommended for patients with a CRB65 score of 0, while hospital assessment is recommended for all other patients, particularly those with a CRB65 score of 2 or more. The CURB-65 score also correlates with an increased risk of mortality at 30 days.

    • This question is part of the following fields:

      • Respiratory System
      8.7
      Seconds
  • Question 30 - A young woman presents with ascending paralysis which started three weeks after a...

    Incorrect

    • A young woman presents with ascending paralysis which started three weeks after a diarrhoeal illness. Her ventilatory muscles are found to be paralysed too, prompting ventilatory support. She is subsequently diagnosed with Guillain-BarrĂ© syndrome (GBS), what is the most likely bacterium responsible for this?

      Your Answer: Streptococcus pneumoniae

      Correct Answer: Campylobacter jejuni

      Explanation:

      The onset of GBS is initiated by a microbial trigger that stimulates the production of antibodies, leading to a cross-reaction with nerves. The most prevalent triggers are Campylobacter jejuni and cytomegalovirus, while other triggers include Mycoplasma pneumoniae, varicella zoster virus, HIV, and Epstein-Barr virus.

      Understanding Guillain-Barre Syndrome and Miller Fisher Syndrome

      Guillain-Barre syndrome is a condition that affects the peripheral nervous system and is often triggered by an infection, particularly Campylobacter jejuni. The immune system attacks the myelin sheath that surrounds nerve fibers, leading to demyelination. This results in symptoms such as muscle weakness, tingling sensations, and paralysis.

      The pathogenesis of Guillain-Barre syndrome involves the cross-reaction of antibodies with gangliosides in the peripheral nervous system. Studies have shown a correlation between the presence of anti-ganglioside antibodies, particularly anti-GM1 antibodies, and the clinical features of the syndrome. In fact, anti-GM1 antibodies are present in 25% of patients with Guillain-Barre syndrome.

      Miller Fisher syndrome is a variant of Guillain-Barre syndrome that is characterized by ophthalmoplegia, areflexia, and ataxia. This syndrome typically presents as a descending paralysis, unlike other forms of Guillain-Barre syndrome that present as an ascending paralysis. The eye muscles are usually affected first in Miller Fisher syndrome. Studies have shown that anti-GQ1b antibodies are present in 90% of cases of Miller Fisher syndrome.

      In summary, Guillain-Barre syndrome and Miller Fisher syndrome are conditions that affect the peripheral nervous system and are often triggered by infections. The pathogenesis of these syndromes involves the cross-reaction of antibodies with gangliosides in the peripheral nervous system. While Guillain-Barre syndrome is characterized by muscle weakness and paralysis, Miller Fisher syndrome is characterized by ophthalmoplegia, areflexia, and ataxia.

    • This question is part of the following fields:

      • Neurological System
      6.6
      Seconds

SESSION STATS - PERFORMANCE PER SPECIALTY

Cardiovascular System (1/4) 25%
Gastrointestinal System (2/4) 50%
Psychiatry (0/1) 0%
Respiratory System (1/2) 50%
General Principles (1/8) 13%
Pharmacology (1/1) 100%
Clinical Sciences (1/1) 100%
Haematology And Oncology (0/2) 0%
Neurological System (0/5) 0%
Renal System (2/2) 100%
Passmed