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  • Question 1 - An 82-year-old woman with a history of chronic kidney disease presents to the...

    Incorrect

    • 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: Increase glomerular filtration pressure

      Correct 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
      17.4
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  • Question 2 - A 73-year-old man comes to the clinic with complaints of increasing nocturia, a...

    Incorrect

    • A 73-year-old man comes to the clinic with complaints of increasing nocturia, a feeble urinary stream, and some weight loss in the past few months. Upon examination, an enlarged prostate with nodules is observed, and he is promptly referred for further testing, which reveals prostate cancer cells.

      During the local urology cancer multidisciplinary team meeting, his case is discussed, and the team recommends a course of bicalutamide. What is the mechanism of action of this medication?

      Your Answer: Gonadotrophin-releasing hormone antagonist

      Correct Answer: Androgen receptor blocker

      Explanation:

      Bicalutamide, a non-steroidal drug, is utilized in the treatment of prostate cancer as an androgen receptor blocker. It is often used in combination with other approaches such as hormonal treatment, radiotherapy, chemotherapy, and prostatectomy. Abiraterone, on the other hand, is an androgen synthesis blocker that inhibits enzymes required for production. It is typically used for hormone-relapsed metastatic prostate cancer in patients who have no or mild symptoms after anti-androgen therapy has failed. Goserelin is a gonadotrophin-releasing hormone (GnRH) agonist that ultimately downregulates sex hormones. It is initially co-prescribed with an anti-androgen due to its potential to cause an initial flare in testosterone levels. More recently, GnRH antagonists like abarelix have been used to quickly suppress testosterone without the initial flare seen with agonists. Cyproterone acetate, which exhibits progestogenic activity and steroidal and antiandrogenic effects, is another drug used in prostate cancer management but is less commonly used due to the widespread use of non-steroidal drugs like bicalutamide.

      Prostate cancer management varies depending on the stage of the disease and the patient’s life expectancy and preferences. For localized prostate cancer (T1/T2), treatment options include active monitoring, watchful waiting, radical prostatectomy, and radiotherapy (external beam and brachytherapy). For localized advanced prostate cancer (T3/T4), options include hormonal therapy, radical prostatectomy, and radiotherapy. Patients may develop proctitis and are at increased risk of bladder, colon, and rectal cancer following radiotherapy for prostate cancer.

      In cases of metastatic prostate cancer, reducing androgen levels is a key aim of treatment. A combination of approaches is often used, including anti-androgen therapy, synthetic GnRH agonist or antagonists, bicalutamide, cyproterone acetate, abiraterone, and bilateral orchidectomy. GnRH agonists, such as Goserelin (Zoladex), initially cause a rise in testosterone levels before falling to castration levels. To prevent a rise in testosterone, anti-androgens are often used to cover the initial therapy. GnRH antagonists, such as degarelix, are being evaluated to suppress testosterone while avoiding the flare phenomenon. Chemotherapy with docetaxel is also an option for the treatment of hormone-relapsed metastatic prostate cancer in patients who have no or mild symptoms after androgen deprivation therapy has failed, and before chemotherapy is indicated.

    • This question is part of the following fields:

      • Renal System
      22.9
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  • Question 3 - A 67-year-old patient is being evaluated after being admitted for treatment of a...

    Incorrect

    • A 67-year-old patient is being evaluated after being admitted for treatment of a persistent Clostridium difficile infection. The patient had received treatment for a previous infection three weeks ago, but the symptoms did not subside, and she continued to experience diarrhoea. The patient was hospitalized three days ago due to a life-threatening Clostridium difficile infection.

      The patient has been receiving oral vancomycin and IV metronidazole for the past few days, but there has been no improvement in her symptoms. What would be the venous blood gas results in this case?

      Your Answer: Metabolic acidosis + hyperkalaemia

      Correct Answer: Metabolic acidosis + hypokalaemia

      Explanation:

      If a patient experiences prolonged diarrhoea, they may develop metabolic acidosis and hypokalaemia. This is likely the case for a patient with a history of prolonged Clostridium difficile infection, as the loss of bicarbonate ions from the GI tract during diarrhoea can lead to metabolic acidosis. Prolonged diarrhoea can also result in hypokalaemia due to the direct loss of potassium from the GI tract, which the body may be unable to compensate for. Therefore, metabolic acidosis and hypokalaemia are the expected outcomes in this scenario.

      Understanding Metabolic Acidosis

      Metabolic acidosis is a condition that can be classified based on the anion gap, which is calculated by subtracting the sum of chloride and bicarbonate from the sum of sodium and potassium. The normal range for anion gap is 10-18 mmol/L. If a question provides the chloride level, it may be an indication to calculate the anion gap.

      Hyperchloraemic metabolic acidosis is a type of metabolic acidosis with a normal anion gap. It can be caused by gastrointestinal bicarbonate loss, prolonged diarrhea, ureterosigmoidostomy, fistula, renal tubular acidosis, drugs like acetazolamide, ammonium chloride injection, and Addison’s disease. On the other hand, raised anion gap metabolic acidosis is caused by lactate, ketones, urate, acid poisoning, and other factors.

      Lactic acidosis is a type of metabolic acidosis that is caused by high lactate levels. It can be further classified into two types: lactic acidosis type A, which is caused by sepsis, shock, hypoxia, and burns, and lactic acidosis type B, which is caused by metformin. Understanding the different types and causes of metabolic acidosis is important in diagnosing and treating the condition.

    • This question is part of the following fields:

      • Renal System
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  • Question 4 - An 80-year-old man is undergoing investigation for haematuria, with no other urinary symptoms...

    Incorrect

    • An 80-year-old man is undergoing investigation for haematuria, with no other urinary symptoms reported. He has no significant medical history and previously worked in the textiles industry. During a flexible cystoscopy, a sizable mass is discovered in the lower part of his bladder, raising suspicion of bladder cancer. A PET scan is planned to check for any nodal metastasis. Which lymph nodes are most likely to be affected?

      Your Answer: Para-aortic lymph nodes

      Correct Answer: External and internal iliac lymph nodes

      Explanation:

      The bladder’s lymphatic drainage is mainly to the external and internal iliac nodes. A man with haematuria and a history of working with dye is found to have a bladder tumour. To stage the tumour, nodal metastasis should be investigated, and the correct lymph nodes to check are the external and internal iliac nodes. Other options such as deep inguinal, para-aortic, and superficial inguinal nodes are incorrect.

      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
      15.8
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  • Question 5 - A 20-year-old male presents with lethargy and heavy proteinuria on urinalysis. The consultant...

    Incorrect

    • A 20-year-old male presents with lethargy and heavy proteinuria on urinalysis. The consultant wants to directly measure renal function. What test will you order?

      Your Answer: Serum creatinine

      Correct Answer: Inulin clearance

      Explanation:

      Inulin is an ideal substance for measuring creatinine clearance as it is completely filtered at the glomerulus and not secreted or reabsorbed by the tubules. This provides a direct measurement of CrCl, making it the gold standard.

      However, the MDRD equation is commonly used to estimate eGFR by considering creatinine, age, sex, and ethnicity. It may not be accurate for individuals with varying muscle mass, such as a muscular young man who may produce more creatinine and have an underestimated CrCl.

      The Cockcroft-Gault equation is considered superior to MDRD as it also takes into account the patient’s weight, age, sex, and creatinine levels.

      Reabsorption and Secretion in Renal Function

      In renal function, reabsorption and secretion play important roles in maintaining homeostasis. The filtered load is the amount of a substance that is filtered by the glomerulus and is determined by the glomerular filtration rate (GFR) and the plasma concentration of the substance. The excretion rate is the amount of the substance that is eliminated in the urine and is determined by the urine flow rate and the urine concentration of the substance. Reabsorption occurs when the filtered load is greater than the excretion rate, and secretion occurs when the excretion rate is greater than the filtered load.

      The reabsorption rate is the difference between the filtered load and the excretion rate, and the secretion rate is the difference between the excretion rate and the filtered load. Reabsorption and secretion can occur in different parts of the nephron, including the proximal tubule, loop of Henle, distal tubule, and collecting duct. These processes are regulated by various hormones and signaling pathways, such as aldosterone, antidiuretic hormone (ADH), and atrial natriuretic peptide (ANP).

      Overall, reabsorption and secretion are important mechanisms for regulating the composition of the urine and maintaining fluid and electrolyte balance in the body. Dysfunction of these processes can lead to various renal disorders, such as diabetes insipidus, renal tubular acidosis, and Fanconi syndrome.

    • This question is part of the following fields:

      • Renal System
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  • Question 6 - A patient in his 60s is recovering on the ward following a kidney...

    Correct

    • A patient in his 60s is recovering on the ward following a kidney transplant. Six days after the operation he still requires dialysis, however he is not in any pain and the graft was a very good HLA match from a deceased donor. His renal function test results are shown below.

      Hb 93 g/L
      Plts. 232 x 109
      Na+ 151 mmol/l
      K+ 5.7 mmol/l
      Urea 7.9 mmol/l
      eGFR 27 mL/min/1.73m2

      What could be the probable reason for his abnormal renal function tests?

      Your Answer: Delayed graft function

      Explanation:

      Delayed graft function (DGF) is a common form of acute renal failure that can occur following a kidney transplant. In this case, delayed graft function is the most likely explanation for the patient’s symptoms. It is not uncommon for patients to require continued dialysis after a transplant, especially if the donor was deceased. However, if the need for dialysis persists beyond 7 days, further investigations may be necessary. Other potential causes, such as Addison’s disease or hyper-acute graft rejection, are less likely based on the patient’s history and the characteristics of the transplant.

      Complications Following Renal Transplant

      Renal transplantation is a common procedure, but it is not without its complications. The most common technical complications are related to the ureteric anastomosis, and the warm ischaemic time is also important as graft survival is directly related to this. Long warm ischaemic times increase the risk of acute tubular necrosis, which can occur in all types of renal transplantation. Organ rejection is also a possibility at any phase following the transplantation process.

      There are three types of organ rejection: hyperacute, acute, and chronic. Hyperacute rejection occurs immediately due to the presence of preformed antibodies, such as ABO incompatibility. Acute rejection occurs during the first six months and is usually T cell mediated, with tissue infiltrates and vascular lesions. Chronic rejection occurs after the first six months and is characterized by vascular changes, with myointimal proliferation leading to organ ischemia.

      In addition to immunological complications, there are also technical complications that can arise following renal transplant. These include renal artery thrombosis, renal artery stenosis, renal vein thrombosis, urine leaks, and lymphocele. Each of these complications presents with specific symptoms and requires different treatments, ranging from immediate surgery to angioplasty or drainage techniques.

      Overall, while renal transplantation can be a life-saving procedure, it is important to be aware of the potential complications and to monitor patients closely for any signs of rejection or technical issues.

    • This question is part of the following fields:

      • Renal System
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  • Question 7 - A patient with compromised kidney function is given a new medication that is...

    Incorrect

    • A patient with compromised kidney function is given a new medication that is typically eliminated through renal excretion. What factors might impact the excretion of the medication?

      Your Answer: Rate of reabsorption in the collecting duct

      Correct Answer: Diffusivity across the basement membrane and tubular secretion/reabsorption

      Explanation:

      The clearance of a substance in the kidneys is influenced by two important factors: diffusivity across the basement membrane and tubular secretion/reabsorption. Additionally, the Loop of Henle plays a crucial role in generating a significant osmotic gradient, while the primary function of the collecting duct is to facilitate the reabsorption of water.

      The Loop of Henle and its Role in Renal Physiology

      The Loop of Henle is a crucial component of the renal system, located in the juxtamedullary nephrons and running deep into the medulla. Approximately 60 litres of water containing 9000 mmol sodium enters the descending limb of the loop of Henle in 24 hours. The osmolarity of fluid changes and is greatest at the tip of the papilla. The thin ascending limb is impermeable to water, but highly permeable to sodium and chloride ions. This loss means that at the beginning of the thick ascending limb the fluid is hypo osmotic compared with adjacent interstitial fluid. In the thick ascending limb, the reabsorption of sodium and chloride ions occurs by both facilitated and passive diffusion pathways. The loops of Henle are co-located with vasa recta, which have similar solute compositions to the surrounding extracellular fluid, preventing the diffusion and subsequent removal of this hypertonic fluid. The energy-dependent reabsorption of sodium and chloride in the thick ascending limb helps to maintain this osmotic gradient. Overall, the Loop of Henle plays a crucial role in regulating the concentration of solutes in the renal system.

    • This question is part of the following fields:

      • Renal System
      21.2
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  • Question 8 - A 49-year-old woman visits the clinic complaining of occasional palpitations over the last...

    Incorrect

    • A 49-year-old woman visits the clinic complaining of occasional palpitations over the last 7 days. The palpitations occur without any physical exertion and are not accompanied by chest pain. Upon examination, her heart appears to be functioning normally. An ECG is conducted, revealing indications of hyperkalaemia. What is an ECG indicator of hyperkalaemia?

      Your Answer: ST segment depression

      Correct Answer: Small or absent P waves

      Explanation:

      The presence of small or inverted T waves on an ECG can indicate hyperkalaemia, along with other signs such as absent or reduced P waves, broad and bizarre QRS complexes, and tall-tented T waves. In severe cases, hyperkalaemia can lead to asystole.

      Hyperkalaemia is a condition where there is an excess of potassium in the blood. The levels of potassium in the plasma are regulated by various factors such as aldosterone, insulin levels, and acid-base balance. When there is metabolic acidosis, hyperkalaemia can occur as hydrogen and potassium ions compete with each other for exchange with sodium ions across cell membranes and in the distal tubule. The ECG changes that can be seen in hyperkalaemia include tall-tented T waves, small P waves, widened QRS leading to a sinusoidal pattern, and asystole.

      There are several causes of hyperkalaemia, including acute kidney injury, drugs such as potassium sparing diuretics, ACE inhibitors, angiotensin 2 receptor blockers, spironolactone, ciclosporin, and heparin, metabolic acidosis, Addison’s disease, rhabdomyolysis, and massive blood transfusion. Foods that are high in potassium include salt substitutes, bananas, oranges, kiwi fruit, avocado, spinach, and tomatoes.

      It is important to note that beta-blockers can interfere with potassium transport into cells and potentially cause hyperkalaemia in renal failure patients. In contrast, beta-agonists such as Salbutamol are sometimes used as emergency treatment. Additionally, both unfractionated and low-molecular weight heparin can cause hyperkalaemia by inhibiting aldosterone secretion.

    • This question is part of the following fields:

      • Renal System
      16.5
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  • Question 9 - A 30-year-old female visits her GP complaining of ankle swelling. During the examination,...

    Incorrect

    • A 30-year-old female visits her GP complaining of ankle swelling. During the examination, her blood pressure is found to be 180/110 mmHg and a urine dipstick reveals protein +++ levels. She is referred to a nephrologist who performs a renal biopsy. The biopsy results show basement membrane thickening on light microscopy and subepithelial spikes on silver staining. Immunohistochemistry confirms the presence of PLA2. What is the probable diagnosis?

      Your Answer: Type 1 membranoproliferative glomerulonephritis

      Correct Answer: Membranous glomerulonephritis

      Explanation:

      Membranous glomerulonephritis is the most common type of glomerulonephritis in adults and is the third leading cause of end-stage renal failure. It typically presents with proteinuria or nephrotic syndrome. A renal biopsy will show a thickened basement membrane with subepithelial electron dense deposits, creating a spike and dome appearance. The condition can be caused by various factors, including infections, malignancy, drugs, autoimmune diseases, and idiopathic reasons.

      Management of membranous glomerulonephritis involves the use of ACE inhibitors or ARBs to reduce proteinuria and improve prognosis. Immunosuppression may be necessary for patients with severe or progressive disease, but many patients spontaneously improve. Corticosteroids alone are not effective, and a combination of corticosteroid and another agent such as cyclophosphamide is often used. Anticoagulation may be considered for high-risk patients.

      The prognosis for membranous glomerulonephritis follows the rule of thirds: one-third of patients experience spontaneous remission, one-third remain proteinuric, and one-third develop end-stage renal failure. Good prognostic factors include female sex, young age at presentation, and asymptomatic proteinuria of a modest degree at the time of diagnosis.

    • This question is part of the following fields:

      • Renal System
      22
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  • Question 10 - A woman in her 30s experiences dehydration from diarrhoea and vomiting, leading to...

    Correct

    • A woman in her 30s experiences dehydration from diarrhoea and vomiting, leading to activation of the renin-angiotensin-aldosterone system by her kidneys. This increases the pressure across the glomerulus and maintains glomerular filtration rate. What is the normal passage of blood through this area?

      Your Answer: afferent arteriole- glomerular capillary bed- efferent arteriole- peritubular capillaries and medullary vasa recta

      Explanation:

      The journey of blood to a nephron begins with the afferent arteriole, followed by the glomerular capillary bed, efferent arteriole, and finally the peritubular capillaries and medullary vasa recta.

      The afferent arteriole is the first stage, where blood enters the nephron. From there, it flows through the glomerulus and exits through the efferent arteriole.

      If the efferent arteriole is constricted, it can increase pressure across the glomerulus, leading to a higher filtration fraction and maintaining eGFR.

      The Loop of Henle and its Role in Renal Physiology

      The Loop of Henle is a crucial component of the renal system, located in the juxtamedullary nephrons and running deep into the medulla. Approximately 60 litres of water containing 9000 mmol sodium enters the descending limb of the loop of Henle in 24 hours. The osmolarity of fluid changes and is greatest at the tip of the papilla. The thin ascending limb is impermeable to water, but highly permeable to sodium and chloride ions. This loss means that at the beginning of the thick ascending limb the fluid is hypo osmotic compared with adjacent interstitial fluid. In the thick ascending limb, the reabsorption of sodium and chloride ions occurs by both facilitated and passive diffusion pathways. The loops of Henle are co-located with vasa recta, which have similar solute compositions to the surrounding extracellular fluid, preventing the diffusion and subsequent removal of this hypertonic fluid. The energy-dependent reabsorption of sodium and chloride in the thick ascending limb helps to maintain this osmotic gradient. Overall, the Loop of Henle plays a crucial role in regulating the concentration of solutes in the renal system.

    • This question is part of the following fields:

      • Renal System
      50.2
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  • Question 11 - A 65-year-old man is having a radical cystectomy for bladder carcinoma. Significant venous...

    Incorrect

    • A 65-year-old man is having a radical cystectomy for bladder carcinoma. Significant venous bleeding occurs during the surgery. What is the main location for venous drainage from the bladder?

      Your Answer: Internal iliac vein

      Correct Answer: Vesicoprostatic venous plexus

      Explanation:

      The urinary bladder is surrounded by a complex network of veins that drain into the internal iliac vein. During cystectomy, the vesicoprostatic plexus can be a significant source of venous bleeding.

      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
      10.6
      Seconds
  • Question 12 - A 49-year-old woman is having surgery to remove an adrenal adenoma on her...

    Incorrect

    • A 49-year-old woman is having surgery to remove an adrenal adenoma on her left side. During the procedure, the superior adrenal artery is damaged and begins to bleed. What is the origin of this vessel?

      Your Answer: Splenic

      Correct Answer: Inferior phrenic artery

      Explanation:

      The inferior phrenic artery gives rise to the superior adrenal artery.

      Adrenal Gland Anatomy

      The adrenal glands are located superomedially to the upper pole of each kidney. The right adrenal gland is posteriorly related to the diaphragm, inferiorly related to the kidney, medially related to the vena cava, and anteriorly related to the hepato-renal pouch and bare area of the liver. On the other hand, the left adrenal gland is postero-medially related to the crus of the diaphragm, inferiorly related to the pancreas and splenic vessels, and anteriorly related to the lesser sac and stomach.

      The arterial supply of the adrenal glands is through the superior adrenal arteries from the inferior phrenic artery, middle adrenal arteries from the aorta, and inferior adrenal arteries from the renal arteries. The right adrenal gland drains via one central vein directly into the inferior vena cava, while the left adrenal gland drains via one central vein into the left renal vein.

      In summary, the adrenal glands are small but important endocrine glands located above the kidneys. They have a unique blood supply and drainage system, and their location and relationships with other organs in the body are crucial for their proper functioning.

    • This question is part of the following fields:

      • Renal System
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  • Question 13 - A 65-year-old man presents to the emergency department with a 4-hour history of...

    Correct

    • A 65-year-old man presents to the emergency department with a 4-hour history of palpitations. He has been experiencing vomiting and diarrhoea for the past few days and feels increasingly lethargic. The patient has a medical history of type 2 diabetes mellitus and chronic kidney disease.

      The following routine blood tests are taken:

      - Hb 150 g/L (135-180)
      - Platelets 308 * 109/L (150 - 400)
      - WBC 12.4 * 109/L (4.0 - 11.0)
      - Na+ 139 mmol/L (135 - 145)
      - K+ 7.1 mmol/L (3.5 - 5.0)
      - Urea 12.6 mmol/L (2.0 - 7.0)
      - Creatinine 204 µmol/L (55 - 120)
      - CRP 56 mg/L (< 5)

      The patient's ECG shows sinus tachycardia and tall tented T waves.

      What is the most appropriate initial management for this patient?

      Your Answer: Calcium gluconate

      Explanation:

      To stabilize the cardiac membrane in a patient with hyperkalemia and ECG changes, the priority is to administer intravenous calcium gluconate. This is because hyperkalemia can lead to life-threatening arrhythmias and cardiac arrest if left untreated. ECG changes associated with hyperkalemia include tall tented T waves, P wave flattening and prolongation, and broad QRS complexes. Haemofiltration is generally reserved for refractory hyperkalemia, while insulin and dextrose infusion would treat hyperkalemia but not protect the heart from the risk of arrhythmia and death. Intravenous fluids play no role in the management of hyperkalemia or stabilizing the cardiac membrane.

      Managing Hyperkalaemia: A Step-by-Step Guide

      Hyperkalaemia is a serious condition that can lead to life-threatening arrhythmias if left untreated. To manage hyperkalaemia, it is important to address any underlying factors that may be contributing to the condition, such as acute kidney injury, and to stop any aggravating drugs, such as ACE inhibitors. Treatment can be categorised based on the severity of the hyperkalaemia, which is classified as mild, moderate, or severe based on the patient’s potassium levels.

      ECG changes are also important in determining the appropriate management for hyperkalaemia. Peaked or ‘tall-tented’ T waves, loss of P waves, broad QRS complexes, and a sinusoidal wave pattern are all associated with hyperkalaemia and should be evaluated in all patients with new hyperkalaemia.

      The principles of treatment modalities for hyperkalaemia include stabilising the cardiac membrane, shifting potassium from extracellular to intracellular fluid compartments, and removing potassium from the body. IV calcium gluconate is used to stabilise the myocardium, while insulin/dextrose infusion and nebulised salbutamol can be used to shift potassium from the extracellular to intracellular fluid compartments. Calcium resonium, loop diuretics, and dialysis can be used to remove potassium from the body.

      In practical terms, all patients with severe hyperkalaemia or ECG changes should receive emergency treatment, including IV calcium gluconate to stabilise the myocardium and insulin/dextrose infusion to shift potassium from the extracellular to intracellular fluid compartments. Other treatments, such as nebulised salbutamol, may also be used to temporarily lower serum potassium levels. Further management may involve stopping exacerbating drugs, treating any underlying causes, and lowering total body potassium through the use of calcium resonium, loop diuretics, or dialysis.

    • This question is part of the following fields:

      • Renal System
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  • Question 14 - A 30-year-old male presents to his GP with concerns about lumps on his...

    Incorrect

    • A 30-year-old male presents to his GP with concerns about lumps on his hands. He recalls his father having similar spots and is worried about their appearance after comments from his colleagues. On examination, soft yellow papules are found on the base of the 1st and 3rd digit. A blood test reveals elevated cholesterol and triglycerides, with low HDL and high LDL. What is the underlying genetic mutation causing this patient's lipid transport defect?

      Your Answer: Apolipoprotein C (Apo-C)

      Correct Answer: Apolipoprotein E (Apo-E)

      Explanation:

      Hyperlipidaemia Classification

      Hyperlipidaemia is a condition characterized by high levels of lipids (fats) in the blood. The Fredrickson classification system was previously used to categorize hyperlipidaemia based on the type of lipid and genetic factors. However, it is now being replaced by a classification system based solely on genetics.

      The Fredrickson classification system included five types of hyperlipidaemia, each with a specific genetic cause. Type I was caused by lipoprotein lipase deficiency or apolipoprotein C-II deficiency, while type IIa was caused by familial hypercholesterolaemia. Type IIb was caused by familial combined hyperlipidaemia, and type III was caused by remnant hyperlipidaemia or apo-E2 homozygosity. Type IV was caused by familial hypertriglyceridaemia or familial combined hyperlipidaemia, and type V was caused by familial hypertriglyceridaemia.

      Hyperlipidaemia can primarily be caused by raised cholesterol or raised triglycerides. Familial hypercholesterolaemia and polygenic hypercholesterolaemia are primarily caused by raised cholesterol, while familial hypertriglyceridaemia and lipoprotein lipase deficiency or apolipoprotein C-II deficiency are primarily caused by raised triglycerides. Mixed hyperlipidaemia disorders, such as familial combined hyperlipidaemia and remnant hyperlipidaemia, involve a combination of raised cholesterol and raised triglycerides.

    • This question is part of the following fields:

      • Renal System
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  • Question 15 - A 70-year-old man is receiving treatment for pneumonia and is currently experiencing delirium....

    Incorrect

    • A 70-year-old man is receiving treatment for pneumonia and is currently experiencing delirium. He has been catheterized and is receiving IV antibiotics. The nurse has observed that he has not urinated overnight, despite attempts to flush the catheter.

      The patient has a medical history of hypertension, chronic back pain, and type 2 diabetes, for which he takes ramipril, furosemide, naproxen, and gliclazide. His daily blood tests are pending, and the morning medication round has begun.

      What is the appropriate course of action regarding his medications?

      Your Answer: Increase furosemide, withhold ramipril, continue everything else

      Correct Answer: Withhold furosemide, naproxen, and ramipril, continue gliclazide and IV antibiotics

      Explanation:

      When a patient is suspected to have acute kidney injury (AKI), it is important to stop nephrotoxic medications such as ACE inhibitors, ARBs, diuretics, and NSAIDs. In this case, the patient is on ramipril, furosemide, and naproxen, which should be withheld. Gliclazide and IV antibiotics can be continued, but blood sugar levels should be monitored closely due to the increased risk of hypoglycemia in renal impairment. It is incorrect to give morning medication and wait for blood test results, increase furosemide, withhold all regular medications, or withhold only furosemide and gliclazide while continuing everything else. The appropriate action is to withhold all nephrotoxic medications and continue necessary treatments while monitoring the patient’s condition closely.

      Acute kidney injury (AKI) is a condition where there is a reduction in renal function following an insult to the kidneys. It was previously known as acute renal failure and can result in long-term impaired kidney function or even death. AKI can be caused by prerenal, intrinsic, or postrenal factors. Patients with chronic kidney disease, other organ failure/chronic disease, a history of AKI, or who have used drugs with nephrotoxic potential are at an increased risk of developing AKI. To prevent AKI, patients at risk may be given IV fluids or have certain medications temporarily stopped.

      The kidneys are responsible for maintaining fluid balance and homeostasis, so a reduced urine output or fluid overload may indicate AKI. Symptoms may not be present in early stages, but as renal failure progresses, patients may experience arrhythmias, pulmonary and peripheral edema, or features of uraemia. Blood tests such as urea and electrolytes can be used to detect AKI, and urinalysis and imaging may also be necessary.

      Management of AKI is largely supportive, with careful fluid balance and medication review. Loop diuretics and low-dose dopamine are not recommended, but hyperkalaemia needs prompt treatment to avoid life-threatening arrhythmias. Renal replacement therapy may be necessary in severe cases. Patients with suspected AKI secondary to urinary obstruction require prompt review by a urologist, and specialist input from a nephrologist is required for cases where the cause is unknown or the AKI is severe.

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      • Renal System
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  • Question 16 - A 39-year-old male visits his GP for a routine check-up of his high...

    Correct

    • A 39-year-old male visits his GP for a routine check-up of his high blood pressure. Despite being on a maximum dose of ramipril, amlodipine, and spironolactone, his blood pressure remains consistently at or above 160/100 mmHg. During the consultation, the patient reveals that he has been experiencing episodes of intense anxiety, sweating, palpitations, and fear about twice a week for the past six months.

      What is the source of the hormone responsible for the symptoms experienced by this man?

      Your Answer: Adrenal medulla

      Explanation:

      The patient’s symptoms suggest a phaeochromocytoma, which is caused by a tumor in the adrenal medulla that leads to the release of excess epinephrine. This results in refractory hypertension and severe episodes of sweating, palpitations, and anxiety.

      While the pituitary gland produces hormones like thyroid-stimulating hormone and adrenocorticotropic hormone, these hormones do not directly cause the symptoms seen in this patient. Additionally, excess ACTH production is associated with Cushing’s syndrome, which does not fit the clinical picture.

      The adrenal cortex has three distinct zones, each responsible for producing different hormones. The zona fasciculata produces glucocorticoids like cortisol, which can lead to Cushing’s syndrome. The zona glomerulosa produces mineralocorticoids like aldosterone, which can cause uncontrolled hypertension and electrolyte imbalances. The zona reticularis produces androgens like testosterone. However, none of these conditions match the symptoms seen in this patient.

      The renin-angiotensin-aldosterone system is a complex system that regulates blood pressure and fluid balance in the body. The adrenal cortex is divided into three zones, each producing different hormones. The zona glomerulosa produces mineralocorticoids, mainly aldosterone, which helps regulate sodium and potassium levels in the body. Renin is an enzyme released by the renal juxtaglomerular cells in response to reduced renal perfusion, hyponatremia, and sympathetic nerve stimulation. It hydrolyses angiotensinogen to form angiotensin I, which is then converted to angiotensin II by angiotensin-converting enzyme in the lungs. Angiotensin II has various actions, including causing vasoconstriction, stimulating thirst, and increasing proximal tubule Na+/H+ activity. It also stimulates aldosterone and ADH release, which causes retention of Na+ in exchange for K+/H+ in the distal tubule.

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      • Renal System
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  • Question 17 - A 22-year-old man is referred to a cardiologist by his family physician due...

    Incorrect

    • A 22-year-old man is referred to a cardiologist by his family physician due to consistently high cholesterol levels in his blood tests. During the assessment, the cardiologist observes yellowish skin nodules around the patient's Achilles tendon and white outer regions of the iris. The cardiologist informs the patient that he has inherited the condition from his biological parents and that there is a 50% chance of passing it on to his offspring, regardless of his partner's status. The patient reports a paternal uncle who died at 31 due to a heart-related condition. The cardiologist recommends treatment to manage cholesterol levels and prevent future cardiovascular events. What is the most likely underlying pathology in this patient's condition?

      Your Answer: Defective apolipoprotein E

      Correct Answer: Defective low-density lipoprotein receptors

      Explanation:

      The patient’s symptoms and signs suggest that they may have one of the familial dyslipidemias, likely familial hypercholesterolemia. This is supported by the presence of Achilles tendon xanthomas and corneal arcus in a relatively young patient, as well as the cardiologist’s statement that there is a 50% chance of inheritance if the mother is normal, indicating an autosomal dominant inheritance pattern. Familial hypercholesterolemia is caused by defective or absent LDL receptors.

      Other familial dyslipidemias include dysbetalipoproteinemia, which is caused by defective apolipoprotein E and has an autosomal recessive inheritance pattern, hypertriglyceridemia, which is caused by overproduction of VLDL and has an autosomal dominant inheritance pattern, and hyperchylomicronemia, which is caused by deficiency of lipoprotein lipase or apolipoprotein C-II and has an autosomal recessive inheritance pattern. Hyperchylomicronemia is not associated with a higher risk of atherosclerosis, unlike the other forms of familial dyslipidemia.

      Familial Hypercholesterolaemia: Causes, Diagnosis, and Management

      Familial hypercholesterolaemia (FH) is a genetic condition that affects approximately 1 in 500 people. It is an autosomal dominant disorder that results in high levels of LDL-cholesterol, which can lead to early cardiovascular disease if left untreated. FH is caused by mutations in the gene that encodes the LDL-receptor protein.

      To diagnose FH, NICE recommends suspecting it as a possible diagnosis in adults with a total cholesterol level greater than 7.5 mmol/l and/or a personal or family history of premature coronary heart disease. For children of affected parents, testing should be arranged by age 10 if one parent is affected and by age 5 if both parents are affected.

      The Simon Broome criteria are used for clinical diagnosis, which includes a total cholesterol level greater than 7.5 mmol/l and LDL-C greater than 4.9 mmol/l in adults or a total cholesterol level greater than 6.7 mmol/l and LDL-C greater than 4.0 mmol/l in children. Definite FH is diagnosed if there is tendon xanthoma in patients or first or second-degree relatives or DNA-based evidence of FH. Possible FH is diagnosed if there is a family history of myocardial infarction below age 50 years in second-degree relatives, below age 60 in first-degree relatives, or a family history of raised cholesterol levels.

      Management of FH involves referral to a specialist lipid clinic and the use of high-dose statins as first-line treatment. CVD risk estimation using standard tables is not appropriate in FH as they do not accurately reflect the risk of CVD. First-degree relatives have a 50% chance of having the disorder and should be offered screening, including children who should be screened by the age of 10 years if there is one affected parent. Statins should be discontinued in women 3 months before conception due to the risk of congenital defects.

    • This question is part of the following fields:

      • Renal System
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  • Question 18 - A 23-year-old male presents to the emergency department with decreased level of consciousness...

    Incorrect

    • A 23-year-old male presents to the emergency department with decreased level of consciousness after a night of excessive alcohol intake. He is observed to have increased urine output. There is no history of substance abuse according to his companions.

      What is the probable cause of the patient's polyuria?

      Your Answer: Osmotic diuresis

      Correct Answer: antidiuretic hormone inhibition

      Explanation:

      Alcohol bingeing can result in the suppression of ADH in the posterior pituitary gland, leading to polyuria. This occurs because alcohol inhibits ADH, which reduces the insertion of aquaporins in the collecting tubules of the nephron. As a result, water reabsorption is reduced, leading to polyuria. The other options provided are incorrect because they do not accurately describe the mechanism by which alcohol causes polyuria. Central diabetes insipidus is a disorder of ADH production in the brain, while nephrogenic diabetes insipidus is caused by kidney pathology. Osmotic diuresis occurs when solutes such as glucose and urea increase the osmotic pressure in the renal tubules, leading to water retention, but this is not the primary mechanism by which alcohol causes polyuria.

      Polyuria, or excessive urination, can be caused by a variety of factors. A recent review in the BMJ categorizes these causes by their frequency of occurrence. The most common causes of polyuria include the use of diuretics, caffeine, and alcohol, as well as diabetes mellitus, lithium, and heart failure. Less common causes include hypercalcaemia and hyperthyroidism, while rare causes include chronic renal failure, primary polydipsia, and hypokalaemia. The least common cause of polyuria is diabetes insipidus, which occurs in less than 1 in 10,000 cases. It is important to note that while these frequencies may not align with exam questions, understanding the potential causes of polyuria can aid in diagnosis and treatment.

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      • Renal System
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  • Question 19 - A 25-year-old male presents with a painless swelling of the testis. Histologically the...

    Correct

    • A 25-year-old male presents with a painless swelling of the testis. Histologically the stroma has a lymphocytic infiltrate. What is the most likely diagnosis?

      Seminoma is the most common type of testicular tumor and is frequently seen in males aged between 25-40 years. The classical subtype is the most prevalent, and histology shows a lymphocytic stromal infiltrate. Other subtypes include spermatocytic, anaplastic, and syncytiotrophoblast giant cells. A teratoma is more common in males aged 20-30 years.

      Your Answer: Classical seminoma

      Explanation:

      The most prevalent form of testicular tumor is seminoma, which is typically found in males between the ages of 30 and 40. The classical subtype of seminoma is the most common and is characterized by a lymphocytic stromal infiltrate. Other subtypes include spermatocytic, which features tumor cells that resemble spermatocytes and has a favorable prognosis, anaplastic, and syncytiotrophoblast giant cells, which contain β HCG. Teratoma, on the other hand, is more frequently observed in males between the ages of 20 and 30.

      Overview of Testicular Disorders

      Testicular disorders can range from benign conditions to malignant tumors. Testicular cancer is the most common malignancy in men aged 20-30 years, with germ-cell tumors accounting for 95% of cases. Seminomas are the most common subtype, while non-seminomatous germ cell tumors include teratoma, yolk sac tumor, choriocarcinoma, and mixed germ cell tumors. Risk factors for testicular cancer include cryptorchidism, infertility, family history, Klinefelter’s syndrome, and mumps orchitis. The most common presenting symptom is a painless lump, but pain, hydrocele, and gynecomastia may also be present.

      Benign testicular disorders include epididymo-orchitis, which is an acute inflammation of the epididymis often caused by bacterial infection. Testicular torsion, which results in testicular ischemia and necrosis, is most common in males aged between 10 and 30. Hydrocele presents as a mass that transilluminates and may occur as a result of a patent processus vaginalis in children. Treatment for these conditions varies, with orchidectomy being the primary treatment for testicular cancer. Surgical exploration is necessary for testicular torsion, while epididymo-orchitis and hydrocele may require medication or surgical procedures depending on the severity of the condition.

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      • Renal System
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  • Question 20 - At what level is the hilum of the right kidney located? ...

    Incorrect

    • At what level is the hilum of the right kidney located?

      Your Answer: L2

      Correct Answer: L1

      Explanation:

      Renal Anatomy: Understanding the Structure and Relations of the Kidneys

      The kidneys are two bean-shaped organs located in a deep gutter alongside the vertebral bodies. They measure about 11cm long, 5cm wide, and 3 cm thick, with the left kidney usually positioned slightly higher than the right. The upper pole of both kidneys approximates with the 11th rib, while the lower border is usually alongside L3. The kidneys are surrounded by an outer cortex and an inner medulla, which contains pyramidal structures that terminate at the renal pelvis into the ureter. The renal sinus lies within the kidney and contains branches of the renal artery, tributaries of the renal vein, major and minor calyces, and fat.

      The anatomical relations of the kidneys vary depending on the side. The right kidney is in direct contact with the quadratus lumborum, diaphragm, psoas major, and transversus abdominis, while the left kidney is in direct contact with the quadratus lumborum, diaphragm, psoas major, transversus abdominis, stomach, pancreas, spleen, and distal part of the small intestine. Each kidney and suprarenal gland is enclosed within a common layer of investing fascia, derived from the transversalis fascia, which is divided into anterior and posterior layers (Gerotas fascia).

      At the renal hilum, the renal vein lies most anteriorly, followed by the renal artery (an end artery), and the ureter lies most posteriorly. Understanding the structure and relations of the kidneys is crucial in diagnosing and treating renal diseases and disorders.

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      • Renal System
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