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  • Question 1 - What is the meaning of a drug's half-life? ...

    Incorrect

    • What is the meaning of a drug's half-life?

      Your Answer: Drugs with short half-lives often require a loading dose

      Correct Answer: Drugs which follow first order kinetics have a fixed half life

      Explanation:

      The half-life of a drug is the time taken for its concentration to fall to one half of its value. Drugs with long half-lives may require a loading dose to achieve therapeutic plasma concentrations rapidly. It takes about 4.5 half-lives to reach steady state plasma levels. Most drugs follow first order kinetics, where a constant fraction of the drug in the body is eliminated per unit time. However, some drugs may follow zero order kinetics, where the plasma concentration of the drug decreases at a constant rate, despite the concentration of the drug. For drugs with nonlinear kinetics of dose-dependent kinetics, the relationship between the AUC of CSS and dose is not linear, and the kinetic parameters may vary depending on the administered dose.

    • This question is part of the following fields:

      • Psychopharmacology
      43.3
      Seconds
  • Question 2 - What factor has been demonstrated to have a notable impact on the QTc...

    Correct

    • What factor has been demonstrated to have a notable impact on the QTc interval?

      Your Answer: Grapefruit juice

      Explanation:

      Amantadine and QTc Prolongation

      Amantadine is a medication used to treat Parkinson’s disease and influenza. It has been associated with QTc prolongation, which can increase the risk of Torsades de points. Therefore, caution should be exercised when prescribing amantadine to patients with risk factors for QT prolongation. If a patient is already taking amantadine and develops a prolonged QTc interval, the medication should be discontinued and an alternative treatment considered. It is important to monitor the QTc interval in patients taking amantadine, especially those with risk factors for QT prolongation.

    • This question is part of the following fields:

      • Psychopharmacology
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  • Question 3 - What is the most frequently observed side effect of clozapine? ...

    Correct

    • What is the most frequently observed side effect of clozapine?

      Your Answer: Hypersalivation

      Explanation:

      Clozapine is an atypical antipsychotic drug that acts as an antagonist at various receptors, including dopamine, histamine, serotonin, adrenergic, and cholinergic receptors. It is mainly metabolized by CYP1A2, and its plasma levels can be affected by inducers and inhibitors of this enzyme. Clozapine is associated with several side effects, including drowsiness, constipation, weight gain, and hypersalivation. Hypersalivation is a paradoxical side effect, and its mechanism is not fully understood, but it may involve clozapine agonist activity at the muscarinic M4 receptor and antagonist activity at the alpha-2 adrenoceptor. Clozapine is also associated with several potentially dangerous adverse events, including agranulocytosis, myocarditis, seizures, severe orthostatic hypotension, increased mortality in elderly patients with dementia-related psychosis, colitis, pancreatitis, thrombocytopenia, thromboembolism, and insulin resistance and diabetes mellitus. The BNF advises caution in using clozapine in patients with prostatic hypertrophy, susceptibility to angle-closure glaucoma, and adults over 60 years. Valproate should be considered when using high doses of clozapine, plasma levels > 0.5 mg/l, of when the patient experiences seizures. Myocarditis is a rare but potentially fatal adverse event associated with clozapine use, and its diagnosis is based on biomarkers and clinical features. The mortality rate of clozapine-induced myocarditis is high, and subsequent use of clozapine in such cases leads to recurrence of myocarditis in most cases.

    • This question is part of the following fields:

      • Psychopharmacology
      50.4
      Seconds
  • Question 4 - All of the following contribute to the sleep enhancing properties of mirtazapine except:...

    Incorrect

    • All of the following contribute to the sleep enhancing properties of mirtazapine except:

      Your Answer: H1 antagonism

      Correct Answer: Alpha 2 antagonist

      Explanation:

      Mirtazapine is known to enhance sleep through its effects on various receptors, including 5HT2, 5HT3, and H1, as well as alpha 1 antagonist. However, its alpha 2 antagonist may actually inhibit the release of norepinephrine and potentially diminish the sleep-enhancing effects of the drug at higher dosages. Therefore, doses of 30mg of less are typically used to treat insomnia. (Source: Foundations of Psychiatric Sleep Medicine, Cambridge University Press, 2011, p.224)

      Mechanisms of Action of Different Drugs

      Understanding the mechanisms of action of different drugs is crucial for medical professionals. It is a common topic in exams and can earn easy marks if studied well. This article provides a list of drugs and their mechanisms of action in different categories such as antidepressants, anti dementia drugs, mood stabilizers, anxiolytic/hypnotic drugs, antipsychotics, drugs of abuse, and other drugs. For example, mirtazapine is a noradrenaline and serotonin specific antidepressant that works as a 5HT2 antagonist, 5HT3 antagonist, H1 antagonist, alpha 1 and alpha 2 antagonist, and moderate muscarinic antagonist. Similarly, donepezil is a reversible acetylcholinesterase inhibitor used as an anti dementia drug, while valproate is a GABA agonist and NMDA antagonist used as a mood stabilizer. The article also explains the mechanisms of action of drugs such as ketamine, phencyclidine, buprenorphine, naloxone, atomoxetine, varenicline, disulfiram, acamprosate, and sildenafil.

    • This question is part of the following fields:

      • Psychopharmacology
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  • Question 5 - A 35 year old woman, with a history of severe depression, who has...

    Incorrect

    • A 35 year old woman, with a history of severe depression, who has just given birth asks for your opinion on the safety of continuing her antidepressant medication while breastfeeding. She is currently taking sertraline 25 mg daily. What advice should you give her?

      Your Answer: Sertraline should be discontinued and fluoxetine commenced prior to delivery

      Correct Answer: Treatment of maternal illness is the highest priority

      Explanation:

      Although there is a potential risk of infants being exposed to antidepressants through breast milk, leaving mental illness untreated can pose greater risks. The safety of psychotropic medication during breastfeeding is not well-established. Nonetheless, sertraline is considered one of the safest antidepressants for breastfeeding mothers as it is excreted in low levels. Therefore, if treatment is necessary, sertraline is a suitable option for breastfeeding mothers.

    • This question is part of the following fields:

      • Psychopharmacology
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      Seconds
  • Question 6 - What is a true statement about lithium? ...

    Incorrect

    • What is a true statement about lithium?

      Your Answer: Camcolit is a preparation of lithium citrate

      Correct Answer: Lithium citrate is available in liquid form

      Explanation:

      Both lithium carbonate and citrate are used for the treatment and prevention of various mental health conditions, including mania, bipolar disorder, recurrent depression, and aggressive of self-harming behavior. Lithium carbonate is available in tablet form, while lithium citrate is a liquid medication.

      Lithium – Pharmacology

      Pharmacokinetics:
      Lithium salts are rapidly absorbed following oral administration and are almost exclusively excreted by the kidneys unchanged. Blood samples for lithium should be taken 12 hours post-dose.

      Ebstein’s:
      Ebstein’s anomaly is a congenital malformation consisting of a prolapse of the tricuspid valve into the right ventricle. It occurs in 1:20,000 of the general population. Initial data suggested it was more common in those using lithium but this had not held to be true.

      Contraindications:
      Addison’s disease, Brugada syndrome, cardiac disease associated with rhythm disorders, clinically significant renal impairment, untreated of untreatable hypothyroidism, low sodium levels.

      Side-effects:
      Common side effects include nausea, tremor, polyuria/polydipsia, rash/dermatitis, blurred vision, dizziness, decreased appetite, drowsiness, metallic taste, and diarrhea. Side-effects are often dose-related.

      Long-term use is associated with hypothyroidism, hyperthyroidism, hypercalcemia/hyperparathyroidism, irreversible nephrogenic diabetes insipidus, and reduced GFR.

      Lithium-induced diabetes insipidus:
      Treatment options include stopping lithium (if feasible), keeping levels within 0.4-0.8 mmol/L, once-daily dose of the drug taken at bedtime, amiloride, thiazide diuretics, indomethacin, and desmopressin.

      Toxicity:
      Lithium salts have a narrow therapeutic/toxic ratio. Risk factors for lithium toxicity include drugs altering renal function, decreased circulating volume, infections, fever, decreased oral intake of water, renal insufficiency, and nephrogenic diabetes insipidus. Features of lithium toxicity include GI symptoms and neuro symptoms.

      Pre-prescribing:
      Before prescribing lithium, renal function, cardiac function, thyroid function, FBC, and BMI should be checked. Women of childbearing age should be advised regarding contraception, and information about toxicity should be provided.

      Monitoring:
      Lithium blood levels should be checked weekly until stable, and then every 3-6 months once stable. Thyroid and renal function should be checked every 6 months. Patients should be issued with an information booklet, alert card, and record book.

    • This question is part of the following fields:

      • Psychopharmacology
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      Seconds
  • Question 7 - Which of the following is linked to losing weight? ...

    Correct

    • Which of the following is linked to losing weight?

      Your Answer: Topiramate

      Explanation:

      Topiramate is a medication used for epilepsy and bipolar affective disorder. It works by inhibiting voltage gated sodium channels and increasing GABA levels. Unlike most psychotropic drugs, it is associated with weight loss.

    • This question is part of the following fields:

      • Psychopharmacology
      10.5
      Seconds
  • Question 8 - During which decade was chlorpromazine first introduced into psychiatric clinical practice? ...

    Incorrect

    • During which decade was chlorpromazine first introduced into psychiatric clinical practice?

      Your Answer: 1980s

      Correct Answer: 1950s

      Explanation:

      Charpentier synthesised Chlorpromazine in 1950, and it was subsequently introduced into clinical practice in the 1950s.

      A Historical Note on the Development of Zimelidine, the First Selective Serotonin Reuptake Inhibitor

      In 1960s, evidence began to emerge suggesting a significant role of serotonin in depression. This led to the development of zimelidine, the first selective serotonin reuptake inhibitor (SSRI). Zimelidine was derived from pheniramine and was marketed in Europe in 1982. However, it was removed from the market in 1983 due to severe side effects such as hypersensitivity reactions and Guillain-Barre syndrome.

      Despite its short-lived availability, zimelidine paved the way for the development of other SSRIs such as fluoxetine, which was approved by the FDA in 1987 and launched in the US market in 1988 under the trade name Prozac. The development of SSRIs revolutionized the treatment of depression and other mood disorders, providing a safer and more effective alternative to earlier antidepressants such as the tricyclics and MAO inhibitors.

    • This question is part of the following fields:

      • Psychopharmacology
      13.1
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  • Question 9 - What factors contribute to an increased likelihood of developing pseudo-parkinsonism when taking typical...

    Correct

    • What factors contribute to an increased likelihood of developing pseudo-parkinsonism when taking typical antipsychotics?

      Your Answer: Previous stroke

      Explanation:

      Extrapyramidal side-effects (EPSE’s) are a group of side effects that affect voluntary motor control, commonly seen in patients taking antipsychotic drugs. EPSE’s include dystonias, parkinsonism, akathisia, and tardive dyskinesia. They can be frightening and uncomfortable, leading to problems with non-compliance and can even be life-threatening in the case of laryngeal dystonia. EPSE’s are thought to be due to antagonism of dopaminergic D2 receptors in the basal ganglia. Symptoms generally occur within the first few days of treatment, with dystonias appearing quickly, within a few hours of administration of the first dose. Newer antipsychotics tend to produce less EPSE’s, with clozapine carrying the lowest risk and haloperidol carrying the highest risk. Akathisia is the most resistant EPSE to treat. EPSE’s can also occur when antipsychotics are discontinued (withdrawal dystonia).

    • This question is part of the following fields:

      • Psychopharmacology
      27.6
      Seconds
  • Question 10 - Which medication does not create a significant active metabolite? ...

    Correct

    • Which medication does not create a significant active metabolite?

      Your Answer: Lithium

      Explanation:

      There is no active metabolite produced by lithium.

      The Significance of Active Metabolites in Drug Discovery and Development

      Certain drugs are classified as prodrugs, which means that they are inactive when administered and require metabolism to become active. These drugs are converted into an active form, which is referred to as an active metabolite. Some drugs have important active metabolites, such as diazepam, dothiepin, fluoxetine, imipramine, risperidone, amitriptyline, and codeine, which are desmethyldiazepam, dothiepin sulfoxide, norfluoxetine, desipramine, 9-hydroxyrisperidone, nortriptyline, and morphine, respectively.

      The role of pharmacologically active metabolites in drug discovery and development is significant. Understanding the active metabolites of a drug can help in the development of more effective and safer drugs. Active metabolites can also provide insights into the pharmacokinetics and pharmacodynamics of a drug, which can aid in the optimization of dosing regimens. Additionally, active metabolites can have different pharmacological properties than the parent drug, which can lead to the discovery of new therapeutic uses for a drug. Therefore, the study of active metabolites is an important aspect of drug discovery and development.

    • This question is part of the following fields:

      • Psychopharmacology
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