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NR 567 FINAL EXAM – ADVANCED PHARMACOLOGY FOR THE AGACNP | 2 VERSIONS EACH 100 Questions with Answers & Rationales | instant pdf download

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NR 567 FINAL EXAM – ADVANCED PHARMACOLOGY FOR THE AGACNP | 2 VERSIONS EACH 100 Questions with Answers & Rationales | instant pdf download This 2 versions exam covers the core content areas for the NR 567 Advanced Pharmacology final, including:  Pharmacokinetics & Pharmacodynamics  Antimicrobial Therapy (antibacterials, antifungals, antivirals)  Cardiovascular Pharmacology (HF, HTN, ACS, anticoagulation, antiarrhythmics)  Endocrine Pharmacology (diabetes, thyroid, adrenal, bone)  Neurology & Psychiatry (seizures, Parkinson's, Alzheimer's, depression, psychosis)  Hematology & Oncology (anticoagulation, chemotherapy, supportive care)  Pulmonary Pharmacology (asthma, COPD, PAH)  Gastrointestinal Pharmacology (PUD, IBD, liver disease, nutrition)  Renal, Fluids & Electrolytes  High-Risk Medications & Patient Safety

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NR 567 FINAL EXAM – ADVANCED PHARMACOLOGY FOR THE
AGACNP | 2 VERSIONS EACH 100 Questions with Answers &
Rationales | instant pdf download

This 2 versions exam covers the core content areas for the NR 567 Advanced
Pharmacology final, including:

 Pharmacokinetics & Pharmacodynamics

 Antimicrobial Therapy (antibacterials, antifungals, antivirals)

 Cardiovascular Pharmacology (HF, HTN, ACS, anticoagulation, antiarrhythmics)

 Endocrine Pharmacology (diabetes, thyroid, adrenal, bone)

 Neurology & Psychiatry (seizures, Parkinson's, Alzheimer's, depression,
psychosis)

 Hematology & Oncology (anticoagulation, chemotherapy, supportive care)

 Pulmonary Pharmacology (asthma, COPD, PAH)

 Gastrointestinal Pharmacology (PUD, IBD, liver disease, nutrition)

 Renal, Fluids & Electrolytes

 High-Risk Medications & Patient Safety

,SECTION 1: PHARMACOKINETICS & PHARMACODYNAMICS PRINCIPLES (Questions

1-15)


1. A 78-year-old patient with decreased renal function is prescribed a renally excreted

medication. What pharmacokinetic parameter is most likely to be altered?

A) Absorption

B) Distribution

C) Metabolism

D) Clearance


Answer: D – Clearance

Rationale: Decreased renal function directly reduces drug clearance for renally excreted

medications, leading to prolonged half-life and risk of drug accumulation. This requires

dosage adjustment based on CrCl or eGFR.




2. Which phase of drug metabolism is most commonly affected by genetic

polymorphisms, leading to variable drug responses?

A) Phase I (CYP450 oxidation)

,B) Phase II (conjugation)

C) Phase III (transport)

D) Phase IV (elimination)


Answer: A – Phase I (CYP450 oxidation)

Rationale: CYP450 enzymes, particularly CYP2D6, CYP2C19, and CYP2C9, exhibit

significant genetic polymorphism, resulting in poor, intermediate, extensive, or ultrarapid

metabolizer phenotypes.




3. An elderly patient with low serum albumin is prescribed a highly protein-bound

drug. What effect does hypoalbuminemia have on this medication?

A) Decreased free drug concentration and reduced efficacy

B) Increased free drug concentration and potential toxicity

C) No significant change in drug levels

D) Increased drug metabolism by the liver


Answer: B – Increased free drug concentration and potential toxicity

Rationale: With fewer albumin binding sites, more drug remains unbound (free) and

pharmacologically active, increasing the risk of adverse effects and toxicity.

, 4. Which of the following best describes a drug with a narrow therapeutic index?

A) The drug is effective at very low doses

B) Small changes in dose or blood concentration may lead to therapeutic failure or toxicity

C) The drug has multiple indications

D) The drug requires once-daily dosing


Answer: B – Small changes in dose or blood concentration may lead to therapeutic

failure or toxicity

Rationale: Narrow therapeutic index drugs (e.g., warfarin, digoxin, aminoglycosides,

phenytoin) require careful monitoring because the difference between effective and toxic

doses is small.




5. A patient with cirrhosis is prescribed a prodrug that requires hepatic activation.

What effect is expected?

A) Increased drug efficacy

B) Decreased conversion to active metabolite and reduced therapeutic effect

C) No change in drug response

D) Increased risk of anaphylaxis

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