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Section 1: Foundational Pharmacology Principles
Q1: A patient is prescribed a medication that undergoes extensive first-pass
metabolism in the liver. The nurse should expect:
A. Higher bioavailability when given orally
B. Lower bioavailability when given orally compared to parenteral administration
C. No difference in bioavailability between oral and IV routes
D. Faster onset when given orally
Correct Answer: B
Rationale: First-pass metabolism reduces the amount of active drug reaching systemic
circulation after oral administration. Parenteral routes bypass the liver initially, resulting
in higher bioavailability. Oral bioavailability is calculated as the fraction of drug that
escapes first-pass metabolism.
Q2: A patient is taking warfarin and begins taking a medication that induces CYP2C9
enzymes. The nurse should monitor for:
A. Increased INR and bleeding risk
B. Decreased INR and potential thrombosis
C. No change in warfarin effectiveness
D. Increased warfarin absorption
Correct Answer: B
Rationale: CYP2C9 induction increases warfarin metabolism, reducing its plasma
concentration and anticoagulant effect (decreased INR). This increases thrombosis
risk. The nurse should monitor INR more frequently and adjust warfarin dose
accordingly.
Q3: A drug has a half-life of 6 hours. Approximately how long will it take to reach
steady-state concentration with repeated dosing?
A. 6 hours
B. 12 hours
C. 24 hours
,D. 30 hours
Correct Answer: D
Rationale: Steady state is reached after approximately 5 half-lives (5 × 6 = 30 hours). At
steady state, drug elimination equals drug administration, and plasma concentration
fluctuates within a consistent range.
Q4: A patient receives a loading dose of digoxin followed by maintenance doses. The
purpose of the loading dose is to:
A. Reduce the risk of toxicity
B. Achieve therapeutic plasma concentration rapidly
C. Eliminate the need for maintenance dosing
D. Increase the drug's half-life
Correct Answer: B
Rationale: Loading doses rapidly achieve therapeutic plasma concentrations that would
otherwise require 5 half-lives with maintenance dosing alone. This is particularly
important for drugs with long half-lives (digoxin: 36 hours) when immediate effect is
needed.
Q5: A nurse is administering medications using the "three checks" system. The three
checks include:
A. Checking the patient's name, room number, and diagnosis
B. Checking the medication label when removing from storage, before
pouring/administering, and at the bedside before giving
C. Checking the physician's order, the pharmacy label, and the patient's wristband
D. Checking the medication expiration date, storage conditions, and cost
Correct Answer: B
Rationale: The three checks are: (1) when removing medication from storage, (2) before
pouring or administering, and (3) at the bedside before giving to the patient. This
systematic approach reduces medication errors.
Q6: A patient is prescribed a medication that is highly protein-bound (98%). The nurse
understands that:
A. The drug will have a large volume of distribution
B. Only the unbound (free) fraction is pharmacologically active
C. Protein binding increases drug metabolism
,D. Highly protein-bound drugs are rapidly excreted
Correct Answer: B
Rationale: Only unbound (free) drug crosses membranes and produces
pharmacological effects. Highly protein-bound drugs have small volumes of distribution
(A), and protein binding typically decreases metabolism and excretion (C, D).
Displacement by other drugs can increase free fraction and toxicity.
Q7: A medication has a therapeutic index of 2. The nurse understands this means:
A. The drug is very safe with a wide margin between effective and toxic doses
B. The drug has a narrow safety margin and requires close monitoring
C. The drug has no toxic effects
D. The drug is ineffective at therapeutic doses
Correct Answer: B
Rationale: Therapeutic index = LD50/ED50. A low therapeutic index (close to 1-2)
indicates a narrow margin between effective and toxic doses, requiring careful
monitoring (e.g., digoxin, lithium, warfarin). Higher values indicate greater safety
margins.
Q8: A patient is taking two drugs that produce the same effect when given together. The
combined effect equals the sum of each drug's individual effect. This interaction is
described as:
A. Synergistic
B. Additive
C. Antagonistic
D. Potentiating
Correct Answer: B
Rationale: Additive effects occur when two drugs with similar mechanisms produce a
combined effect equal to the sum of individual effects. Synergistic (A) means greater
than additive, antagonistic (C) means reduced effect, and potentiating (D) means one
drug enhances another's effect.
Q9: A nurse discovers a medication error after the medication has been administered.
The first action the nurse should take is:
A. Complete an incident report immediately
B. Assess the patient for adverse effects and notify the provider
, C. Document the error in the patient's chart before assessing the patient
D. Hide the error to avoid disciplinary action
Correct Answer: B
Rationale: Patient safety is the priority. The nurse must first assess the patient for harm,
notify the provider for orders, and then complete the incident report. Documentation (C)
and reporting (A) follow patient assessment. Concealment (D) is unethical and illegal.
Q10: A patient is pregnant and requires medication. The nurse understands that FDA
Pregnancy Category D means:
A. No risk to the fetus in any trimester
B. Risk to the fetus has been demonstrated, but benefits may outweigh risks in certain
situations
C. The drug is safe only in the first trimester
D. The drug has not been studied in pregnancy
Correct Answer: B
Rationale: Pregnancy Category D indicates positive evidence of fetal risk based on
human data, but the drug may still be used if benefits outweigh risks (e.g., antiepileptics,
antihypertensives in severe preeclampsia). Category X indicates contraindication.
Q11: A patient is taking a drug that follows zero-order kinetics. The nurse should
understand that:
A. A constant fraction of the drug is eliminated per unit time
B. A constant amount of the drug is eliminated per unit time
C. The drug's half-life increases as concentration decreases
D. The drug is eliminated by first-order kinetics at high concentrations
Correct Answer: B
Rationale: Zero-order kinetics means a constant amount (not fraction) of drug is
eliminated per unit time, regardless of concentration. This occurs when elimination
pathways are saturated (e.g., ethanol, phenytoin at high concentrations, aspirin at high
doses). First-order kinetics (A) eliminates a constant fraction.
Q12: A nurse is administering a controlled substance. Which schedule has the highest
abuse potential and no accepted medical use?
A. Schedule II
B. Schedule III