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NURS 6521 Week 5 Quiz | Advanced Pharmacology Q&A | Walden (2026/2027) | A+ Guarantee

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NURS 6521 Week 5 Quiz Advanced Pharmacology Questions and Answers is a focused, high-value study resource designed to help Walden University students prepare efficiently for the Week 5 assessment. It provides targeted Q&A review of drug therapy, mechanisms of action, therapeutic effects, adverse reactions, medication interactions, monitoring requirements, safety considerations, and advanced practice prescribing concepts. Ideal for self-testing, reinforcing difficult material, identifying weak areas, and completing confident quiz preparation.NURS 6521 Week 5 Quiz, NURS 6521 Week 5 Questions and Answers, NURS 6521 Advanced Pharmacology Q&A, Advanced Pharmacology Week 5 Quiz, NURS 6521 Quiz Answers, NURS 6521 Study Guide, NURS 6521 Practice Quiz, NURS 6521 Quiz Prep, Walden NURS 6521, Walden Advanced Pharmacology, Advanced Pharmacology Questions and Answers, Drug Therapy Questions, Medication Safety Questions, Adverse Drug Reaction Questions, Drug Interaction Questions, NP Pharmacology Questions, NURS 6521 Week 5 Review, Advanced Pharmacology Study Guide#NURS6521 #NURS6521Week5 #AdvancedPharmacology #PharmacologyQA #WaldenUniversity #Walden #NPPharmacology #QuizQuestions #QuizAnswers #StudyGuide #QuizPrep #ExamPrep

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,NURS 6521 Week 5 Quiz | Advanced Pharmacology (2026)
Q&A | Walden University


1. Which of the following best describes the primary mechanism of action of
metformin in treating type 2 diabetes?



A) Stimulating insulin secretion from pancreatic beta cells

B) Decreasing hepatic glucose production and improving insulin sensitivity

C) Inhibiting glucose absorption in the small intestine

D) Increasing renal glucose excretion



Correct Answer: Decreasing hepatic glucose production and improving insulin
sensitivity



Rationale: Metformin is a biguanide that decreases hepatic glucose production,
improves insulin sensitivity in peripheral tissues, and reduces intestinal glucose
absorption. Sulfonylureas stimulate insulin secretion, and SGLT2 inhibitors increase
renal glucose excretion. Metformin does not directly stimulate insulin release.



2. What is the primary mechanism of action of sulfonylureas in treating type 2
diabetes?



A) Decreasing hepatic glucose production

B) Stimulating insulin secretion from pancreatic beta cells

C) Inhibiting glucose absorption

D) Increasing renal glucose excretion



Correct Answer: Stimulating insulin secretion from pancreatic beta cells

,Rationale: Sulfonylureas stimulate insulin secretion from pancreatic beta cells by
closing ATP-sensitive potassium channels. They are used for type 2 diabetes but can
cause hypoglycemia and weight gain. Metformin decreases hepatic glucose
production, and SGLT2 inhibitors increase renal glucose excretion.



3. Which of the following is a rare but serious adverse effect of metformin?



A) Hypoglycemia

B) Lactic acidosis

C) Hypertension

D) Bradycardia



Correct Answer: Lactic acidosis



Rationale: Lactic acidosis is a rare but serious adverse effect of metformin,
particularly in patients with renal impairment, liver disease, or alcohol abuse.
Metformin should be held before contrast studies. Hypoglycemia is more common
with sulfonylureas and insulin.



4. A patient with type 2 diabetes on metformin and glipizide has an HbA1c of 8.5%.
Adding which agent would provide the most pronounced reduction in cardiovascular
mortality?



A) Sitagliptin

B) Empagliflozin

C) Pioglitazone

D) Insulin glargine

, Correct Answer: Empagliflozin



Rationale: Empagliflozin, an SGLT2 inhibitor, has demonstrated significant reductions
in cardiovascular death and heart failure hospitalization in patients with type 2
diabetes and established cardiovascular disease. Sitagliptin is neutral, pioglitazone
may increase heart failure risk, and insulin does not reduce cardiovascular mortality.



5. What is the primary mechanism of action of SGLT2 inhibitors?



A) Inhibiting sodium-glucose cotransporter 2 in the proximal tubule

B) Stimulating insulin secretion

C) Decreasing hepatic glucose production

D) Inhibiting glucose absorption



Correct Answer: Inhibiting sodium-glucose cotransporter 2 in the proximal tubule



Rationale: SGLT2 inhibitors block sodium-glucose cotransporter 2 in the proximal
renal tubule, increasing urinary glucose excretion and lowering blood glucose. They
also have cardiorenal benefits. They do not stimulate insulin secretion or decrease
hepatic glucose production.



6. Which of the following is a common adverse effect of SGLT2 inhibitors?



A) Genital mycotic infections

B) Hypoglycemia

C) Hypertension

D) Bradycardia

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