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Exam (elaborations)

NR 546 Advanced Pathophysiology Final Exam | Questions with Correct Answers | Verified 2026/2027

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NR 546 Advanced Pathophysiology Final Exam | Questions with Correct Answers | Verified 2026/2027

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NR 546 Advanced Pathophysiology Final Exam | Questions with
Correct Answers | Verified 2026/2027
Question 1
A client is diagnosed with metaplasia in the bronchial epithelium. The
nurse recognizes that this cellular adaptation:
• A. Is an irreversible process indicating imminent malignancy.
• B. Represents the replacement of one mature cell type with
another, often in response to chronic irritation.
• C. Results in a significant increase in the rate of DNA replication
and cell division.
• D. Is the direct result of a lack of oxygen to the bronchial tissue.
Correct Answer: B. Represents the replacement of one mature cell type
with another, often in response to chronic irritation.
Detailed Rationale: Metaplasia is a reversible cellular adaptation where
one adult cell type is replaced by another, usually better suited to
survive a stressor (e.g., columnar epithelium changing to squamous
epithelium in smokers).
Question 2
Which mechanism best describes the pathophysiology of Type I
Hypersensitivity reactions?
• A. Formation of antigen-antibody immune complexes that deposit
in blood vessel walls.
• B. T-cell mediated delayed reaction causing tissue destruction.

, • C. IgE-mediated release of histamine and other inflammatory
mediators from mast cells.
• D. Antibodies directed against cell surface antigens.
Correct Answer: C. IgE-mediated release of histamine and other
inflammatory mediators from mast cells.
Detailed Rationale: Type I hypersensitivity involves IgE antibodies
binding to mast cells; subsequent exposure to the antigen triggers
degranulation, releasing histamine and causing immediate
inflammatory symptoms.
Question 3
A patient with chronic kidney disease (CKD) presents with anemia.
What is the primary pathophysiological mechanism causing this finding?
• A. Decreased production of erythropoietin by the kidneys.
• B. Increased destruction of red blood cells in the spleen.
• C. Deficiency of dietary iron absorption in the gut.
• D. Bone marrow suppression due to metabolic acidosis.
Correct Answer: A. Decreased production of erythropoietin by the
kidneys.
Detailed Rationale: The peritubular cells in the kidney produce
erythropoietin, which stimulates the bone marrow to produce RBCs. In
CKD, this production is impaired, leading to normocytic, normochromic
anemia.
Question 4

,Which of the following describes the role of the RAAS pathway in a
patient with heart failure?
• A. It causes vasodilation to decrease the workload on the heart.
• B. It promotes the excretion of sodium and water to reduce blood
volume.
• C. It triggers vasoconstriction and sodium/water retention,
ultimately worsening ventricular remodeling.
• D. It directly stimulates the parasympathetic nervous system to
decrease heart rate.
Correct Answer: C. It triggers vasoconstriction and sodium/water
retention, ultimately worsening ventricular remodeling.
Detailed Rationale: The Renin-Angiotensin-Aldosterone System (RAAS)
is chronically activated in heart failure. Angiotensin II causes
vasoconstriction and aldosterone causes fluid retention; while
compensatory initially, chronic activation leads to detrimental cardiac
hypertrophy and remodeling.
Question 5
In the context of tumor biology, what is the significance of
angiogenesis?
• A. It is the process by which tumors acquire the ability to invade
surrounding tissues.
• B. It refers to the formation of new blood vessels that provide the
tumor with oxygen and nutrients for growth.

, • C. It is a protective mechanism where the host immune system
creates a barrier around the tumor.
• D. It involves the mutation of proto-oncogenes into tumor
suppressor genes.
Correct Answer: B. It refers to the formation of new blood vessels that
provide the tumor with oxygen and nutrients for growth.
Detailed Rationale: Angiogenesis is essential for tumor progression
beyond a certain size ($1\text{--}2\text{ mm}$), as it allows the tumor
to secure a blood supply, facilitating growth and potential metastasis.
Question 6
A client with diabetes mellitus develops peripheral neuropathy. Which
pathophysiological change is the most likely cause?
• A. Direct damage to the myelin sheath caused by
hyperinsulinemia.
• B. Microvascular changes and the accumulation of sorbitol via the
polyol pathway.
• C. Excessive protein synthesis leading to neuronal hypertrophy.
• D. Decreased intracellular glucose leading to neuronal starvation.
Correct Answer: B. Microvascular changes and the accumulation of
sorbitol via the polyol pathway.
Detailed Rationale: Chronic hyperglycemia leads to the accumulation of
sorbitol (via the polyol pathway), which damages nerves and osmotic
balance, alongside microvascular ischemia that damages the vasa
nervorum (blood supply to nerves).

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