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APEA 3P (Pathophysiology, Pharmacology, Physical Assessment) Test Bank — Version 2 Comprehensive Examination Questions for Advanced Practice Nursing Certification

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APEA 3P (Pathophysiology, Pharmacology, Physical Assessment) Test Bank — Version 2 Comprehensive Examination Questions for Advanced Practice Nursing Certification

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APEA 3P (Pathophysiology, Pharmacology, Physical Assessment)
Test Bank — Version 2

Comprehensive Examination Questions for Advanced Practice Nursing
Certification



SECTION A: PATHOPHYSIOLOGY — Cellular & Molecular Mechanisms
(Questions 1–15)

1. A patient with chronic hepatitis B infection develops hepatocellular carcinoma. Which cellular
mechanism is most responsible for this neoplastic transformation?

A. Increased apoptosis
B. Viral integration into host DNA
C. Decreased cell proliferation
D. Enhanced DNA repair mechanisms

Correct Answer: B — Viral integration into host DNA

Rationale: Hepatitis B virus can integrate its DNA into the host genome, disrupting tumor suppressor
genes and activating oncogenes, leading to hepatocellular carcinoma. Apoptosis is typically decreased
in cancer (not increased), cell proliferation is increased (not decreased), and DNA repair mechanisms
are often impaired. Viral integration is a key mechanism in HBV-associated carcinogenesis.




2. A patient with hereditary spherocytosis develops anemia and jaundice. Which cellular
abnormality is responsible for the shortened red blood cell lifespan?

A. Increased red blood cell size
B. Defective membrane protein causing spherical shape
C. Decreased hemoglobin synthesis
D. Impaired iron utilization

Correct Answer: B — Defective membrane protein causing spherical shape

Rationale: Hereditary spherocytosis is caused by defects in membrane proteins (ankyrin, spectrin) that
result in spherical, less deformable red blood cells. These cells are sequestered and destroyed in the
spleen, leading to hemolytic anemia, jaundice, and splenomegaly. The cells are smaller (not larger),
hemoglobin synthesis is normal, and iron utilization is normal.

,3. A patient with chronic inflammation develops amyloidosis. Which type of amyloid is most
commonly associated with chronic inflammatory conditions?

A. AL amyloid
B. AA amyloid
C. Aβ amyloid
D. ATTR amyloid

Correct Answer: B — AA amyloid

Rationale: AA amyloid (secondary amyloidosis) is associated with chronic inflammatory conditions
such as rheumatoid arthritis, tuberculosis, and inflammatory bowel disease. It results from deposition
of serum amyloid A protein. AL amyloid is associated with plasma cell dyscrasias, Aβ amyloid with
Alzheimer's disease, and ATTR amyloid with familial amyloidosis.




4. A patient with G6PD deficiency develops hemolysis after taking sulfonamide antibiotics. Which
pathophysiological mechanism explains this drug-induced hemolysis?

A. Direct drug toxicity to red blood cells
B. Oxidative stress due to decreased glutathione production
C. Immune-mediated destruction of red blood cells
D. Increased red blood cell fragility

Correct Answer: B — Oxidative stress due to decreased glutathione production

Rationale: G6PD deficiency impairs the production of NADPH, which is required for generating
reduced glutathione. Glutathione protects red blood cells from oxidative damage. Sulfonamides cause
oxidative stress, leading to hemoglobin denaturation and hemolysis in G6PD-deficient patients. This is
not a direct toxicity or immune-mediated process.




5. A patient with chronic obstructive pulmonary disease develops polycythemia. Which mechanism
is responsible for this compensatory response?

A. Increased erythropoietin production due to chronic hypoxemia
B. Decreased plasma volume
C. Increased iron absorption
D. Enhanced bone marrow sensitivity to erythropoietin

Correct Answer: A — Increased erythropoietin production due to chronic hypoxemia

Rationale: Chronic hypoxemia in COPD stimulates the kidneys to produce erythropoietin, which
increases red blood cell production (secondary polycythemia). This is a compensatory mechanism to
improve oxygen-carrying capacity. Plasma volume is not decreased, iron absorption is normal, and
bone marrow sensitivity is not enhanced.

,6. A patient with acute liver failure develops cerebral edema. Which pathophysiological mechanism
is most responsible for this complication?

A. Decreased cerebral blood flow
B. Increased intracranial pressure due to hyperammonemia
C. Decreased cerebrospinal fluid production
D. Increased cerebral autoregulation

Correct Answer: B — Increased intracranial pressure due to hyperammonemia

Rationale: Acute liver failure leads to hyperammonemia, which causes cerebral edema through
astrocyte swelling, glutamate-mediated excitotoxicity, and increased cerebral blood flow. Cerebral
blood flow is typically increased (not decreased), CSF production may be altered, and autoregulation is
impaired. Cerebral edema is a life-threatening complication of fulminant hepatic failure.




7. A patient with Marfan syndrome presents with aortic root dilation and lens dislocation. Which
structural protein is defective in this condition?

A. Collagen type I
B. Fibrillin
C. Elastin
D. Laminin

Correct Answer: B — Fibrillin

Rationale: Marfan syndrome is caused by mutations in the FBN1 gene encoding fibrillin, a protein
essential for the structural integrity of connective tissue. This leads to aortic root dilation, mitral valve
prolapse, lens dislocation, and skeletal abnormalities. Collagen type I defects cause osteogenesis
imperfecta, elastin defects cause cutis laxa, and laminin defects affect basement membranes.




8. A patient with chronic kidney disease develops metabolic acidosis. Which pathophysiological
mechanism is primarily responsible?

A. Increased bicarbonate reabsorption
B. Decreased hydrogen ion excretion
C. Increased ammonium production
D. Decreased titratable acid excretion

Correct Answer: B — Decreased hydrogen ion excretion

Rationale: Chronic kidney disease leads to decreased ability to excrete hydrogen ions (H⁺), resulting in
metabolic acidosis. The kidneys also have decreased ability to generate bicarbonate. Increased
bicarbonate reabsorption, increased ammonium production, and decreased titratable acid excretion

, are compensatory mechanisms that are impaired in CKD, but the primary defect is decreased H⁺
excretion.




9. A patient with type 1 diabetes mellitus develops gastroparesis. Which pathophysiological
mechanism is responsible for this complication?

A. Increased sympathetic nervous system activity
B. Autonomic neuropathy affecting the vagus nerve
C. Decreased gastric acid secretion
D. Increased gastrointestinal motility

Correct Answer: B — Autonomic neuropathy affecting the vagus nerve

Rationale: Diabetic gastroparesis is caused by autonomic neuropathy, specifically damage to the vagus
nerve, which impairs gastric motility and emptying. This leads to delayed gastric emptying, nausea,
vomiting, and erratic glucose control. Sympathetic activity is not increased, gastric acid secretion may
be normal, and motility is decreased (not increased).




10. A patient with hypothyroidism develops myxedema. Which substance accumulates in the
extracellular space to cause this finding?

A. Sodium
B. Water
C. Glycosaminoglycans
D. Albumin

Correct Answer: C — Glycosaminoglycans

Rationale: Myxedema is caused by the accumulation of hydrophilic glycosaminoglycans (hyaluronic
acid, chondroitin sulfate) in the extracellular space, which bind water and cause non-pitting edema.
Sodium and water retention contribute to fluid accumulation but the primary substance is
glycosaminoglycans. Albumin is not the accumulated substance.




11. A patient with sepsis develops acute respiratory distress syndrome (ARDS). Which
pathophysiological change is most characteristic of the early (exudative) phase of ARDS?

A. Alveolar edema with protein-rich fluid
B. Alveolar fibrosis
C. Alveolar consolidation
D. Alveolar collapse with atelectasis

Correct Answer: A — Alveolar edema with protein-rich fluid

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