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

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

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

Comprehensive Examination Questions for Advanced Practice Nursing
Certification



SECTION A: PATHOPHYSIOLOGY — Cellular Adaptation, Injury &
Inflammation (Questions 1–15)

1. A patient with chronic anemia presents with fatigue and pallor. Laboratory studies reveal
microcytic, hypochromic red blood cells. Which cellular adaptation is most likely occurring in the
bone marrow as a compensatory response?

A. Atrophy
B. Hypertrophy
C. Hyperplasia
D. Metaplasia

Correct Answer: C — Hyperplasia

Rationale: Hyperplasia is an increase in the number of cells in response to a stimulus, which in this
case is the bone marrow's compensatory response to chronic anemia. Erythropoietin stimulates
increased red blood cell production. Atrophy is a decrease in cell size, hypertrophy is an increase in cell
size, and metaplasia is the replacement of one cell type with another. Hyperplasia is the appropriate
adaptive response to increased demand for erythrocyte production.




2. A 58-year-old male with a history of atherosclerosis presents with sudden-onset chest pain
radiating to the left arm. Cardiac enzymes are elevated. What type of cellular injury is most likely
occurring in the myocardium?

A. Apoptosis
B. Necrosis
C. Autophagy
D. Pyroptosis

Correct Answer: B — Necrosis

Rationale: Necrosis is unprogrammed cell death resulting from ischemia, trauma, or toxins. In
myocardial infarction, ischemia leads to coagulative necrosis characterized by cellular swelling,
organelle disruption, and inflammation. Apoptosis is programmed cell death without inflammation,

,autophagy is cellular recycling, and pyroptosis is inflammatory programmed cell death associated with
infections.




3. A patient with rheumatoid arthritis has joint inflammation mediated by immune complexes.
Which type of hypersensitivity reaction best describes this condition?

A. Type I (Anaphylactic)
B. Type II (Cytotoxic)
C. Type III (Immune Complex)
D. Type IV (Delayed-Type)

Correct Answer: C — Type III (Immune Complex)

Rationale: Rheumatoid arthritis is a Type III hypersensitivity reaction where antigen-antibody immune
complexes deposit in synovial joints, activating complement and attracting inflammatory cells. Type I
involves IgE and mast cells, Type II involves antibody-mediated cell destruction, and Type IV is T-cell-
mediated delayed hypersensitivity.




4. A patient with heart failure develops peripheral edema and ascites. Which hemodynamic disorder
best explains these findings?

A. Increased capillary hydrostatic pressure
B. Decreased plasma oncotic pressure
C. Increased capillary permeability
D. Lymphatic obstruction

Correct Answer: A — Increased capillary hydrostatic pressure

Rationale: Heart failure leads to increased venous pressure, which increases capillary hydrostatic
pressure, forcing fluid into the interstitial space and causing edema. Decreased plasma oncotic
pressure (as in liver disease), increased capillary permeability (as in inflammation), and lymphatic
obstruction (as in malignancy) can also cause edema but are not the primary mechanism in heart
failure.




5. A newborn is diagnosed with cystic fibrosis. Which genetic inheritance pattern is responsible for
this disorder?

A. Autosomal dominant
B. Autosomal recessive
C. X-linked dominant
D. Mitochondrial inheritance

,Correct Answer: B — Autosomal recessive

Rationale: Cystic fibrosis is caused by mutations in the CFTR gene on chromosome 7 and follows an
autosomal recessive inheritance pattern. Both parents must carry the mutated gene for the child to be
affected. Autosomal dominant requires only one affected allele, X-linked disorders involve sex
chromosomes, and mitochondrial inheritance involves maternal transmission.




6. A patient with chronic obstructive pulmonary disease (COPD) develops cor pulmonale. Which
pathophysiological mechanism most directly leads to this complication?

A. Left ventricular hypertrophy
B. Pulmonary hypertension
C. Systemic hypotension
D. Decreased cardiac output

Correct Answer: B — Pulmonary hypertension

Rationale: Cor pulmonale is right ventricular hypertrophy and failure caused by pulmonary
hypertension. In COPD, chronic hypoxemia and hypercapnia cause pulmonary vasoconstriction,
leading to increased pulmonary vascular resistance and right ventricular strain. Left ventricular
hypertrophy, systemic hypotension, and decreased cardiac output are not the primary mechanisms.




7. A patient with liver cirrhosis develops ascites and esophageal varices. Which pathophysiological
process is the primary cause of these complications?

A. Increased systemic vascular resistance
B. Portal hypertension
C. Decreased cardiac output
D. Renal artery stenosis

Correct Answer: B — Portal hypertension

Rationale: Liver cirrhosis causes fibrosis and increased resistance to portal blood flow, leading to
portal hypertension. This results in ascites (from increased hydrostatic pressure in splanchnic vessels)
and esophageal varices (from collateral circulation formation). Systemic vascular resistance is typically
decreased in cirrhosis, and renal artery stenosis is not the primary cause.




8. A 45-year-old patient presents with a painless neck mass. Fine-needle aspiration reveals
malignant cells. Which characteristic of neoplasia distinguishes malignant from benign tumors?

A. Encapsulation
B. Slow growth rate

, C. Invasion and metastasis
D. Well-differentiated cells

Correct Answer: C — Invasion and metastasis

Rationale: Malignant neoplasms are characterized by invasion into surrounding tissues and metastasis
to distant sites. Benign tumors are typically encapsulated, grow slowly, and consist of well-
differentiated cells that resemble the tissue of origin. Invasion and metastasis are the hallmark features
distinguishing malignant from benign tumors.




9. A patient with diabetic ketoacidosis (DKA) has an arterial blood gas showing pH 7.20, HCO3⁻ 10
mEq/L, and PaCO2 25 mmHg. Which acid-base disorder is present?

A. Metabolic acidosis with respiratory compensation
B. Metabolic acidosis with respiratory acidosis
C. Metabolic alkalosis with respiratory compensation
D. Respiratory acidosis with metabolic compensation

Correct Answer: A — Metabolic acidosis with respiratory compensation

Rationale: The low pH (7.20) and low bicarbonate (10 mEq/L) indicate metabolic acidosis. The
decreased PaCO2 (25 mmHg) represents respiratory compensation through hyperventilation
(Kussmaul respirations) to blow off CO2. Metabolic alkalosis would show elevated bicarbonate, and
respiratory acidosis would show elevated PaCO2.




10. A patient with chronic kidney disease has a serum potassium of 6.2 mEq/L. Which
electrocardiographic change is most characteristic of hyperkalemia?

A. Prolonged PR interval
B. Tall, peaked T waves
C. ST-segment depression
D. U waves

Correct Answer: B — Tall, peaked T waves

Rationale: Tall, peaked T waves (tented T waves) are the earliest and most characteristic ECG finding in
hyperkalemia. As potassium levels rise further, prolonged PR interval, widened QRS complex, and
eventual sine-wave pattern occur. ST-segment depression and U waves are more characteristic of
hypokalemia.




11. A patient with systemic lupus erythematosus (SLE) develops glomerulonephritis. Which type of
immune complex deposition is most likely responsible?

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