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WGUD236/WGU D236 Pathophysiology OA V2 | 3 Set Exams | 2026 Edition (PDF)

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INSTANT PDF DOWNLOAD — Verified WGU D236 Pathophysiology OA V2 | 3 Set Exams | 2026 Edition (PDF) resource with actual exam questions, NGN‑style case studies, and complete rationales. Comprehensive coverage includes cellular injury, inflammation, immune response, genetic disorders, cardiovascular, respiratory, renal, endocrine, gastrointestinal, and neurological pathophysiology. Each of the three exam sets emphasizes disease mechanisms, clinical correlations, and evidence‑based reasoning to ensure mastery of WGU’s objective assessment standards. Designed for guaranteed A+ graded correctness and alignment with Western Governors University curriculum, this study guide is ideal for students searching WGU D236 OA V2 PDF, Pathophysiology Objective Assessment Exams, WGU D236 Verified Answers, WGU D236 Test Bank 2026, Pathophysiology Study Guide, Clinical Case Workbook, and WGU Nursing Exams.

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,WGU D236 Pathophysiology OA V2 | 3 Set
Exams | 2026 Edition (PDF)
**1. A patient with long-standing uncontrolled hypertension develops an enlarged left ventricle on
echocardiogram. Which cellular adaptation explains this finding?**

A) Atrophy

B) Hypertrophy

C) Hyperplasia

D) Metaplasia



Correct Answer: Hypertrophy



Rationale: Chronic pressure overload from hypertension increases myocyte size (cardiac cells cannot
divide), enlarging the ventricle. Atrophy is a decrease in cell size, hyperplasia is an increase in cell
number, and metaplasia is replacement of one cell type by another.



**2. A chronic smoker's esophageal biopsy shows columnar epithelium replacing normal squamous
epithelium (Barrett esophagus). This change is best described as:**

A) Dysplasia

B) Metaplasia

C) Hyperplasia

D) Anaplasia



Correct Answer: Metaplasia



Rationale: Metaplasia is a reversible substitution of a stress-tolerant cell type (columnar) for squamous
epithelium under acid injury. Dysplasia is disordered pre-malignant growth, hyperplasia is increased
number of the same cell type, and anaplasia is lack of differentiation characteristic of malignancy.



**3. Which finding indicates REVERSIBLE cell injury rather than necrosis?**

,A) Karyolysis

B) Pyknosis

C) Cellular swelling

D) Karyorrhexis



Correct Answer: Cellular swelling



Rationale: Cellular swelling (hydropic change) from ATP depletion and Na+/K+ pump failure is reversible
if the insult resolves. Karyolysis, pyknosis, and karyorrhexis are all nuclear changes associated with
irreversible injury and necrosis.



**4. A pathologist examines brain tissue that has been replaced by a cavity filled with debris and
inflammatory cells. This is most consistent with which type of necrosis?**

A) Coagulative necrosis

B) Liquefactive necrosis

C) Caseous necrosis

D) Fat necrosis



Correct Answer: Liquefactive necrosis



Rationale: Liquefactive necrosis is characteristic of the central nervous system (brain) and occurs when
cellular enzymes and inflammatory cells liquefy dead tissue, forming a cystic cavity. Coagulative necrosis
preserves tissue architecture (seen in ischemia of solid organs), caseous necrosis is cheesy (seen in TB),
and fat necrosis occurs in adipose tissue.



**5. Which of the following is a characteristic of reversible cell injury?**

A) Cellular swelling and fatty change

B) Nuclear fragmentation

C) Membrane rupture

D) Mitochondrial calcification

, Correct Answer: Cellular swelling and fatty change



Rationale: Reversible cell injury is characterized by cellular swelling (due to failure of the Na+/K+ pump)
and fatty change (lipid accumulation). Nuclear fragmentation, membrane rupture, and mitochondrial
calcification are features of irreversible injury and necrosis.



**6. In which phase of wound healing does angiogenesis and new blood vessel formation primarily
occur?**

A) Inflammatory phase

B) Proliferative phase

C) Maturation phase

D) Hemostasis phase



Correct Answer: Proliferative phase



Rationale: The proliferative phase of wound healing is characterized by angiogenesis (new blood vessel
formation), fibroblast activity, and granulation tissue formation. This phase typically begins 2-3 days
after injury.



**7. Which type of hypersensitivity reaction is responsible for anaphylaxis?**

A) Type I (immediate)

B) Type II (cytotoxic)

C) Type III (immune complex)

D) Type IV (delayed)



Correct Answer: Type I (immediate)



Rationale: Anaphylaxis is a Type I hypersensitivity reaction mediated by IgE antibodies and mast cells.
Exposure to an allergen triggers mast cell degranulation and release of histamine and other mediators.



**8. Systemic lupus erythematosus (SLE) is an example of which type of hypersensitivity reaction?**

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