Verified Practice Questions & Answers with
Detailed Rationales | Comprehensive Study
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WGU C805 Pathophysiology Exam 2026 | Verified Practice Questions &
Answers with Detailed Rationales
• This comprehensive exam contains questions covering all major pathophysiology
concepts tested on WGU C805 with detailed evidence-based rationales for each
answer.
• Use this material for focused exam preparation by working through questions
systematically, reviewing rationales for all answers (not just incorrect ones), and
identifying weak topic areas for targeted review.
1. A patient presents with cell swelling, cloudy cytoplasm, and reduced ATP
production. Which cellular process is primarily disrupted?
A) Oxidative phosphorylation
B) Glycolysis
C) Protein synthesis
D) DNA replication
E) Apoptosis
CORRECT ANSWER: A) Oxidative phosphorylation
RATIONALE: Cellular swelling (cell balooning), cloudy cytoplasm, and markedly
reduced ATP production are classic signs of acute cellular injury affecting
mitochondrial function. Oxidative phosphorylation is the primary ATP-generating
process in mitochondria. When mitochondria are damaged, ATP production drops
dramatically, disrupting the Na+/K+ ATPase pump, which allows sodium and water
to accumulate intracellularly, causing cell swelling. While glycolysis produces some
ATP, it is not the primary source of ATP production and its disruption would not
account for the pattern described. The other options do not directly explain acute
energy depletion.
,2. Which of the following best describes necrosis as opposed to apoptosis?
A) Necrosis is a controlled, energy-dependent process
B) Necrosis involves inflammation and cellular debris release
C) Necrosis requires caspase activation
D) Necrosis maintains cellular membrane integrity
E) Necrosis is beneficial to surrounding tissues
CORRECT ANSWER: B) Necrosis involves inflammation and cellular debris
release
RATIONALE: Necrosis is an uncontrolled, unregulated form of cell death that results
from severe cellular injury (such as ischemia, toxins, or trauma). Unlike apoptosis,
necrosis is energy-independent, causes loss of membrane integrity, triggers
inflammation due to leakage of cellular contents, and damages surrounding tissue.
Apoptosis, by contrast, is a controlled, energy-dependent process that requires
caspase activation, maintains membrane integrity initially, and does not trigger
inflammation. The key distinguishing feature of necrosis is the uncontrolled release
of cellular contents and the resulting inflammatory response.
3. A 65-year-old man with chronic hypertension develops left ventricular
hypertrophy. What is the primary stimulus for this cardiac adaptation?
A) Decreased workload
B) Increased afterload
C) Reduced contractility
D) Decreased preload
E) Sympathetic withdrawal
CORRECT ANSWER: B) Increased afterload
,RATIONALE: Left ventricular hypertrophy in hypertension occurs as an adaptive
response to chronically increased afterload (resistance against which the heart
must pump). The left ventricle develops thicker walls in an attempt to generate
greater force to overcome this resistance and maintain adequate cardiac output.
This is initially a compensatory mechanism but can eventually lead to diastolic
dysfunction and heart failure. Decreased workload would cause atrophy, not
hypertrophy. Reduced contractility and decreased preload would not stimulate
growth, and sympathetic withdrawal would not cause this adaptation.
4. Which mechanism best explains the development of pulmonary edema in a
patient with severe left-sided heart failure?
A) Decreased plasma oncotic pressure
B) Increased hydrostatic pressure in pulmonary capillaries
C) Lymphatic obstruction
D) Increased capillary permeability
E) Decreased plasma albumin
CORRECT ANSWER: B) Increased hydrostatic pressure in pulmonary capillaries
RATIONALE: In left heart failure, the left ventricle cannot pump blood effectively,
causing blood to back up into the left atrium and pulmonary vasculature. This
backup increases hydrostatic pressure within the pulmonary capillary bed.
According to Starling's equation, increased capillary hydrostatic pressure favors
fluid filtration out of the capillaries into the interstitium and alveolar spaces,
resulting in pulmonary edema. While decreased oncotic pressure and increased
capillary permeability can contribute to edema, they are not the primary
mechanism in heart failure. Lymphatic obstruction and low albumin are not typical
in simple left heart failure.
5. A patient with chronic kidney disease develops metabolic acidosis. Which
process is most likely impaired?
, A) Ammonia excretion
B) Bicarbonate reabsorption
C) Hydrogen ion secretion
D) Carbonic acid formation
E) Respiratory compensation
CORRECT ANSWER: C) Hydrogen ion secretion
RATIONALE: The kidneys maintain acid-base balance through selective secretion of
hydrogen ions (H+) and reabsorption of bicarbonate (HCO3-) in the proximal tubule
and collecting duct. In chronic kidney disease, the reduced functional nephron
mass impairs H+ secretion and HCO3- reabsorption, leading to metabolic acidosis
as hydrogen ions accumulate in the blood and bicarbonate is lost in urine. The
kidneys also produce ammonia, which helps buffer H+ ions, but this is a secondary
mechanism. Carbonic acid formation and respiratory compensation are not renal
functions.
6. In a patient with septic shock, which cytokine is most responsible for the
initial vasodilation and increased capillary permeability?
A) Tumor necrosis factor-alpha (TNF-α)
B) Interleukin-10 (IL-10)
C) Transforming growth factor-beta (TGF-β)
D) Interferon-gamma (IFN-γ)
E) Interleukin-4 (IL-4)
CORRECT ANSWER: A) Tumor necrosis factor-alpha (TNF-α)
RATIONALE: TNF-α is a key pro-inflammatory cytokine released by activated
macrophages in response to bacterial endotoxins and other pathogen-associated
molecular patterns. TNF-α directly causes vasodilation through production of nitric
oxide, increases capillary permeability by disrupting endothelial cell tight junctions,
and triggers the inflammatory cascade that characterizes septic shock. IL-10 is anti-