WGU D236 Pathophysiology EXAM QUESTIONS AND CORRECT
VERIFIED SOLUTIONS LATEST UPDATE THIS YEAR – JUST
RELEASED
WGU D236 Pathophysiology Exam
10-Line Exam Coverage in Points Form
1. Cellular Adaptation, Injury & Death – Atrophy, hypertrophy, hyperplasia, metaplasia,
dysplasia; reversible vs. irreversible cell injury; necrosis types (coagulative, liquefactive,
caseous, fat); apoptosis; ischemia and hypoxia pathophysiology
2. Fluid, Electrolyte & Acid-Base Balance – Oncotic (colloid osmotic) pressure and
Starling's forces; RAAS regulation; sodium, potassium, calcium imbalances;
metabolic/respiratory acidosis and alkalosis; compensation mechanisms; anion gap; DKA
(increased anion gap, decreased HCO3)
3. Inflammation & Immune Response – Acute vs. chronic inflammation; vascular and
cellular responses; chemical mediators (histamine, prostaglandins, cytokines); T cells and
B cells; hypersensitivity Type I-IV; autoimmune disorders (RA, SLE, MS, T1DM)
4. Genetics & Congenital Disorders – Autosomal dominant/recessive inheritance; X-linked
disorders; chromosomal abnormalities (Turner, Klinefelter, Down); genomic imprinting
(Prader-Willi); neural tube defects; variable expressivity/penetrance
5. Cardiovascular Pathophysiology – Atherosclerosis (endothelial injury, foam cell
formation); hypertension (benign/malignant); myocardial infarction; heart failure (left vs.
right); pericarditis; peripheral vascular disease; ischemic vs. hemorrhagic CVA
6. Respiratory Pathophysiology – COPD (goblet cell hypertrophy, mucus hypersecretion);
asthma (bronchoconstriction, airway hyperreactivity); pneumonia; pulmonary
embolism; ARDS; acid-base interpretation (respiratory acidosis with CO2 retention)
7. Endocrine Pathophysiology – Type 1 DM (β-cell destruction); Type 2 DM (insulin
resistance); DKA and HHS; thyroid disorders (Graves'/Hashimoto's); Cushing's syndrome
(high cortisol); Addison's disease
8. Neurological & Musculoskeletal Pathophysiology – Alzheimer's vs. Parkinson's; multiple
sclerosis (demyelination); stroke/TIA; spinal cord injury; osteoarthritis vs. rheumatoid
arthritis (autoimmune inflammatory vs. degenerative)
9. Renal & Gastrointestinal Pathophysiology – Acute kidney injury
(prerenal/intrarenal/postrenal); CKD and erythropoietin deficiency anemia; cirrhosis
(hepatocellular necrosis, impaired clotting factor synthesis); portal hypertension/ascites;
hepatitis
, Page 2 of 124
10. Hematologic & Oncologic Pathophysiology – Anemias (iron deficiency, B12/folate
deficiency, aplastic, hemolytic, sickle cell); leukemias/lymphomas; hemophilia (X-linked);
carcinogenesis and metastasis; tumor suppressor genes (p53); paraneoplastic syndromes
250 MCQs with Detailed Rationales
Questions 1-50: Cellular Adaptation, Injury & Death; Fluid, Electrolyte & Acid-Base Balance
1. A 55-year-old male with a 30-year smoking history has a bronchial biopsy revealing that
stratified squamous epithelial cells have replaced the normal pseudostratified ciliated
columnar epithelium. This cellular adaptation is best described as:
A) Hyperplasia
B) Dysplasia
C) Metaplasia
D) Anaplasia
Answer: C
Rationale: Metaplasia is the reversible replacement of one differentiated cell type with another.
In chronic smokers, the normal ciliated columnar epithelium of the bronchi undergoes
metaplasia to stratified squamous epithelium. This adaptive change occurs because squamous
epithelium is more resistant to the chronic irritation from smoke, though it loses the protective
mucociliary clearance function.
, Page 3 of 124
2. A patient with chronic alcoholism presents with abdominal pain, jaundice, and
hypotension. Laboratory findings show prolonged prothrombin time. The most likely
underlying pathophysiologic mechanism is:
A) Autoimmune destruction of pancreatic islet cells
B) Hepatocellular necrosis leading to impaired synthesis of clotting factors
C) Increased production of albumin
D) Portal vein obstruction
Answer: B
Rationale: The liver synthesizes most clotting factors. Hepatocellular necrosis in alcoholic liver
disease impairs this synthesis, leading to prolonged prothrombin time. Jaundice results from
impaired bilirubin metabolism, and hypotension may reflect systemic inflammation or volume
depletion. This constellation indicates advanced liver failure.
3. The form of osmotic pressure exerted by plasma proteins, primarily albumin, is termed:
A) Hydrostatic pressure
B) Oncotic pressure
C) Diffusion pressure
D) Osmotic gradient
Answer: B
Rationale: Oncotic pressure (colloid osmotic pressure) is the osmotic pressure exerted by
plasma proteins, primarily albumin. This pressure pulls fluid from the interstitial space back into
, Page 4 of 124
the capillaries, opposing hydrostatic pressure at the venous end. Albumin is the primary
determinant of oncotic pressure due to its high concentration and inability to cross the capillary
membrane.
4. A nutritionally deficient child develops generalized edema. According to Starling's forces,
the most likely mechanism is:
A) Increased hydrostatic pressure from heart failure
B) Decreased oncotic pressure due to low plasma proteins
C) Increased capillary permeability from inflammation
D) Lymphatic obstruction preventing fluid return
Answer: B
Rationale: Starling's Law describes fluid movement across capillary membranes, balancing
hydrostatic pressure (pushing fluid out) and oncotic pressure (pulling fluid in). Malnutrition
leads to decreased protein synthesis, particularly albumin, reducing oncotic pressure. This
decreases the force that pulls fluid back into capillaries, resulting in net fluid movement into the
interstitial space and edema.
5. When tissue perfusion is inadequate, cellular metabolism shifts to anaerobic pathways.
This results in:
A) Increased ATP production
B) Increased aerobic metabolism