PATHOPHYSIOLOGY GUIDE (LATEST
2026/2027 UPDATE) 100% VERIFIED
QUESTIONS & ANSWERS | GRADE A
SECTION 1: CELLULAR ADAPTATION, INJURY &
DEATH (QUESTIONS 1–10)
Question 1
Describe how your body responds to an infection.
Answer: T cells produce cytokines, which stimulate B cells. B cells
produce antibodies.
Rationale: This describes the adaptive immune response. T helper cells
recognize antigens presented by antigen-presenting cells and release
cytokines that activate B lymphocytes. Activated B cells then
differentiate into plasma cells that produce specific antibodies to
neutralize the pathogen. This coordinated response is essential for
eliminating infections and establishing immunological memory.
Question 2
Identify the role of DNA changes in congenital abnormalities.
Answer: Mutations in genes or chromosomal abnormalities.
,Rationale: Congenital abnormalities arise from alterations in genetic
material. Gene mutations can affect single genes (e.g., cystic fibrosis),
while chromosomal abnormalities involve changes in chromosome
number (e.g., trisomy 21/Down syndrome) or structure (e.g.,
translocations, deletions). These alterations disrupt normal embryonic
and fetal development.
Question 3
How does development disrupt congenital abnormalities?
Answer: Alterations of DNA.
Rationale: Disruptions in development that cause congenital
abnormalities are fundamentally due to alterations in DNA. These
genetic changes interfere with the precise sequence of cellular
differentiation, migration, and tissue formation that must occur during
embryogenesis, resulting in structural malformations or functional
deficits present at birth.
Question 4
Describe factors that disrupt homeostasis and how disruptions affect
wellbeing.
Answer: Fluid and electrolyte shifts can cause nausea/vomiting or
dysrhythmias.
Rationale: Homeostasis is the body's ability to maintain a stable
internal environment. Disruptions such as fluid and electrolyte
imbalances can have widespread effects. Electrolyte disturbances
,(particularly potassium and calcium) can alter cardiac action
potentials, leading to dysrhythmias, while fluid shifts can affect organ
function and cause gastrointestinal symptoms.
Question 5
What are samples of peripheral neuropathy?
Answer: Uncontrolled movements and muscle weakness.
Rationale: Peripheral neuropathy involves damage to peripheral
nerves, leading to motor, sensory, and autonomic dysfunction.
Uncontrolled movements and muscle weakness are characteristic
motor manifestations. Other symptoms may include numbness,
tingling, and pain in the extremities.
Question 6
A patient with diabetes presents with mild fever, erythema, and edema in
the groin area with drainage. Gram stain reveals a staphylococcal
bacterial infection. Which condition is described?
Answer: Carbuncle.
Rationale: A carbuncle is a cluster of furuncles (boils) caused by
staphylococcal infection, typically involving hair follicles. It presents
with erythema, edema, pain, and purulent drainage. Diabetes mellitus
is a significant risk factor due to impaired immune function and poor
wound healing.
, Question 7
A middle-aged female presents with symptoms of muscle tenderness
and fatigue. She also reports the death of her grandmother, which
occurred three months ago, as the time period in which she has noticed
an increase in symptoms. Which condition is described?
Answer: Fibromyalgia.
Rationale: Fibromyalgia is a chronic pain syndrome characterized by
widespread musculoskeletal pain, fatigue, and tender points.
Symptoms are often exacerbated by physical or emotional stress,
including grief and trauma. It is more common in women and middle-
aged adults.
Question 8
What is a common symptom of Multiple Sclerosis?
Answer: Weakness.
Rationale: Multiple sclerosis (MS) is a chronic demyelinating disease
of the central nervous system. Common symptoms include muscle
weakness, fatigue, paresthesias, visual disturbances, and coordination
problems. Weakness results from demyelination and axonal damage
in motor pathways.
Question 9
What is myoglobin?
Answer: A red pigment that stores oxygen in muscle cells.