COMMISSION (NNCC) – CERTIFIED NEPHROLOGY
NURSE (CNN) EXAM – QUESTIONS AND
ANSWERS | 2026/2027 LATEST UPDATE
SECTION 1: CONCEPTS OF KIDNEY DISEASE ACROSS THE LIFE SPAN
Questions 1–30
1. Which physiologic change most directly explains why chronic kidney disease can cause
metabolic acidosis?
A) Reduced renal excretion of hydrogen ions and impaired bicarbonate regeneration
B) Increased pulmonary carbon dioxide retention
C) Increased gastrointestinal bicarbonate absorption
D) Excessive hepatic production of bicarbonate
Correct Answer: Reduced renal excretion of hydrogen ions and impaired bicarbonate
regeneration
Rationale: Healthy kidneys maintain acid-base balance by excreting hydrogen ions and
generating or reabsorbing bicarbonate. Progressive nephron loss reduces these functions,
allowing acid to accumulate in the circulation. The resulting metabolic acidosis can
contribute to muscle wasting, bone buffering, and progression of mineral and skeletal
abnormalities in advanced kidney disease.
2. What finding most strongly supports nephrotic rather than nephritic syndrome?
A) Red-cell casts
B) Heavy proteinuria with hypoalbuminemia and edema
C) Marked oliguria with hypertension
D) Dysmorphic erythrocytes without protein loss
Correct Answer: Heavy proteinuria with hypoalbuminemia and edema
Rationale: Nephrotic syndrome is characterized by substantial urinary protein loss,
hypoalbuminemia, edema, and often hyperlipidemia. Nephritic syndromes more commonly
produce hematuria, red-cell casts, hypertension, and reduced kidney function. Recognizing
the distinction helps nurses anticipate complications such as thrombotic risk, infection
susceptibility, nutritional problems, and severe fluid accumulation.
3. Based on the pathophysiology of chronic kidney disease, which complication is most
closely associated with reduced erythropoietin production?
A) Iron overload
,B) Hemolytic anemia
C) Normocytic anemia
D) Polycythemia
Correct Answer: Normocytic anemia
Rationale: Diseased kidneys produce less erythropoietin, reducing stimulation of erythroid
precursors in bone marrow. The resulting anemia is commonly normocytic and
normochromic, although iron deficiency and inflammation may alter its characteristics.
Kidney-related anemia contributes to fatigue, reduced exercise tolerance, and cardiovascular
stress, making appropriate evaluation and management important in nephrology nursing.
4. Which mechanism is primarily responsible for secondary hyperparathyroidism in
advanced chronic kidney disease?
A) Increased calcitriol production
B) Excessive intestinal calcium absorption
C) Suppression of parathyroid hormone secretion
D) Phosphate retention with reduced calcitriol and hypocalcemic stimulation
Correct Answer: Phosphate retention with reduced calcitriol and hypocalcemic stimulation
Rationale: Declining kidney function reduces phosphate excretion and calcitriol production.
Phosphate retention and lower intestinal calcium absorption contribute to reduced serum
calcium signaling, stimulating parathyroid hormone secretion. Persistent secondary
hyperparathyroidism contributes to renal mineral and bone disorder, including abnormal
bone turnover, vascular calcification risk, and skeletal complications.
5. What assessment finding is most concerning for fluid overload in a patient with
advanced kidney disease?
A) New pulmonary crackles with increasing weight and dyspnea
B) Mild thirst after exercise
C) Dry oral mucosa
D) Decreased body weight
Correct Answer: New pulmonary crackles with increasing weight and dyspnea
Rationale: Rapid weight gain, dyspnea, and new pulmonary crackles suggest accumulation
of excess extracellular fluid and possible pulmonary edema. Patients with impaired kidney
function have limited ability to excrete sodium and water. Early recognition is essential
because worsening pulmonary congestion can impair oxygenation and progress rapidly to
respiratory compromise.
6. Why is potassium balance particularly important in advanced kidney disease?
A) The kidneys normally store most body potassium
B) Reduced renal potassium excretion can cause dangerous hyperkalemia
,C) Kidney disease invariably causes severe hypokalemia
D) Potassium is eliminated primarily through the lungs
Correct Answer: Reduced renal potassium excretion can cause dangerous hyperkalemia
Rationale: The kidneys are a major route for potassium elimination, particularly when dietary
potassium intake and cellular release increase. Advanced kidney disease can therefore
produce hyperkalemia, especially with certain medications or tissue breakdown. Severe
potassium elevation can disturb cardiac conduction and produce life-threatening
arrhythmias, making prompt assessment and treatment critical.
7. Which dietary teaching is most appropriate for many patients with advanced chronic
kidney disease?
A) Consume unlimited sodium to prevent hypotension
B) Avoid all dietary protein regardless of treatment status
C) Individualize sodium, potassium, phosphorus, protein, and fluid recommendations
D) Increase phosphorus intake to strengthen bones
Correct Answer: Individualize sodium, potassium, phosphorus, protein, and fluid
recommendations
Rationale: Nutrition in kidney disease is individualized according to kidney function, dialysis
status, laboratory values, comorbidities, nutritional status, and treatment goals. Universal
elimination of particular nutrients can cause harm. Nephrology nurses reinforce dietitian-
directed plans while helping patients understand practical food choices, label reading,
medication interactions, and symptom-related adjustments.
8. Which manifestation most strongly suggests uremia rather than uncomplicated mild
chronic kidney disease?
A) Occasional thirst
B) Mild nocturia
C) Stable blood pressure
D) Confusion with nausea, anorexia, and asterixis
Correct Answer: Confusion with nausea, anorexia, and asterixis
Rationale: Uremia reflects accumulation of metabolic waste products and can affect multiple
organ systems. Neurologic changes such as confusion or asterixis, combined with anorexia
and nausea, are concerning manifestations of advanced uremic illness. These findings
warrant prompt clinical assessment because severe uremia may require initiation or
intensification of kidney replacement therapy.
9. What is the principal renal mechanism by which angiotensin II contributes to
progressive kidney injury?
A) It causes sustained intraglomerular pressure and promotes maladaptive remodeling
B) It eliminates proteinuria immediately
, C) It directly increases erythropoietin synthesis
D) It prevents sodium reabsorption
Correct Answer: It causes sustained intraglomerular pressure and promotes maladaptive
remodeling
Rationale: Angiotensin II constricts the efferent arteriole and can increase intraglomerular
pressure, particularly when regulatory mechanisms are disrupted. Persistent activation also
promotes inflammation and fibrosis. Therapies that inhibit the renin-angiotensin system can
reduce albuminuria and intraglomerular pressure in appropriate patients, although kidney
function and potassium require monitoring.
10. Which laboratory pattern is most consistent with advanced chronic kidney disease?
A) Low creatinine, low phosphate, and increased calcitriol
B) Increased creatinine, phosphate retention, and reduced estimated GFR
C) Increased GFR and reduced urea
D) Increased calcitriol and reduced parathyroid hormone
Correct Answer: Increased creatinine, phosphate retention, and reduced estimated GFR
Rationale: Progressive nephron loss reduces filtration, causing estimated GFR to decline
while creatinine and other nitrogenous waste products generally rise. Phosphate retention
and impaired vitamin D activation are additional consequences. Laboratory interpretation
should always consider trends, hydration status, medications, muscle mass, and the patient's
overall clinical condition rather than relying on one value.
11. Which factor most strongly increases the risk of acute kidney injury in a hospitalized
patient?
A) Adequate hydration with stable hemodynamics
B) Controlled blood pressure
C) Exposure to nephrotoxins combined with renal hypoperfusion
D) Normal urine output
Correct Answer: Exposure to nephrotoxins combined with renal hypoperfusion
Rationale: Acute kidney injury often results from multiple simultaneous insults. Reduced
renal perfusion decreases oxygen delivery, while nephrotoxic medications or contrast
exposure can directly or indirectly worsen tubular injury. Recognizing combined risks allows
nurses to advocate for medication review, hemodynamic optimization, appropriate
monitoring, and early intervention before kidney injury becomes more severe.
12. Which statement best distinguishes prerenal acute kidney injury from intrinsic tubular
injury?
A) Prerenal injury results from inadequate renal perfusion without primary tubular
destruction
B) Prerenal injury always produces permanent nephron loss