HomeIntermediate

Case Level: Intermediate

AKI, CKD, electrolyte disorders, and glomerulonephritis

This is an original, question-bank-style learning set designed for general internal medicine residents. It uses concise vignettes, a single-best-answer format, focused diagnostic clues, and explanations of the distractors. It is inspired by the high-yield structure of postgraduate clinical question banks but does not reproduce proprietary Amboss content.

Educational disclaimer: These fictional cases support postgraduate learning only. They do not replace local emergency protocols, specialist review, current prescribing information, or individualized clinical judgment. Emergency electrolyte disorders and rapidly progressive glomerulonephritis require supervised, protocol-based care.

Case 1 — Sepsis-associated AKI

A 72-year-old man is admitted with fever, hypotension, confusion, and right lower-lobe pneumonia. His baseline serum creatinine is 0.9 mg/dL; it is now 2.4 mg/dL. He has received no iodinated contrast. Urinalysis shows 1+ protein and no dysmorphic erythrocytes. Urine microscopy shows renal tubular epithelial cells and muddy brown granular casts. He remains hypotensive after initial assessment.

Which is the most appropriate interpretation and immediate priority?

Option Answer
A The urine findings establish prerenal azotemia; aggressive loop diuresis should be started to restore urine output.
B The findings support acute tubular injury in the setting of sepsis; restore and reassess perfusion, give timely infection-directed therapy and source control, review nephrotoxins, and monitor complications.
C A kidney biopsy is required before treating the sepsis because granular casts are nonspecific.
D The creatinine rise is too modest to be clinically meaningful unless dialysis is immediately required.

Correct answer: B. Muddy brown granular casts and tubular epithelial cells in a patient with shock support acute tubular injury. The immediate priorities are resuscitation tailored to perfusion and congestion, prompt antimicrobial/source-control decisions, medication review, and surveillance for electrolyte, acid–base, and volume complications. Urine output is an important monitoring signal but should not be pursued with diuretics solely to “treat” AKI. [1]

Why the other options are less appropriate: A mistakes tubular-injury sediment for a low-perfusion-only state; a loop diuretic may be used for clinically important congestion but does not reverse tubular injury. C delays treatment of a time-sensitive cause of AKI; biopsy is reserved for selected unresolved cases where it will change management. D is unsafe because even a moderate creatinine rise can represent clinically important AKI and requires prompt evaluation.

Clinical pearl: In AKI, identify the cause while simultaneously treating reversible threats; do not wait for a perfect etiologic label before correcting shock, infection, obstruction, or exposure to nephrotoxins.


Case 2 — Postrenal AKI from urinary retention

A 78-year-old man with progressive nocturia, hesitancy, and weak stream presents with suprapubic discomfort and nausea. He has passed only a few drops of urine over 18 hours. Serum creatinine has risen from 1.1 to 3.0 mg/dL over 4 days. Examination shows a palpable, tender bladder. Bedside bladder scan estimates 950 mL of retained urine.

What is the best next step?

Option Answer
A Start high-dose IV furosemide to establish a brisk diuresis before imaging.
B Begin an ACE inhibitor to reduce intraglomerular pressure while awaiting outpatient urology review.
C Perform prompt bladder decompression, monitor urine output and hemodynamics, and evaluate the cause and upper-tract involvement.
D Defer intervention until a 24-hour urine collection confirms intrinsic AKI.

Correct answer: C. This is strongly suggestive of postrenal AKI from acute urinary retention. Prompt bladder decompression is both diagnostic and therapeutic. After decompression, monitor closely for post-obstructive diuresis, volume depletion, electrolyte disturbances, and recovery of kidney function; establish the obstructive cause and assess for hydronephrosis or persistent upper-tract obstruction as indicated. [1]

Why the other options are less appropriate: A does not relieve the obstruction and may worsen hypovolemia after decompression. B is not an acute treatment for obstruction and may further lower filtration pressure in an unstable AKI context. D unnecessarily delays relief of a reversible kidney threat.

Clinical pearl: A bladder scan and focused examination can rapidly identify a reversible cause of AKI. In suspected complete obstruction, decompression takes priority over elaborate urine indices.


Case 3 — Drug-induced acute interstitial nephritis

A 43-year-old woman receives amoxicillin–clavulanate for sinusitis. Ten days later, she develops malaise, a pruritic maculopapular rash, low-grade fever, and an increase in serum creatinine from 0.7 to 1.8 mg/dL. Urinalysis shows pyuria and mild proteinuria; there are no red-cell casts. Blood eosinophils are mildly elevated. She is euvolemic and has no evidence of obstruction.

Which action is most appropriate now?

Option Answer
A Stop the likely offending drug, document the suspected reaction, assess for other causes of AKI, and arrange follow-up of kidney recovery; seek nephrology input if recovery is incomplete or diagnosis is uncertain.
B Continue the antibiotic because pyuria proves persistent bacterial infection.
C Start empiric high-dose immunosuppression before reviewing the drug timeline or excluding infection.
D Diagnose acute tubular injury solely because creatinine has risen.

Correct answer: A. The temporal association with a beta-lactam, rash, fever, eosinophilia, sterile pyuria, and AKI makes drug-induced acute interstitial nephritis (AIN) a leading diagnosis. The first action is withdrawal of the suspected medication, careful review of all exposures, and longitudinal assessment of renal recovery. The clinical pattern is supportive but not perfectly specific; persistent AKI or diagnostic uncertainty may warrant nephrology assessment and, in selected cases, biopsy. [1]

Why the other options are less appropriate: B confuses inflammatory urinary findings with ongoing urinary infection. C may expose the patient to harm before the diagnosis and infectious context have been clarified; immunosuppression decisions are specialist-led and individualized. D ignores a highly informative exposure-and-hypersensitivity pattern.

Clinical pearl: Urine eosinophils are neither sensitive nor specific enough to confirm AIN. Medication chronology and the broader clinical picture matter more.


Case 4 — Albuminuric diabetic CKD

A 59-year-old man with type 2 diabetes and hypertension has an eGFR of 42 mL/min/1.73 m² and urine albumin–creatinine ratio of 780 mg/g, confirmed on repeat testing. He is taking maximally tolerated losartan. His blood pressure is 126/74 mmHg, potassium is 4.6 mmol/L, and he has no symptomatic volume depletion, active ketoacidosis, or recurrent severe genital infection.

Which additional measure is most appropriate to discuss and initiate if no contraindication emerges?

Option Answer
A Combine an ACE inhibitor with losartan to maximize renin–angiotensin system blockade.
B Stop losartan because albuminuria remains present despite treatment.
C Start maintenance dialysis because the patient has CKD G3b with severe albuminuria.
D Add an SGLT2 inhibitor while continuing risk-based CKD care and monitoring kidney function, volume status, and tolerability.

Correct answer: D. In albuminuric CKD, care is layered rather than limited to one medication. An SGLT2 inhibitor should be considered in eligible patients in addition to optimized renin–angiotensin system inhibition, blood-pressure management, cardiovascular-risk reduction, and medication stewardship. A small early eGFR dip can occur and should be interpreted in clinical context rather than prompting automatic discontinuation. [2]

Why the other options are less appropriate: A increases adverse-event risk and is not routine kidney-protective therapy. B removes a key albuminuria- and blood-pressure-lowering therapy without a stated contraindication. C confuses CKD risk stratification with indications for kidney replacement therapy; dialysis is based on symptoms, complications, and overall clinical context, not eGFR or albuminuria alone at this stage.

Clinical pearl: “Persistent albuminuria” should trigger optimization and layering of evidence-based care, not abandonment of treatments that are tolerated and beneficial.


Case 5 — Metabolic acidosis in advanced CKD

A 67-year-old woman with CKD G4 due to hypertensive nephrosclerosis reports stable exertional fatigue but no vomiting, diarrhea, confusion, dyspnea, edema, or chest pain. Her eGFR is 23 mL/min/1.73 m², serum bicarbonate is 17 mmol/L on repeat testing, potassium is 4.9 mmol/L, and blood pressure is controlled. She has no evidence of diabetic ketoacidosis, lactic acidosis, or an acute decline in GFR.

Which approach is most appropriate?

Option Answer
A Ignore the bicarbonate value because metabolic acidosis is expected in CKD and has no management implications.
B Confirm the chronic acid–base context and contributors, then use a monitored treatment plan to avoid persistent clinically important acidosis while following blood pressure, volume status, potassium, and kidney trajectory.
C Treat the bicarbonate value as an automatic indication for urgent dialysis despite clinical stability.
D Prescribe a fixed alkali dose indefinitely without repeat bicarbonate or volume assessment.

Correct answer: B. Persistent bicarbonate of 17 mmol/L in advanced CKD warrants a structured assessment and a monitored plan to prevent ongoing clinically important metabolic acidosis. The plan must account for cause, diet, blood pressure, sodium/volume tolerance, potassium, and serial bicarbonate values. Treatment goals should avoid both persistent acidemia and overshooting into alkalemia; this is not a simple “one value, one permanent dose” problem. [2]

Why the other options are less appropriate: A misses a modifiable CKD complication. C overcalls urgency; dialysis is not triggered by a bicarbonate value alone in a stable patient without refractory or life-threatening complications. D ignores the sodium load and monitoring needs of alkali therapy.

Clinical pearl: In CKD, treat the patient and trajectory—not a bicarbonate number in isolation. Verify that acidosis is chronic and not a clue to a new acute process.


Case 6 — Severe symptomatic hypotonic hyponatremia

A 63-year-old woman taking hydrochlorothiazide develops nausea, headache, confusion, and a generalized tonic–clonic seizure. Serum sodium is 112 mmol/L, serum osmolality is low, and glucose is normal. She is receiving airway support and is in a monitored emergency setting.

Which is the most appropriate immediate strategy?

Option Answer
A Correct the sodium concentration to the normal range within several hours.
B Restrict fluids alone and recheck sodium the following morning.
C Give desmopressin alone as the initial treatment for the seizure.
D Give protocol-based intermittent 3% hypertonic saline for severe symptoms, with frequent sodium and urine-output monitoring; aim initially for symptom improvement and a modest rise rather than rapid normalization.

Correct answer: D. Seizure represents severe symptomatic hypotonic hyponatremia, requiring urgent monitored therapy. Contemporary guidance favors rapid intermittent 3% hypertonic saline for severe symptoms, with close reassessment. The immediate objective is relief of cerebral edema symptoms and an initial modest increase—commonly about 4–6 mmol/L—not normalization. Subsequent correction must be risk-adjusted, with readiness to halt or relower sodium if overcorrection occurs. [3]

Why the other options are less appropriate: B is unsafe in a patient with seizures. C can have a role in preventing or managing overcorrection under protocol but does not replace initial hypertonic-saline rescue for severe symptoms. A risks osmotic demyelination, especially when chronicity is unknown or risk factors are present.

Clinical pearl: In dangerous hyponatremia, distinguish the early symptom-relief goal from the maximum safe correction limit. The latter is a ceiling, not a target.


Case 7 — Hyperkalemia with ECG changes

A 70-year-old man with CKD G4 takes lisinopril and spironolactone. He presents with weakness. Serum potassium is 7.1 mmol/L on a nonhemolyzed sample. ECG shows broad QRS complexes and absent P waves. He is hemodynamically stable and has continuous cardiac monitoring.

What is the most appropriate treatment sequence?

Option Answer
A Administer IV calcium promptly for myocardial stabilization, then begin protocol-based potassium redistribution and organize definitive potassium removal with repeat potassium, ECG, and glucose monitoring.
B Give a loop diuretic alone, regardless of urine output or intravascular volume.
C Begin an oral potassium binder and wait for the potassium to fall before addressing the ECG.
D Stop potassium-containing drugs and recheck the potassium in 24 hours without acute treatment.

Correct answer: A. Hyperkalemia with conduction abnormalities is an immediate cardiac emergency. The first principle is myocardial stabilization with IV calcium, followed by therapies that transiently shift potassium intracellularly and measures that remove potassium from the body. Insulin–glucose requires serial glucose monitoring, and dialysis is the most reliable potassium-removal therapy when severe hyperkalemia is refractory or kidney failure prevents adequate elimination. [4]

Why the other options are less appropriate: C is too slow and does not stabilize the myocardium. B is not reliably effective in an oliguric or volume-depleted patient. D ignores ECG toxicity and could permit fatal arrhythmia.

Clinical pearl: Think in three steps: stabilize the heart, shift potassium, remove potassium. An oral binder is never the first response to an ECG-toxic emergency.


Case 8 — Hypercalcemia, volume depletion, and AKI

A 66-year-old woman with weight loss, constipation, polyuria, and confusion has an albumin-adjusted calcium of 3.7 mmol/L (14.8 mg/dL), creatinine of 2.0 mg/dL from a baseline of 0.8 mg/dL, and dry mucous membranes. ECG shows a shortened QT interval. She has no clinical pulmonary edema.

Which is the best initial management plan?

Option Answer
A Give a loop diuretic immediately to lower calcium, without replacing intravascular volume.
B Start a thiazide diuretic to increase urinary calcium excretion.
C Begin monitored isotonic-saline rehydration, obtain directed testing including PTH and malignancy evaluation, and add cause- and severity-specific calcium-lowering therapy with renal-aware specialist input.
D Delay treatment until a parathyroid hormone assay identifies the cause.

Correct answer: C. Severe hypercalcemia with neurocognitive symptoms, volume depletion, ECG changes, and AKI requires urgent, supervised treatment. Volume restoration with isotonic saline is an initial priority when the patient is depleted, while fluid balance is monitored carefully in kidney impairment. The cause must be clarified (including PTH-based categorization). For severe hypercalcemia of malignancy, antiresorptive therapy and short-course calcitonin may be used according to severity, kidney function, and specialist guidance. [5]

Why the other options are less appropriate: A may worsen hypovolemia; loop diuretics are not routine calcium-lowering therapy and are reserved for fluid overload after rehydration. B worsens hypercalcemia. D inappropriately delays stabilization for a dangerous biochemical and clinical syndrome.

Clinical pearl: Treat the physiology while investigating the cause. In hypercalcemia-associated AKI, polyuria and volume depletion frequently amplify the fall in GFR.


Case 9 — Infection-related nephritic syndrome

A 24-year-old man develops periorbital edema, cola-colored urine, and hypertension 2 weeks after untreated impetigo. Serum creatinine is 1.5 mg/dL, urinalysis shows dysmorphic erythrocytes and red-cell casts, urine protein–creatinine ratio is 1.2 g/g, and complement C3 is low. He has no hemoptysis, purpura, or systemic lupus features.

Which statement best reflects the likely diagnosis and initial management?

Option Answer
A This is most consistent with minimal change disease, and high-dose glucocorticoids should be started immediately.
B The pattern is consistent with infection-related glomerulonephritis; assess for and treat active infection, manage blood pressure and fluid complications, monitor kidney function and complement recovery, and seek nephrology input if the course is atypical.
C The low C3 level proves ANCA-associated vasculitis, so immunosuppression should precede any infection assessment.
D Red-cell casts exclude a glomerular process because bleeding must arise below the glomerulus.

Correct answer: B. The latent period after impetigo, nephritic urine sediment, edema/hypertension, and low C3 support infection-related glomerulonephritis. Initial management emphasizes identification and treatment of active infection if present, supportive care for blood pressure and volume, and surveillance of kidney function and complement trajectory. Atypical, progressive, or nonresolving presentations merit nephrology evaluation and may require biopsy to distinguish alternative complement- or immune-mediated disease. [6]

Why the other options are less appropriate: A describes a nephrotic, not nephritic, pattern and proposes treatment that may be harmful in an infection-related context. C overinterprets low complement; ANCA vasculitis is typically not diagnosed by low C3 alone. D is false: red-cell casts strongly point to glomerular inflammation.

Clinical pearl: In a nephritic syndrome, combine the timing of infection, sediment, complement pattern, and kidney trajectory. None of these clues should be interpreted in isolation.


Case 10 — Pulmonary–renal syndrome

A 48-year-old man presents with 5 days of hemoptysis, dyspnea, fatigue, and dark urine. Oxygen saturation is 90% on room air. Hemoglobin has fallen from 13.5 to 9.6 g/dL, creatinine has risen from 0.9 to 3.6 mg/dL, and urinalysis shows protein, dysmorphic erythrocytes, and red-cell casts. Chest imaging shows bilateral alveolar opacities. There is no evidence of heart failure.

Which is the most appropriate next step?

Option Answer
A Treat as uncomplicated community-acquired pneumonia and defer kidney evaluation until the pulmonary infiltrates resolve.
B Start an ACE inhibitor and arrange routine outpatient urinalysis in 2 weeks.
C Treat this as a nephrologic emergency: obtain urgent nephrology and pulmonary/critical-care input; send ANCA, anti-GBM, complement, and other directed studies; pursue kidney biopsy when feasible; and, after urgent assessment for competing infection and other mimics, begin institution-specific specialist-led treatment promptly when clinical suspicion is high; biopsy should not delay life-preserving care.
D Reassure the patient that hemoptysis and hematuria are unrelated because they occur in different organ systems.

Correct answer: C. Hemoptysis/alveolar hemorrhage plus rapidly progressive glomerulonephritis is a pulmonary–renal syndrome until proven otherwise. ANCA-associated vasculitis and anti-GBM disease are critical considerations. Time-sensitive multidisciplinary assessment, serology, kidney biopsy when feasible, and specialist-directed therapy are required; treatment decisions must balance the risk of irreversible renal/pulmonary injury against infection and other mimics. [6] [7]

Why the other options are less appropriate: A dangerously fragments a unified syndrome. B delays urgent evaluation and does not address the active glomerular and pulmonary process. D misses a classic multi-organ vasculitic or anti-GBM presentation.

Clinical pearl: In suspected pulmonary–renal syndrome, do not wait for a complete diagnostic panel before escalating care. Diagnostic sampling and life-saving treatment often proceed in parallel.


Resident takeaway table

Problem pattern First cognitive move Immediate safety priority
AKI with shock or infection Classify the hemodynamic and intrinsic injury context; review sediment and exposures Perfusion, infection/source control, nephrotoxin stewardship, and complication monitoring
AKI with retention Look for a reversible obstructive lesion Prompt decompression and monitoring for post-obstructive diuresis
Albuminuric CKD Layer risk-reducing therapies rather than selecting one “renal drug” Monitor eGFR, albuminuria, blood pressure, volume status, potassium, and tolerability
Severe hyponatremia Assess symptom severity and chronicity/risk of overcorrection Monitored hypertonic-saline rescue for severe symptoms; avoid rapid normalization
Hyperkalemia with ECG toxicity Stabilize, shift, remove IV calcium first, then protocol-based redistribution and definitive elimination
Nephritic or pulmonary–renal syndrome Recognize active glomerular inflammation from sediment and trajectory Control volume/BP and urgently involve nephrology for rapidly progressive disease

References

[1] KDIGO. Acute Kidney Injury (AKI) and Acute Kidney Disease (AKD) guideline hub; 2012 AKI guideline remains available while the 2026 update is under public review.

[2] [inline_viewer url="https://kdigo.org/wp-content/uploads/2024/03/KDIGO-2024-CKD-Guideline.pdf"]

[3] Spasovski G. Hyponatraemia-treatment standard 2024. Nephrology Dialysis Transplantation.

[4] Rafique Z, et al. Hyperkalemia management in the emergency department: An expert panel consensus. JACEP Open.

[5] Walsh J, et al. Emergency management of acute hypercalcaemia in adult patients. Endocrine Connections.

[6] [inline_viewer url="https://kdigo.org/wp-content/uploads/2017/02/KDIGO-2021-Glomerular-Diseases-Guideline_English_LN-2024-Update.pdf"]

[7] KDIGO. 2024 Clinical Practice Guideline for the Management of ANCA-Associated Vasculitis.


Intermediate Self-Assessment

Complete the 10-question Intermediate self-assessment below. Detailed explanations are provided after submission.

Intermediate Self-Assessment: Core Nephrology Scenarios

1 / 10

A 72-year-old man is admitted with fever, hypotension, confusion, and right lower-lobe pneumonia. His baseline serum creatinine is 0.9 mg/dL; it is now 2.4 mg/dL. He has received no iodinated contrast. Urinalysis shows 1+ protein and no dysmorphic erythrocytes. Urine microscopy shows renal tubular epithelial cells and muddy brown granular casts. He remains hypotensive after initial assessment.

Which is the most appropriate interpretation and immediate priority?

2 / 10

A 78-year-old man with progressive nocturia, hesitancy, and weak stream presents with suprapubic discomfort and nausea. He has passed only a few drops of urine over 18 hours. Serum creatinine has risen from 1.1 to 3.0 mg/dL over 4 days. Examination shows a palpable, tender bladder. Bedside bladder scan estimates 950 mL of retained urine.

What is the best next step?

3 / 10

A 43-year-old woman receives amoxicillin–clavulanate for sinusitis. Ten days later, she develops malaise, a pruritic maculopapular rash, low-grade fever, and an increase in serum creatinine from 0.7 to 1.8 mg/dL. Urinalysis shows pyuria and mild proteinuria; there are no red-cell casts. Blood eosinophils are mildly elevated. She is euvolemic and has no evidence of obstruction.

Which action is most appropriate now?

4 / 10

A 59-year-old man with type 2 diabetes and hypertension has an eGFR of 42 mL/min/1.73 m² and urine albumin–creatinine ratio of 780 mg/g, confirmed on repeat testing. He is taking maximally tolerated losartan. His blood pressure is 126/74 mmHg, potassium is 4.6 mmol/L, and he has no symptomatic volume depletion, active ketoacidosis, or recurrent severe genital infection.

Which additional measure is most appropriate to discuss and initiate if no contraindication emerges?

5 / 10

A 67-year-old woman with CKD G4 due to hypertensive nephrosclerosis reports stable exertional fatigue but no vomiting, diarrhea, confusion, dyspnea, edema, or chest pain. Her eGFR is 23 mL/min/1.73 m², serum bicarbonate is 17 mmol/L on repeat testing, potassium is 4.9 mmol/L, and blood pressure is controlled. She has no evidence of diabetic ketoacidosis, lactic acidosis, or an acute decline in GFR.

Which approach is most appropriate?

6 / 10

A 63-year-old woman taking hydrochlorothiazide develops nausea, headache, confusion, and a generalized tonic–clonic seizure. Serum sodium is 112 mmol/L, serum osmolality is low, and glucose is normal. She is receiving airway support and is in a monitored emergency setting.

Which is the most appropriate immediate strategy?

7 / 10

A 70-year-old man with CKD G4 takes lisinopril and spironolactone. He presents with weakness. Serum potassium is 7.1 mmol/L on a nonhemolyzed sample. ECG shows broad QRS complexes and absent P waves. He is hemodynamically stable and has continuous cardiac monitoring.

What is the most appropriate treatment sequence?

8 / 10

A 66-year-old woman with weight loss, constipation, polyuria, and confusion has an albumin-adjusted calcium of 3.7 mmol/L (14.8 mg/dL), creatinine of 2.0 mg/dL from a baseline of 0.8 mg/dL, and dry mucous membranes. ECG shows a shortened QT interval. She has no clinical pulmonary edema.

Which is the best initial management plan?

9 / 10

A 24-year-old man develops periorbital edema, cola-colored urine, and hypertension 2 weeks after untreated impetigo. Serum creatinine is 1.5 mg/dL, urinalysis shows dysmorphic erythrocytes and red-cell casts, urine protein–creatinine ratio is 1.2 g/g, and complement C3 is low. He has no hemoptysis, purpura, or systemic lupus features.

Which statement best reflects the likely diagnosis and initial management?

10 / 10

A 48-year-old man presents with 5 days of hemoptysis, dyspnea, fatigue, and dark urine. Oxygen saturation is 90% on room air. Hemoglobin has fallen from 13.5 to 9.6 g/dL, creatinine has risen from 0.9 to 3.6 mg/dL, and urinalysis shows protein, dysmorphic erythrocytes, and red-cell casts. Chest imaging shows bilateral alveolar opacities. There is no evidence of heart failure.

Which is the most appropriate next step?

Your score is

The average score is 80%

Intermediate Real-Life Case

Learning objectives: Diagnose PD peritonitis from effluent findings, obtain cultures correctly, start empiric coverage promptly, and recognize catheter or surgical complications.

Clinical Scenario

A 55-year-old woman on continuous ambulatory peritoneal dialysis presents with abdominal pain and cloudy effluent. Temperature is 38.1°C, exit-site erythema is mild, and effluent white-cell count is 1,850/µL with 88% neutrophils.

Clinical Reasoning

Send effluent cell count, differential, Gram stain, and culture before antibiotics when possible without delaying treatment. Reassess promptly for treatment failure, tunnel infection, fungal disease, or a surgical abdomen.

Interactive Checkpoints

Complete the case questions to test your clinical reasoning. Detailed explanations are revealed after completion.

Peritoneal Dialysis Peritonitis in a Home Patient

Intermediate real-life nephrology case. Evaluate cloudy effluent, culture strategy, empiric therapy, and catheter complications.

1 / 5

Which finding most strongly supports PD peritonitis?

2 / 5

What should be done before administering antibiotics when feasible?

3 / 5

Which finding should raise concern for a non-catheter intra-abdominal surgical process?

4 / 5

Which response would most strongly suggest treatment failure?

5 / 5

Which preventive intervention is most useful for reducing recurrent PD peritonitis?

Your score is

The average score is 0%

Intermediate Real-Life Case

Learning objectives: Recognize postrenal AKI from history, examination, and bedside imaging; prioritize urgent decompression; and interpret the biochemical response after relief of obstruction.

Clinical Scenario

A 74-year-old man with benign prostatic enlargement presents with 36 hours of anuria, suprapubic discomfort, nausea, and progressive confusion. He has been taking ibuprofen for back pain. Blood pressure is 168/92 mmHg, potassium is 6.3 mmol/L, bicarbonate is 15 mmol/L, and the ECG shows peaked T waves.

Clinical Reasoning

Stabilize life-threatening hyperkalemia while arranging urgent urinary drainage. After catheterization, monitor for post-obstructive diuresis with hourly urine output, serial electrolytes, and careful volume assessment.

Interactive Checkpoints

Complete the case questions to test your clinical reasoning. Detailed explanations are revealed after completion.

Obstructive Acute Kidney Injury in an Older Adult

Intermediate real-life nephrology case. Work through the emergency presentation, decompression priorities, and post-obstructive monitoring decisions.

1 / 5

Which finding most strongly supports urgent postrenal decompression in this patient?

2 / 5

While urinary drainage is arranged, which treatment is the most urgent?

3 / 5

What best explains the marked urine output after catheterization?

4 / 5

Which monitoring plan is most appropriate during the first day?

5 / 5

Which medication should generally be withheld during the acute obstructive episode?

Your score is

The average score is 80%

Monoclonal Gammopathy of Renal Significance (MGRS)

1 / 3

Which of the following is the most appropriate next step?

2 / 3

The kidney biopsy in this patient shows membranoproliferative glomerulonephritis with monoclonal IgM kappa deposits. What is the most appropriate treatment?

3 / 3

Which laboratory finding is most helpful in monitoring treatment response in MGRS?

Your score is

The average score is 57%

Advanced Clinical Scenario for Multi-Level Learning

Learning Objectives: Upon completion of this interactive case, learners will be able to systematically evaluate patients presenting with acute kidney injury, apply KDIGO staging criteria accurately, implement evidence-based management strategies, recognize complications and their management, and demonstrate appropriate consultation and follow-up planning.

Case Presentation – Initial Encounter:

Mrs. Sarah Chen, a 67-year-old woman with a medical history significant for type 2 diabetes mellitus, hypertension, and osteoarthritis, presents to the emergency department with a chief complaint of decreased urine output and generalized weakness over the past three days. Her daughter, who accompanies her, reports that her mother has been “not herself” lately, appearing more confused and lethargic than usual. The patient herself complains of nausea and has had minimal oral intake over the past 48 hours.

The patient’s medical history reveals that she was diagnosed with diabetes fifteen years ago and has been managed with metformin and insulin glargine. Her hypertension has been controlled with lisinopril 10 mg daily and amlodipine 5 mg daily. For her osteoarthritis, she has been taking ibuprofen 600 mg three times daily for the past two weeks due to increased joint pain following a fall at home. She denies any recent illnesses, fever, or urinary symptoms such as dysuria or frequency.

Interactive Decision Point 1: Initial Assessment Priorities

1- What are the most important initial steps in evaluating this patient’s presentation?

2- Based on the history provided, what are your primary differential diagnoses for this patient’s acute kidney injury, and what additional history would you obtain?

3- What specific risk factors and medication interactions should be prioritized in your assessment, and how would you approach the initial management while awaiting laboratory results?

Physical Examination Findings:

The patient appears ill and lethargic but is oriented to person and place, though somewhat confused about the date. Vital signs reveal a blood pressure of 95/60 mmHg (baseline typically 130-140/80-85 mmHg according to her daughter), heart rate of 105 beats per minute, respiratory rate of 20 breaths per minute, temperature of 98.6°F (37°C), and oxygen saturation of 96% on room air.

Physical examination reveals dry mucous membranes and decreased skin turgor, suggesting volume depletion. Cardiovascular examination shows regular rhythm with no murmurs, rubs, or gallops, but jugular venous pressure is not visible with the patient sitting upright. Pulmonary examination is clear to auscultation bilaterally with no evidence of pulmonary edema. Abdominal examination reveals mild diffuse tenderness without organomegaly or masses. Extremity examination shows trace pedal edema bilaterally, which the daughter reports is new, and no evidence of rash or joint inflammation despite her osteoarthritis complaints.

Laboratory Results – Initial Panel:

The emergency department obtains comprehensive laboratory studies that reveal several concerning abnormalities. Serum creatinine is elevated at 3.2 mg/dL, representing a significant increase from her baseline of 1.1 mg/dL documented six months ago during routine follow-up. Blood urea nitrogen is 65 mg/dL, giving a BUN-to-creatinine ratio of approximately 20:1. Estimated glomerular filtration rate using the CKD-EPI equation is 15 mL/min/1.73m², representing a dramatic decline from her previous eGFR of 55 mL/min/1.73m².

Electrolyte abnormalities include serum sodium of 132 mEq/L, potassium of 5.8 mEq/L, chloride of 105 mEq/L, and bicarbonate of 18 mEq/L, suggesting metabolic acidosis with an anion gap of 15. Glucose is elevated at 245 mg/dL, likely reflecting poor glycemic control in the setting of acute illness and decreased oral intake. Complete blood count shows hemoglobin of 10.2 g/dL (baseline 11.5 g/dL), hematocrit of 30.5%, and white blood cell count of 8,500/μL with normal differential.

Interactive Decision Point 2: KDIGO Staging and Etiology Assessment

1- Using the KDIGO criteria, what stage of acute kidney injury does this patient have, and what does this staging tell us about prognosis?

2- What additional laboratory studies would you order to help determine the etiology of AKI, and what imaging studies might be indicated?

3- How would you differentiate between prerenal azotemia and acute tubular necrosis in this case, and what specific interventions would you implement immediately?

Additional Diagnostic Studies:

Urinalysis reveals specific gravity of 1.025, protein 2+, glucose 3+, ketones negative, blood 1+, leukocyte esterase negative, and nitrites negative. Microscopic examination shows 5-10 red blood cells per high-power field, 2-5 white blood cells per high-power field, and occasional hyaline casts with rare granular casts. No bacteria or crystals are observed. Urine sodium concentration is 15 mEq/L, and fractional excretion of sodium calculates to 0.8%.

Renal ultrasound performed in the emergency department demonstrates normal-sized kidneys bilaterally (right kidney 11.2 cm, left kidney 10.8 cm) with normal echogenicity and no evidence of hydronephrosis or masses. Doppler studies show normal arterial flow patterns bilaterally. Bladder appears normal with minimal post-void residual volume.

Case Evolution – Hour 4:

Despite initial fluid resuscitation with 1 liter of normal saline over two hours, the patient’s clinical status shows minimal improvement. Repeat vital signs show blood pressure of 100/65 mmHg and heart rate of 98 beats per minute. Urine output has been 15 mL over the past two hours despite Foley catheter placement. The patient remains lethargic and now reports mild nausea.

Interactive Decision Point 3: Management Strategy

1- What are the key components of supportive care for acute kidney injury, and what medications should be avoided or dose-adjusted?

2- Given the limited response to initial fluid resuscitation, what are your next management steps, and when would you consider nephrology consultation?

3- How would you approach fluid management in this patient, and what are the indications for renal replacement therapy consideration?

Advanced Management Considerations:

The nephrology consultant evaluates the patient and determines that this represents acute kidney injury likely due to a combination of prerenal azotemia from volume depletion and acute tubular necrosis from NSAID use in the setting of underlying chronic kidney disease. The consultant recommends discontinuation of lisinopril and metformin, careful fluid management with close monitoring of volume status, and aggressive management of hyperkalemia.

Hyperkalemia Management Protocol:

Given the serum potassium of 5.8 mEq/L, immediate treatment is initiated with calcium gluconate 1 gram intravenously for cardiac membrane stabilization, followed by insulin 10 units regular with 25 grams of dextrose to promote intracellular potassium shift. Sodium polystyrene sulfonate 30 grams orally is administered for potassium removal. Electrocardiogram shows peaked T waves in leads V2-V4, confirming the need for aggressive treatment.

Interactive Decision Point 4: Monitoring and Follow-up

1- What parameters should be monitored closely in hospitalized patients with AKI, and how frequently should laboratory studies be repeated?

2- What are the criteria for nephrology consultation in AKI, and how would you counsel the patient and family about prognosis?

3- What are the long-term implications of this AKI episode, and how would you structure follow-up care?

Case Resolution and Learning Points:

Over the next 48 hours, with careful fluid management, medication adjustments, and supportive care, the patient’s kidney function begins to improve. Serum creatinine decreases to 2.1 mg/dL by hospital day 3, and urine output increases to 1,200 mL over 24 hours. The patient’s mental status clears, and she tolerates oral intake well.

Key Teaching Points: This case illustrates the multifactorial nature of acute kidney injury in elderly patients with multiple comorbidities. The combination of volume depletion from poor oral intake and NSAID use in a patient with underlying diabetic nephropathy created a perfect storm for AKI development. Early recognition, appropriate staging using KDIGO criteria, and prompt intervention with fluid management and medication adjustments led to recovery of kidney function.

Expert Commentary: The case demonstrates the importance of medication reconciliation in AKI evaluation, particularly the role of NSAIDs in precipitating kidney injury in vulnerable patients. The fractional excretion of sodium helped differentiate prerenal azotemia from intrinsic kidney disease, though the mixed picture suggested elements of both. The prompt recognition and treatment of hyperkalemia prevented potentially life-threatening cardiac complications.