04

GLOMERULAR DISEASE

Chapter 4

Minimal Change Disease

The Steroid-Responsive Podocytopathy

Orientation & KnowledgeVisualise & MapClinical ReasoningSafety & EvidencePatient DecisionsApply & Test
Chapter Preamble

This preamble records the dynamic decisions the master makes for this chapter.

Signals declared

  • Sig-D diagnostic — the chapter recognises and biopsy-diagnoses the podocytopathy.
  • Sig-T therapeutic — it treats with steroids and manages relapse.
  • Sig-M mechanistic — immune-mediated podocyte injury underlies it.

Levels populated and omitted

  • Nineteen levels are built — a mechanism, diagnosis, and treatment chapter with concept maps, implications, absolute-risk framing, and documentation.
  • Omitted: L15 and L16 — treating minimal change is effective-care, not preference-sensitive. L21 — no contested tension specific to this chapter. The podocyte (Chapter 1), the biopsy/EM (Chapter 3), and FSGS (Chapter 5) are cross-referenced.
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

The contract between this chapter and the reader.

  1. 1. Define minimal change disease and its podocyte mechanism.
  2. 2. Recognise its clinical presentation.
  3. 3. Diagnose it, including when to biopsy.
  4. 4. Describe the biopsy (light, immunofluorescence, electron).
  5. 5. Treat with corticosteroids.
  6. 6. Manage relapse and steroid dependence.
  7. 7. Use steroid-sparing agents appropriately.
  8. 8. Provide supportive care for the nephrotic state.
  9. 9. Distinguish minimal change disease from FSGS.
02
Phase A · Level 2

Executive Summary

A sixty-second reading. Each bullet stands alone.

  • Minimal change disease is the commonest cause of nephrotic syndrome in children.
  • It is a podocytopathy: diffuse foot-process effacement with minimal light-microscopy change and negative immunofluorescence.
  • It is presumed immune-mediated, from a circulating permeability factor or T-cell dysregulation.
  • It presents as an abrupt nephrotic syndrome with marked edema and a bland sediment.
  • In children with a classic presentation, it is treated empirically with steroids without biopsy.
  • In adults it is biopsied, showing the electron-microscopy-only changes.
  • It is highly steroid-responsive — most patients remit.
  • Relapse is common; patients may be relapsing, frequently relapsing, or steroid-dependent.
  • Steroid-sparing agents (calcineurin inhibitors, cyclophosphamide, rituximab, mycophenolate) are used for frequent relapse or steroid dependence.
  • Supportive care addresses edema, thrombosis risk, and hyperlipidemia.
  • The long-term prognosis is excellent and progression to kidney failure is rare.
  • It is distinguished from FSGS, which is often steroid-resistant and can progress.
  • The steroid response itself carries diagnostic information.
03
Phase A · Level 3

Main Narrative

The medical core. An expert should agree minimal change disease is fully covered here.

Why it matters at the bedside

Minimal change disease is the friendliest of the glomerular diseases: it floods the body with protein, yet under the light microscope the glomerulus looks almost normal, and a course of steroids usually melts the proteinuria away. The lessons it teaches — that the diagnosis can live entirely in the electron microscope, and that the response to treatment is itself a clue — echo through the whole nephrotic story.

What it is and its mechanism

  • Minimal change disease is the commonest cause of nephrotic syndrome in children (and an important one in adults). It is a pure podocytopathy: the only consistent abnormality is diffuse effacement of the podocyte foot processes on electron microscopy, with ‘minimal’ change on light microscopy and negative immunofluorescence. The injury is presumed immune-mediated — a circulating permeability factor and T-cell dysregulation altering the slit diaphragm — and is usually idiopathic, though it can be secondary to NSAIDs, Hodgkin lymphoma, or allergy.

Clinical presentation

  • It presents abruptly with the full nephrotic syndrome: heavy, albumin-selective proteinuria, hypoalbuminemia, often striking oedema, and hyperlipidemia, with a bland urinary sediment. Kidney function and blood pressure are usually normal (though acute kidney injury can occur), and the complications are those of the nephrotic state — a thrombosis-prone, infection-prone condition.

Diagnosis and when to biopsy

  • Diagnosis turns on age. In a child with a classic nephrotic presentation, minimal change is so likely that treatment with steroids begins empirically, biopsy being reserved for atypical features or steroid resistance. In adults, the nephrotic syndrome is biopsied — to confirm minimal change and exclude FSGS and other causes — and the response to steroids then adds further diagnostic information.

The biopsy

  • The biopsy is the archetypal electron-microscopy diagnosis (the biopsy chapter): light microscopy is normal or near-normal, immunofluorescence is negative, and only electron microscopy reveals the diffuse foot-process effacement. It is the clearest demonstration of why all three microscopies are needed and why electron microscopy is indispensable in nephrotic disease.

Corticosteroid treatment

  • Corticosteroids are the first-line treatment and the disease's defining feature: minimal change is highly steroid-responsive, and most patients achieve remission. The steroid response is so characteristic that it is itself diagnostic — a steroid-responsive nephrotic syndrome behaves like minimal change, while steroid resistance points elsewhere (typically FSGS).

Relapse and steroid dependence

  • The catch is relapse, which is common. Patients are categorised by their pattern: infrequently relapsing, frequently relapsing, or steroid-dependent (relapsing as steroids are tapered or stopped). Frequent relapse and steroid dependence are the problem to solve, because repeated or continuous steroid courses accumulate toxicity — which is what drives the move to steroid-sparing therapy.

Steroid-sparing agents

  • For frequently relapsing or steroid-dependent disease (and for steroid resistance), a steroid-sparing agent is added to maintain remission with less steroid exposure: a calcineurin inhibitor (cyclosporine or tacrolimus), cyclophosphamide, rituximab, or mycophenolate (with levamisole an option in children). The choice balances efficacy against each agent's toxicity, the same logic met throughout the transplant volume.

Supportive care

  • Alongside immunosuppression, the nephrotic state is managed supportively: oedema with salt restriction and diuretics, the hypercoagulable thrombosis risk with prophylaxis where appropriate, and hyperlipidemia with a statin — the supportive backbone common to all nephrotic disease (the supportive-therapy chapter).

Prognosis

  • The prognosis is excellent: minimal change rarely progresses to kidney failure — unlike FSGS — and long-term kidney function is preserved. Relapses are common but manageable, and even steroid-dependent patients generally do well on steroid-sparing regimens. The reassurance is real, and it is one of the chapter's key counselling points.

MCD versus FSGS

  • The crucial differential is FSGS, with which minimal change shares a spectrum. Minimal change has normal light microscopy, is steroid-responsive, and does not usually progress; FSGS shows segmental sclerosis, is often steroid-resistant, and can progress to end-stage disease. Because FSGS is focal, a small biopsy can miss the sclerosis and mimic minimal change — so steroid resistance in apparent ‘minimal change’ should prompt reconsideration of FSGS.
04
Phase A · Level 4

Reference Tables

Five fully-built tables.

Table A — The disease at a glance

FeatureNote
WhoCommonest nephrotic syndrome in children; also adults
LesionPodocytopathy: foot-process effacement (EM)
LM / IFMinimal / negative
MechanismPresumed immune (permeability factor / T-cell)
HallmarkSteroid-responsive
PrognosisExcellent; rarely progresses

Table B — Presentation and diagnosis

AspectNote
PresentationAbrupt nephrotic syndrome; marked edema; bland sediment
ProteinuriaHeavy, selective (albumin)
Function / BPUsually normal (AKI possible)
ChildrenClassic → empiric steroids (biopsy if atypical)
AdultsBiopsy (EM foot-process effacement)
Secondary causesNSAIDs, Hodgkin lymphoma, allergy

Table C — Treatment and relapse categories

ElementNote
First-lineCorticosteroids (most remit)
RelapsingRelapse after remission
Frequently relapsingMultiple relapses
Steroid-dependentRelapse on tapering or stopping
Steroid-resistantNo remission → reconsider FSGS

Table D — Steroid-sparing agents

AgentNote
Calcineurin inhibitor (cyclosporine/tacrolimus)Frequent relapse / dependence / resistance
CyclophosphamideFrequent relapse / dependence
RituximabRelapsing / steroid-dependent
MycophenolateAlternative
LevamisolePediatric option

Table E — MCD versus FSGS

FeatureMCDFSGS
Light microscopyNormalSegmental sclerosis
SteroidsResponsiveOften resistant
ProgressionRareCan progress to ESKD
Electron microscopyFoot-process effacementEffacement + sclerosis

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging and Algorithm Flowcharts

Figure 4.1 — Foot-process effacement
Figure 4.1 — Foot-process effacement
Figure 4.2 — The relapse categories
Figure 4.2 — The relapse categories
Flowchart 4.A — Diagnosing and starting treatment
Flowchart 4.A — Diagnosing and starting treatment
Flowchart 4.B — Relapse and steroid dependence
Flowchart 4.B — Relapse and steroid dependence

PHASE B · LEVEL 6 · VISUALISE & MAP

Concept Maps

Causal chains, each ending in a named action.

Chain 1 — The leaking podocyte

A permeability factor / T-cell dysregulation → podocyte injury → foot-process effacement → massive selective proteinuria → ACTION: treat with corticosteroids.

Chain 2 — The invisible lesion

‘Minimal’ light microscopy and negative immunofluorescence, but effacement on electron microscopy → the abnormality is ultrastructural → ACTION: perform electron microscopy to make the diagnosis.

Chain 3 — The steroid signature

Minimal change is a steroid-responsive podocytopathy → most patients remit on steroids → the response is itself diagnostic → ACTION: use corticosteroids first-line and read the response.

Chain 4 — The relapse toll

Frequent relapse / steroid dependence → repeated or continuous steroid exposure → cumulative steroid toxicity → ACTION: add a steroid-sparing agent.

Chain 5 — No scar, no progression

Minimal change has no glomerulosclerosis → the kidney is not scarred → it rarely progresses (unlike FSGS) → ACTION: reassure, and reconsider FSGS if the course is atypical.

07
Phase B · Level 7

Clinical Decision Pathways

Numbered rules. These numbers are the cross-reference handle for the cases and flowcharts.

R1
IF abrupt nephrotic syndrome (especially in a child), THEN consider minimal change disease.
R2
IF a child has a classic nephrotic presentation, THEN treat with steroids empirically (biopsy if atypical or steroid-resistant).
R3
IF an adult has nephrotic syndrome, THEN biopsy (electron microscopy shows foot-process effacement).
R4
IF minimal change disease is diagnosed, THEN treat first-line with corticosteroids.
R5
IF frequently relapsing or steroid-dependent, THEN add a steroid-sparing agent.
R6
IF steroid-resistant, THEN reconsider FSGS and use a calcineurin inhibitor.
R7
IF the patient is nephrotic, THEN give supportive care (edema, thrombosis prophylaxis, statin).
R8
IF distinguishing minimal change from FSGS, THEN use the biopsy and the steroid response.

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

Five cases. Each stops you at a decision before it answers it.

CASE 1STANDARD

A child with sudden oedemaEmpiric steroids

Presentation

A young child develops sudden periorbital and peripheral oedema with heavy proteinuria, a low albumin, and a bland sediment.

Pause and reflect

Before reading on: do you biopsy first, or treat?

Analysis

In a child with a classic nephrotic presentation, minimal change disease is so likely that treatment with corticosteroids begins empirically, without a biopsy — which is reserved for atypical features or steroid resistance. Most such children remit, and the response confirms the diagnosis. Supportive care for the nephrotic state runs alongside.

Management plan

  1. Recognise the classic childhood nephrotic syndrome (R1).
  2. Treat empirically with corticosteroids (R2, R4).
  3. Supportive care; biopsy only if atypical/resistant (R7).

Teaching points

  • Classic childhood nephrotic syndrome → empiric steroids, not biopsy first.

Cross-reference: exercises R1, R2, R4, R7; see Chapter 2.

CASE 2STANDARD

An adult, nephroticBiopsy then steroids

Presentation

An adult presents with nephrotic syndrome; biopsy shows normal light microscopy, negative immunofluorescence, and diffuse foot-process effacement on electron microscopy.

Pause and reflect

Before reading on: what is the diagnosis and treatment?

Analysis

In adults the nephrotic syndrome is biopsied, and this picture — normal light microscopy, negative immunofluorescence, foot-process effacement on electron microscopy — is minimal change disease. It is treated first-line with corticosteroids, most patients remitting, with supportive care for the nephrotic state.

Management plan

  1. Biopsy the adult nephrotic syndrome (R3).
  2. Recognise the EM-only minimal change picture (R3).
  3. Treat with corticosteroids; support (R4, R7).

Teaching points

  • Adult nephrotic syndrome is biopsied — EM-only effacement is minimal change; treat with steroids.

Cross-reference: exercises R3, R4, R7; see Chapter 3.

CASE 3COMPLEX

Relapsing on every taperSteroid dependence

Presentation

A patient with minimal change remits on steroids but relapses each time they are tapered, accumulating steroid side-effects.

Pause and reflect

Before reading on: keep repeating steroids, or change tack?

Analysis

Relapsing on tapering defines steroid dependence, and repeated or continuous steroids accumulate toxicity. The move is to a steroid-sparing agent — a calcineurin inhibitor, cyclophosphamide, rituximab, or mycophenolate — to maintain remission with far less steroid exposure, the choice weighing efficacy against each agent's toxicity.

Management plan

  1. Recognise steroid dependence (R5).
  2. Add a steroid-sparing agent (R5).
  3. Limit cumulative steroid toxicity.

Teaching points

  • Steroid dependence → a steroid-sparing agent — don't keep cycling steroids.

Cross-reference: exercises R5.

CASE 4COMPLEX

No response to steroidsReconsider FSGS

Presentation

A patient with apparent minimal change on a small biopsy fails to remit despite an adequate steroid course.

Pause and reflect

Before reading on: what does steroid resistance suggest here?

Analysis

Steroid resistance is atypical for minimal change and should prompt reconsideration of FSGS — which, being focal, can be missed on a small biopsy and mimic minimal change. A calcineurin inhibitor is the usual next step, and the steroid resistance itself is diagnostic information pointing toward FSGS and its different, progressive course.

Management plan

  1. Treat steroid resistance as a flag for FSGS (R6, R8).
  2. Use a calcineurin inhibitor (R6).
  3. Re-examine the biopsy / consider re-biopsy.

Teaching points

  • Steroid-resistant ‘minimal change’ — reconsider FSGS (focal lesions get missed).

Cross-reference: exercises R6, R8; see Chapter 5.

CASE 5COMPLEX

Swollen, breathless legThe nephrotic complication

Presentation

A patient with active nephrotic-range minimal change develops a swollen, painful leg.

Pause and reflect

Before reading on: what complication of the nephrotic state is this?

Analysis

The nephrotic state is hypercoagulable, and a swollen, painful leg suggests venous thrombosis — one of its major complications, alongside infection. Beyond treating the rejection-like disease itself, supportive care addresses oedema, the thrombosis risk (prophylaxis where appropriate, treatment when it occurs), and hyperlipidemia.

Management plan

  1. Recognise thrombosis as a nephrotic complication (R7).
  2. Treat/anticoagulate; consider prophylaxis (R7).
  3. Continue disease treatment and supportive care.

Teaching points

  • The nephrotic state is hypercoagulable — watch for and prevent thrombosis.

Cross-reference: exercises R7; see Chapter 16.

09
Phase C · Level 9

Clinical Implications

Every mechanism from Level 3 earns a bedside consequence and an action.

MECHANISM

An immune permeability factor injures the podocyte.

WHY IT MATTERS

Foot processes efface and protein floods out.

ACTION

Treat with corticosteroids.

MECHANISM

The lesion is only on electron microscopy.

WHY IT MATTERS

Light microscopy and immunofluorescence look normal.

ACTION

Perform electron microscopy to diagnose it.

MECHANISM

Minimal change is steroid-responsive.

WHY IT MATTERS

Most patients remit, and the response is diagnostic.

ACTION

Use steroids first-line and read the response.

MECHANISM

Frequent relapse means repeated steroid exposure.

WHY IT MATTERS

Steroid toxicity accumulates.

ACTION

Add a steroid-sparing agent.

MECHANISM

There is no glomerulosclerosis.

WHY IT MATTERS

The kidney does not scar or progress (unlike FSGS).

ACTION

Reassure, but reconsider FSGS if atypical.

10
Phase C · Level 10

Clinical Pearls

Exhaustive. Every rule in the chapter is here.

MCD = commonest nephrotic syndrome in children.
Podocytopathy: foot-process effacement (EM only).
Minimal LM; negative IF.
Presumed immune (permeability factor / T-cell).
Abrupt nephrotic syndrome; selective proteinuria; bland sediment.
Children: classic → empiric steroids.
Adults: biopsy.
Highly steroid-responsive (most remit).
Relapse common: relapsing / frequent / steroid-dependent.
Steroid-sparing: CNI, cyclophosphamide, rituximab, MMF.
Supportive: edema, thrombosis prophylaxis, statin.
Excellent prognosis; rarely progresses.
Steroid resistance → reconsider FSGS.
Steroid response is itself diagnostic.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags and NEVER DO

Panel A — Red flags

A swollen, painful leg or breathlessness in nephrotic disease — thrombosis.
Steroid resistance in apparent minimal change — reconsider FSGS.
Frequent relapse or steroid dependence — accumulating steroid toxicity.
New minimal change in an adult — consider a secondary cause (NSAIDs, lymphoma).

Panel B — NEVER DO

NEVER — overlook the thrombosis and infection risk of the nephrotic state.
NEVER — label steroid-resistant disease as minimal change without reconsidering FSGS.
NEVER — keep cycling steroids in a frequent relapser without a steroid-sparing agent.
NEVER — omit electron microscopy in an adult nephrotic biopsy.
NEVER — forget the secondary causes of minimal change (NSAIDs, Hodgkin lymphoma).
12
Phase D · Level 12

Common Pitfalls

Anti-patterns clinicians fall into. Each becomes a Level 22 distractor.

WRONG Ignoring the thrombosis risk of the nephrotic state.
RIGHT Give prophylaxis where appropriate; treat thrombosis.
WHY The nephrotic state is hypercoagulable.
WRONG Calling steroid-resistant disease minimal change.
RIGHT Reconsider FSGS.
WHY A focal lesion can be missed on a small biopsy.
WRONG Cycling endless steroids in a relapser.
RIGHT Add a steroid-sparing agent.
WHY Steroid toxicity accumulates.
WRONG Skipping electron microscopy in an adult.
RIGHT Perform EM.
WHY The lesion is ultrastructural.
WRONG Missing a secondary cause in an adult.
RIGHT Check NSAIDs and screen for lymphoma.
WHY Secondary minimal change needs the cause treated.
WRONG Over-treating a first, single remission.
RIGHT Use a standard course; most remit.
WHY Most do well without intensification.
13
Phase D · Level 13

Evidence Grading

The grade reflects strength of evidence, not importance.

GRADE

A

HIGH CONFIDENCE

The effect is real and the estimate is stable.

RCTs at low risk of bias; multiple concordant prospective cohorts; meta-analyses.

GRADE

B

MODERATE CONFIDENCE

The effect is likely real but may shift with new data.

Observational studies, registries, mechanistic human studies.

GRADE

C

LOW CONFIDENCE

Rests on physiology, reasoning, or consensus rather than outcomes.

Pathophysiological reasoning; extrapolation; consensus without outcomes.

StatementGradeRationale for the grade
Corticosteroids induce remission in most minimal change disease.ATrials and long experience.
Foot-process effacement on EM defines the lesion.AEstablished pathology.
Steroid-sparing agents help frequent relapse / steroid dependence.BRandomised and observational data.
Rituximab maintains remission in relapsing/dependent disease.BRandomised trials.
The renal prognosis is excellent, with rare progression.BCohort data.
Steroid resistance should prompt reconsideration of FSGS.BObservational data and consensus.

Patient Decisions

Phase E Patient Decisions
14
Phase E · Level 14

Absolute-Risk Presentation

Outcomes as natural frequencies. Figures are representative; the direction of effect is given where precise numbers are uncertain.

OutcomeOption AOption BDifferenceEvidence
Remission with corticosteroidsno steroidscorticosteroidsMost remit with steroidsSee L13 — Grade A
Relapse, frequent-relapser on steroid-sparing vs steroids alonesteroids alonesteroid-sparingFewer relapses / less steroidSee L13 — Grade B
Progression to kidney failure, MCD vs FSGSFSGSMCDMuch lower with MCDSee L13 — Grade B

Reading the table

Minimal change is the optimistic podocytopathy: steroids reliably induce remission, steroid-sparing agents tame the relapsers, and — unlike FSGS — the kidney rarely fails. Where exact frequencies are uncertain, the direction of effect is given; the evidence column points to where the detail lives.

Apply & Test

Phase F Apply & Test
17
Phase F · Level 17

Documentation Templates

Copy-paste chart notes that map to the real decisions in this chapter.

Template 1 — Minimal change diagnosis / treatment note

  • Presentation: nephrotic syndrome; age (child/adult); sediment ___.
  • Diagnosis: empiric (child) / biopsy (EM foot-process effacement) ___.
  • Secondary causes considered (NSAIDs, lymphoma): ___.
  • Treatment: corticosteroids; supportive (edema, thrombosis, statin) ___.
  • Response and plan: ___.

Template 2 — Relapse / steroid-sparing note

  • Course: relapsing / frequently relapsing / steroid-dependent / steroid-resistant.
  • Steroid toxicity / cumulative exposure: ___.
  • Steroid-sparing agent chosen and rationale: ___.
  • If steroid-resistant: FSGS reconsidered; CNI: ___.
  • Monitoring (proteinuria, toxicity): ___.
18
Phase F · Level 18

High-Yield Cheat Sheet

Pre-rounds compression. Rules only.

MCD = commonest childhood nephrotic syndrome.
Podocytopathy: EM foot-process effacement only.
Minimal LM; negative IF.
Abrupt nephrotic; selective proteinuria.
Child: classic → empiric steroids.
Adult: biopsy.
Steroid-responsive (most remit).
Relapse common; categorise it.
Frequent relapse/dependence → steroid-sparing.
Steroid-resistant → reconsider FSGS / CNI.
Supportive: edema, thrombosis, statin.
Excellent prognosis; rarely progresses.
19
Phase F · Level 19

Flashcards

Active recall. At least one card per objective.

CARD 1

Q. What is minimal change disease and its mechanism?

Show answer

A. The commonest nephrotic syndrome in children — a podocytopathy with diffuse foot-process effacement on electron microscopy, minimal light-microscopy change, and negative immunofluorescence; presumed immune-mediated (a permeability factor / T-cell dysregulation).

DETAILED. It is usually idiopathic.

CLINICAL. Secondary causes include NSAIDs and Hodgkin lymphoma.

CARD 2

Q. How does it present?

Show answer

A. As an abrupt nephrotic syndrome — heavy selective proteinuria, hypoalbuminemia, often marked edema, hyperlipidemia — with a bland sediment and usually normal function and blood pressure.

DETAILED. AKI can occur.

CLINICAL. Its complications are those of the nephrotic state.

CARD 3

Q. How is it diagnosed, and when do you biopsy?

Show answer

A. In a child with a classic presentation it is treated empirically without biopsy; in adults (and atypical or steroid-resistant children) it is biopsied.

DETAILED. The steroid response adds diagnostic information.

CLINICAL. Biopsy shows the EM-only changes.

CARD 4

Q. What does the biopsy show?

Show answer

A. Normal or near-normal light microscopy, negative immunofluorescence, and diffuse foot-process effacement on electron microscopy — the archetypal EM-only diagnosis.

DETAILED. It shows why EM is indispensable.

CLINICAL. The other views are unremarkable.

CARD 5

Q. How is it treated first-line?

Show answer

A. With corticosteroids — it is highly steroid-responsive and most patients remit; the steroid response is itself diagnostic.

DETAILED. Supportive care runs alongside.

CLINICAL. Steroid resistance points away from minimal change.

CARD 6

Q. How are relapse and steroid dependence managed?

Show answer

A. By categorising the course (relapsing, frequently relapsing, steroid-dependent) and — for frequent relapse or dependence — adding a steroid-sparing agent to limit cumulative steroid toxicity.

DETAILED. Repeated steroids accumulate harm.

CLINICAL. The pattern drives the decision.

CARD 7

Q. Which steroid-sparing agents are used?

Show answer

A. Calcineurin inhibitors (cyclosporine, tacrolimus), cyclophosphamide, rituximab, and mycophenolate (with levamisole an option in children), chosen by balancing efficacy against toxicity.

DETAILED. They maintain remission with less steroid.

CLINICAL. The choice is individualised.

CARD 8

Q. What supportive care does the nephrotic state need?

Show answer

A. Management of edema (salt restriction, diuretics), the hypercoagulable thrombosis risk (prophylaxis where appropriate), and hyperlipidemia (a statin).

DETAILED. It is the backbone common to all nephrotic disease.

CLINICAL. Thrombosis and infection are the key complications.

CARD 9

Q. How is minimal change distinguished from FSGS?

Show answer

A. Minimal change has normal light microscopy, is steroid-responsive, and rarely progresses; FSGS shows segmental sclerosis, is often steroid-resistant, and can progress to kidney failure — and a focal FSGS lesion can be missed on a small biopsy.

DETAILED. Steroid resistance should prompt reconsidering FSGS.

CLINICAL. The biopsy and the steroid response decide it.

20
Phase F · Level 20

One-Minute Preceptor

Micro-teaching for rounds. Two scenarios, five steps each.

SCENE 1
Biopsy this child?
GET A COMMITMENTAsk: “Classic nephrotic syndrome in a young child — biopsy first?”
PROBE“What's the most likely diagnosis, and how does that change the plan?”
TEACHMinimal change — so treat empirically with steroids; biopsy only if atypical or resistant.
REINFORCE“Right — empiric steroids, not biopsy, in the classic child.”
CORRECT ERRORSIf they reached for biopsy, note the empiric pathway.
SCENE 2
Won't respond
GET A COMMITMENTAsk: “Apparent minimal change, no remission on full steroids — what now?”
PROBE“What does steroid resistance suggest the diagnosis really is?”
TEACHReconsider FSGS — focal lesions get missed; use a calcineurin inhibitor.
REINFORCE“Exactly — steroid resistance flags FSGS.”
CORRECT ERRORSIf they pushed more steroids, redirect to FSGS.
22
Phase F · Level 22

Board-Style Q&A

Nine items, each anchored in this chapter. At least one per objective.

Q 01
The defining biopsy finding of minimal change disease is:

Tap an option to check your answer and reveal the explanation.

Q 02
In a young child with a classic nephrotic syndrome, the appropriate first step is:

Tap an option to check your answer and reveal the explanation.

Q 03
The hallmark of minimal change disease is that it is:

Tap an option to check your answer and reveal the explanation.

Q 04
A patient relapses each time steroids are tapered. This is termed:

Tap an option to check your answer and reveal the explanation.

Q 05
For a frequently relapsing or steroid-dependent patient, the appropriate strategy is to:

Tap an option to check your answer and reveal the explanation.

Q 06
Steroid resistance in apparent minimal change disease should prompt:

Tap an option to check your answer and reveal the explanation.

Q 07
Which is a recognised complication of the nephrotic state in minimal change disease?

Tap an option to check your answer and reveal the explanation.

Q 08
Compared with FSGS, minimal change disease characteristically:

Tap an option to check your answer and reveal the explanation.

Q 09
In Flowchart 4.B, a patient is steroid-resistant. The pathway directs you to:

Tap an option to check your answer and reveal the explanation.