16

GLOMERULAR DISEASE

Chapter 16

Supportive & Conservative Therapy

The Non-Immunosuppressive Backbone

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

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

Signals declared

  • Sig-T therapeutic (primary) — the chapter is the non-immunosuppressive backbone itself.
  • Sig-D diagnostic — targets and monitoring define success.
  • Sig-V evidence-dense — the SGLT2 era and proteinuria-as-target rest on landmark trials.

Levels populated and omitted

  • Eighteen levels are built — a treatment-and-evidence chapter with absolute-risk framing, documentation, and reflective prompts.
  • Omitted: L6 concept maps and L9 implications triads — the underlying mechanisms (hyperfiltration, intraglomerular pressure) live in Chapter 1. L15 and L16 — this is universal effective-care, not preference-sensitive equipoise. The diseases throughout the volume that rely on this backbone are cross-referenced.
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

The contract between this chapter and the reader.

  1. 1. Explain the role of supportive therapy across all glomerular disease.
  2. 2. Use RAAS blockade as the foundation.
  3. 3. Use SGLT2 inhibitors for proteinuric CKD.
  4. 4. Apply blood-pressure and proteinuria targets.
  5. 5. Manage edema, thrombosis, and the nephrotic complications.
  6. 6. Reduce cardiovascular risk and address lifestyle.
  7. 7. Monitor the targets and the expected SGLT2 GFR dip.
  8. 8. Recognise when to move to conservative kidney-failure care.
  9. 9. Appraise the evidence for the supportive pillars.
02
Phase A · Level 2

Executive Summary

A sixty-second reading. Each bullet stands alone.

  • Every glomerular disease shares a non-immunosuppressive supportive backbone that slows progression.
  • Supportive therapy is given alongside, or instead of, disease-specific immunosuppression.
  • RAAS blockade reduces intraglomerular pressure and proteinuria and is the foundation.
  • SGLT2 inhibitors are now foundational for proteinuric CKD, diabetic and non-diabetic.
  • An early, reversible GFR dip on starting an SGLT2 inhibitor is expected and not a reason to stop.
  • Blood pressure is treated to target, lower when proteinuria is present.
  • Proteinuria reduction is the therapeutic target and the surrogate for slower progression.
  • The nephrotic state is managed for edema, thrombosis, hyperlipidemia, and infection risk.
  • The nephrotic state is hypercoagulable, with the highest thrombosis risk in membranous nephropathy.
  • Cardiovascular risk reduction and lifestyle measures are part of care.
  • Nephrotoxins such as NSAIDs are avoided.
  • Targets, electrolytes (potassium), and GFR trajectory are monitored.
  • When progression is advanced, conservative kidney-failure management is considered.
03
Phase A · Level 3

Main Narrative

The medical core. An expert should agree supportive and conservative therapy is fully covered here.

Why it matters at the bedside

Every chapter in this volume has leaned on this one. Whatever the immune mechanism — or whether there is one at all — the kidney benefits from the same disease-agnostic backbone: lower the intraglomerular pressure, cut the proteinuria, control the blood pressure, manage the nephrotic complications, and reduce cardiovascular risk. For non-immune disease this backbone is the treatment; for everyone it does as much quiet good as the immunosuppression in the spotlight.

Supportive therapy as a universal backbone

  • Supportive therapy is the non-immunosuppressive care given to every patient with glomerular disease, alongside disease-specific immunosuppression where that applies, and as the whole of treatment where it does not (diabetic kidney disease, amyloid). Its goals are to slow progression and manage complications, and it is genuinely disease-modifying — not a holding measure. ‘Supportive’ does not mean ‘doing nothing’.

RAAS blockade: the foundation

  • Renin-angiotensin-aldosterone system blockade (an ACE inhibitor or ARB) is the foundation. By dilating the efferent arteriole it lowers intraglomerular pressure, which reduces proteinuria and slows progression — the central hemodynamic lever of the first chapter put to therapeutic use. It is given to essentially all patients with proteinuria, as a single agent (the two classes are not combined, since dual blockade adds harm without benefit).

SGLT2 inhibitors

  • SGLT2 inhibitors have become foundational for proteinuric chronic kidney disease — diabetic and non-diabetic alike — conferring both kidney and cardiovascular protection (the DAPA-CKD and EMPA-KIDNEY trials). A crucial practical point: starting one causes an early, modest, reversible dip in GFR (the same hemodynamic effect as RAAS blockade), which is expected and is not a reason to stop the drug. They are now part of the default regimen, not an add-on afterthought.

Finerenone and blood-pressure control

  • Two further levers complete the progression-slowing core. Finerenone, a nonsteroidal mineralocorticoid-receptor antagonist, reduces residual risk in diabetic CKD (and is emerging more broadly) when layered on RAAS and SGLT2 therapy. And blood pressure is controlled to target — lower when proteinuria is present — because hypertension both reflects and accelerates glomerular injury.

Proteinuria as the target

  • Across glomerular disease, proteinuria is both the therapeutic target and the surrogate for outcome: the more it is reduced, the slower the progression. Every supportive lever — RAAS, SGLT2, finerenone, blood-pressure control — is titrated against it, and a falling proteinuria is the signal that treatment is working. It is the number to chase, and the thread that runs through every disease chapter.

Managing the nephrotic state

  • The nephrotic state brings its own cluster of problems to manage: oedema (salt restriction and diuretics, a loop diuretic with a thiazide added if needed); a hypercoagulable, thrombosis-prone state (highest in membranous, anticoagulation when the risk is high, as the albumin falls); hyperlipidemia (a statin); and an infection risk from immunoglobulin loss (vaccination and vigilance). These run in parallel with whatever treats the underlying disease.

Cardiovascular risk and lifestyle

  • Chronic kidney disease is a cardiovascular risk state, so cardiovascular risk reduction is integral: a statin, blood-pressure control, and lifestyle measures (weight, smoking cessation). Nephrotoxins — NSAIDs above all — are avoided, and dietary measures (moderate sodium and protein, the renal diet as CKD advances) support the regimen. The kidney is treated in the context of the whole cardiovascular-renal patient.

Targets and monitoring

  • Success is monitored against targets: proteinuria (reduction), blood pressure (to target), and the eGFR trajectory — distinguishing the expected early SGLT2/RAAS dip from genuine decline. Potassium is monitored on RAAS and mineralocorticoid-antagonist therapy, and the nephrotic complications (thrombosis, infection) are watched for. Monitoring closes the loop between the supportive levers and the outcome they aim at.

Conservative kidney-failure care

  • When progression is advanced and irreversible, the supportive role broadens into conservative kidney-failure management: advance care planning, symptom control, and preparation for kidney replacement therapy — or, where chosen, conservative (non-dialytic) care as a legitimate path. Supportive therapy thus spans the whole arc, from slowing early disease to caring for the patient whose kidneys are failing.

The evidence and the SGLT2 era

  • The evidence base has been transformed in a few years. RAAS blockade has long-established antiproteinuric and renoprotective benefit; SGLT2 inhibitors now protect the kidney and heart across proteinuric CKD (DAPA-CKD, EMPA-KIDNEY); finerenone reduces progression and cardiovascular events; and statins reduce cardiovascular risk in CKD. Proteinuria is the validated, modifiable surrogate that ties them together. The contested edges — how low to push proteinuria and blood pressure, the threshold to anticoagulate — are matters of judgement layered on a strong foundation.
04
Phase A · Level 4

Reference Tables

Five fully-built tables.

Table A — The supportive backbone

ElementNote
PrincipleA non-immunosuppressive backbone for all glomerular disease
RoleAlongside, or instead of, immunosuppression
Non-immune diseaseIt IS the treatment (diabetic, amyloid)
GoalSlow progression and manage complications
UniversalityDisease-agnostic; given to everyone
Not“Doing nothing”

Table B — The progression-slowing pillars

PillarNote
RAAS blockade (ACEi/ARB)Foundation; reduces intraglomerular pressure/proteinuria (no dual block)
SGLT2 inhibitorFoundational for proteinuric CKD (kidney + CV); expect early GFR dip
Finerenone (nonsteroidal MRA)Residual risk (diabetic CKD; emerging)
Blood pressureTo target (lower with proteinuria)
Proteinuria reductionThe target and the surrogate

Table C — Managing the nephrotic state

ProblemManagement
EdemaSalt restriction + diuretics (loop ± thiazide)
ThrombosisHypercoagulable (highest in membranous); anticoagulate high-risk
HyperlipidemiaStatin
InfectionRisk from immunoglobulin loss; vaccination, vigilance
Low albuminMarks high thrombosis risk

Table D — Targets and monitoring

ParameterNote
ProteinuriaTarget reduction (the goal)
Blood pressureTo target (lower with proteinuria)
eGFR trajectoryMonitor; distinguish the expected SGLT2/RAAS dip
PotassiumMonitor on RAAS / MRA
ComplicationsThrombosis, infection (nephrotic)

Table E — CV risk, lifestyle, and conservative care

DomainNote
Cardiovascular riskStatin, BP, lifestyle (CKD is a CV risk state)
LifestyleWeight, smoking cessation
NephrotoxinsAvoid (e.g., NSAIDs)
DietModerate sodium and protein; renal diet as CKD advances
Conservative careAdvanced/irreversible → conservative management, ACP, RRT planning

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging and Algorithm Flowcharts

Figure 16.1 — Lowering intraglomerular pressure
Figure 16.1 — Lowering intraglomerular pressure
Figure 16.2 — The supportive pillars
Figure 16.2 — The supportive pillars
Flowchart 16.A — The supportive pathway
Flowchart 16.A — The supportive pathway
Flowchart 16.B — Managing the nephrotic state
Flowchart 16.B — Managing the nephrotic state

PHASE B · LEVEL 7 · VISUALISE & MAP

Clinical Decision Pathways

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

R1
IF any glomerular disease, THEN give supportive therapy (alongside or instead of immunosuppression).
R2
IF there is proteinuria, THEN start RAAS blockade — as a single agent (do not dual-block).
R3
IF proteinuric CKD, THEN add an SGLT2 inhibitor (diabetic or non-diabetic).
R4
IF starting an SGLT2 inhibitor, THEN expect an early reversible GFR dip — do not stop the drug.
R5
IF hypertension, THEN treat to target (lower when proteinuria is present).
R6
IF nephrotic, THEN manage edema (salt/diuretics), thrombosis risk, hyperlipidemia (statin), and infection.
R7
IF managing CKD, THEN reduce cardiovascular risk, address lifestyle, and avoid nephrotoxins.
R8
IF on RAAS or a mineralocorticoid antagonist, THEN monitor potassium and the GFR trajectory.
R9
IF progression is advanced and irreversible, THEN consider conservative kidney-failure management.

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

Proteinuric glomerular diseaseThe supportive foundation

Presentation

A patient with a proteinuric glomerular disease is started on disease-specific treatment; the team asks what else everyone needs.

Pause and reflect

Before reading on: what is the universal backbone?

Analysis

Whatever the disease, the supportive backbone is the same: RAAS blockade (the foundation, single-agent) and an SGLT2 inhibitor for proteinuric CKD, blood-pressure control, lifestyle measures, and avoiding nephrotoxins — all aimed at reducing proteinuria and slowing progression. It is given to everyone, alongside any immunosuppression.

Management plan

  1. Start RAAS blockade + SGLT2 inhibitor (R1, R2, R3).
  2. Control blood pressure; lifestyle; avoid nephrotoxins (R5, R7).
  3. Target proteinuria; monitor.

Teaching points

  • Every proteinuric glomerular disease gets RAAS + SGLT2 + BP control — the universal backbone.

Cross-reference: exercises R1–R3, R5, R7.

CASE 2STANDARD

GFR dips after starting an SGLT2 inhibitorDon't stop

Presentation

A patient's eGFR falls modestly soon after starting an SGLT2 inhibitor, and a clinician wants to stop it.

Pause and reflect

Before reading on: is this dip a reason to stop?

Analysis

An early, modest, reversible GFR dip is the expected hemodynamic effect of an SGLT2 inhibitor (and of RAAS blockade) — it reflects lowered intraglomerular pressure, the very mechanism of benefit, and is not a reason to stop the drug. The dip stabilises, and the long-term trajectory is protected. A large or progressive fall is different and warrants review.

Management plan

  1. Recognise the expected early dip (R4).
  2. Continue the SGLT2 inhibitor (R4).
  3. Distinguish from a large/progressive fall (review).

Teaching points

  • The early SGLT2 GFR dip is expected and reversible — don't stop the drug for it.

Cross-reference: exercises R4, R8.

CASE 3COMPLEX

Nephrotic, very low albuminThe nephrotic complications

Presentation

A patient with nephrotic-range membranous nephropathy has a very low albumin, marked oedema, and hyperlipidemia.

Pause and reflect

Before reading on: which complications must you manage?

Analysis

The nephrotic state needs its complications managed in parallel: oedema with salt restriction and diuretics, hyperlipidemia with a statin, infection risk with vaccination and vigilance, and — distinctively in membranous, the highest-thrombosis-risk nephrotic disease — anticoagulation given the very low albumin. These run alongside the disease-specific treatment.

Management plan

  1. Manage edema (salt/diuretics) and hyperlipidemia (statin) (R6).
  2. Anticoagulate for high thrombosis risk (low albumin, membranous) (R6).
  3. Address infection risk (vaccination, vigilance) (R6).

Teaching points

  • Nephrotic state with a very low albumin (membranous) — manage edema, lipids, infection, and anticoagulate.

Cross-reference: exercises R6; see Chapter 6.

CASE 4COMPLEX

Rising potassium on RAAS and an MRAMonitoring the regimen

Presentation

A patient on RAAS blockade and finerenone develops a rising potassium.

Pause and reflect

Before reading on: what does the supportive regimen require you to watch?

Analysis

RAAS blockade and mineralocorticoid antagonists both raise potassium, so the supportive regimen requires monitoring of potassium (and the GFR trajectory). A rising potassium is managed (dietary measures, dose adjustment, potassium binders as needed) rather than reflexively abandoning renoprotective therapy — the goal is to keep the patient safely on the beneficial drugs.

Management plan

  1. Recognise hyperkalemia as a known effect of RAAS/MRA (R8).
  2. Manage potassium (diet, dose, binders) (R8).
  3. Preserve renoprotective therapy where possible.

Teaching points

  • RAAS + MRA raise potassium — monitor and manage it; don't reflexively drop renoprotection.

Cross-reference: exercises R8.

CASE 5COMPLEX

Advanced, irreversible diseaseConservative care

Presentation

A patient's glomerular disease has progressed to advanced, irreversible kidney failure.

Pause and reflect

Before reading on: what does supportive care become now?

Analysis

When progression is advanced and irreversible, the supportive role broadens into conservative kidney-failure management: advance care planning, symptom control, and preparation for kidney replacement therapy — or, where the patient chooses, conservative (non-dialytic) care as a legitimate path. Supportive therapy thus runs the whole arc, from slowing early disease to caring for the failing kidney.

Management plan

  1. Recognise advanced, irreversible disease (R9).
  2. Advance care planning; symptom management (R9).
  3. Prepare for kidney replacement or conservative care (R9).

Teaching points

  • Advanced irreversible disease → conservative kidney-failure care: ACP, symptoms, and RRT planning.

Cross-reference: exercises R9.

10
Phase C · Level 10

Clinical Pearls

Exhaustive. Every rule in the chapter is here.

Supportive therapy is a universal backbone for all glomerular disease.
Given alongside, or instead of, immunosuppression.
For non-immune disease, it IS the treatment.
RAAS blockade: the foundation (single agent; no dual block).
SGLT2 inhibitor: foundational for proteinuric CKD.
Expect an early reversible GFR dip on SGLT2/RAAS — don't stop.
Finerenone for residual risk (diabetic CKD).
Blood pressure to target (lower with proteinuria).
Proteinuria reduction = the target and the surrogate.
Nephrotic: edema, thrombosis, hyperlipidemia, infection.
Highest thrombosis risk in membranous (anticoagulate high-risk).
Reduce CV risk (statin, BP, lifestyle); avoid NSAIDs.
Monitor proteinuria, BP, eGFR, potassium.
Advanced/irreversible → conservative kidney-failure care.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags and NEVER DO

Panel A — Red flags

Hyperkalemia on RAAS or a mineralocorticoid antagonist — monitor and manage.
A swollen leg or breathlessness in the nephrotic state — thrombosis.
A large or progressive GFR fall (beyond the expected SGLT2/RAAS dip).
NSAID use in glomerular disease — a nephrotoxin to stop.

Panel B — NEVER DO

NEVER — omit RAAS blockade and an SGLT2 inhibitor in proteinuric CKD.
NEVER — stop an SGLT2 inhibitor for the expected early GFR dip.
NEVER — combine an ACE inhibitor with an ARB (dual RAAS blockade).
NEVER — ignore the thrombosis risk of the nephrotic state.
NEVER — treat supportive care as ‘doing nothing’ — it slows progression.
12
Phase D · Level 12

Common Pitfalls

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

WRONG Omitting an SGLT2 inhibitor in proteinuric CKD.
RIGHT Add it (diabetic or non-diabetic).
WHY It protects the kidney and heart.
WRONG Stopping an SGLT2 inhibitor for the early dip.
RIGHT Continue it.
WHY The dip is expected and reversible.
WRONG Combining an ACE inhibitor and an ARB.
RIGHT Use a single RAAS agent.
WHY Dual blockade adds harm without benefit.
WRONG Ignoring the nephrotic thrombosis risk.
RIGHT Anticoagulate when the risk is high.
WHY The nephrotic state is hypercoagulable.
WRONG Allowing NSAIDs in glomerular disease.
RIGHT Avoid them.
WHY They are nephrotoxic.
WRONG Treating supportive care as a holding measure.
RIGHT Recognise it as disease-modifying.
WHY It slows progression in its own right.
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
RAAS blockade reduces proteinuria and slows progression.ARandomised trials.
SGLT2 inhibitors protect the kidney and heart in proteinuric CKD.ARandomised trials (DAPA-CKD, EMPA-KIDNEY).
The early GFR dip on SGLT2/RAAS is expected and reversible.ATrial and physiologic data.
Finerenone reduces progression and cardiovascular events in diabetic CKD.ARandomised trials.
Statins reduce cardiovascular risk in CKD.ARandomised trials.
Proteinuria reduction is a surrogate for slower progression.BConsistent observational and trial data.

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
Progression, RAAS blockade vs placeboplaceboRAAS blockadeSlower with RAAS blockadeSee L13 — Grade A
Kidney/CV events, SGLT2 inhibitor vs placeboplaceboSGLT2 inhibitorFewer with the SGLT2 inhibitorSee L13 — Grade A
Cardiovascular events, statin vs placebo (CKD)placebostatinFewer with the statinSee L13 — Grade A

Reading the table

The supportive pillars each carry hard-outcome evidence — RAAS and SGLT2 slow progression, statins cut cardiovascular events — which is precisely why ‘supportive’ care is disease-modifying, not a holding measure. 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 — Supportive-therapy plan note

  • RAAS blockade (single agent; no dual block): ___.
  • SGLT2 inhibitor started (proteinuric CKD); early GFR dip expected: ___.
  • Finerenone for residual risk (if applicable): ___.
  • Blood-pressure target; proteinuria target: ___.
  • CV risk (statin), lifestyle, nephrotoxins avoided: ___.

Template 2 — Nephrotic-state / monitoring note

  • Edema (salt/diuretics); hyperlipidemia (statin); infection risk: ___.
  • Thrombosis risk (albumin; membranous); anticoagulation decision: ___.
  • Monitoring: proteinuria, BP, eGFR trajectory, potassium: ___.
  • Distinguish expected SGLT2/RAAS dip from genuine decline: ___.
  • Conservative care / RRT planning if advanced: ___.
18
Phase F · Level 18

High-Yield Cheat Sheet

Pre-rounds compression. Rules only.

Universal backbone for all glomerular disease.
Alongside or instead of immunosuppression.
RAAS blockade = foundation (single agent).
SGLT2 inhibitor for proteinuric CKD.
Expect early reversible GFR dip — don't stop.
Finerenone for residual risk.
BP to target (lower with proteinuria).
Proteinuria = the target and surrogate.
Nephrotic: edema, thrombosis, lipids, infection.
Highest thrombosis risk = membranous.
CV risk reduction; avoid NSAIDs.
Monitor proteinuria, BP, eGFR, potassium.
19
Phase F · Level 19

Flashcards

Active recall. At least one card per objective.

CARD 1

Q. What is the role of supportive therapy in glomerular disease?

Show answer

A. A non-immunosuppressive backbone given to every patient — alongside disease-specific immunosuppression where it applies, and as the whole treatment where it does not — to slow progression and manage complications.

DETAILED. It is disease-modifying, not a holding measure.

CLINICAL. ‘Supportive’ does not mean ‘doing nothing’.

CARD 2

Q. Why is RAAS blockade the foundation?

Show answer

A. By dilating the efferent arteriole it lowers intraglomerular pressure, reducing proteinuria and slowing progression; it is given to essentially all patients with proteinuria as a single agent.

DETAILED. The two RAAS classes are not combined.

CLINICAL. Dual blockade adds harm without benefit.

CARD 3

Q. What is the role of SGLT2 inhibitors?

Show answer

A. They are foundational for proteinuric CKD — diabetic and non-diabetic — conferring kidney and cardiovascular protection (DAPA-CKD, EMPA-KIDNEY).

DETAILED. They are part of the default regimen.

CLINICAL. An early GFR dip is expected on starting them.

CARD 4

Q. What are the blood-pressure and proteinuria targets?

Show answer

A. Blood pressure is treated to target (lower when proteinuria is present), and proteinuria reduction is both the therapeutic target and the surrogate for slower progression.

DETAILED. Every lever is titrated against proteinuria.

CLINICAL. A falling proteinuria signals treatment is working.

CARD 5

Q. How is the nephrotic state managed?

Show answer

A. Edema with salt restriction and diuretics; the hypercoagulable thrombosis risk (highest in membranous) with anticoagulation when high-risk; hyperlipidemia with a statin; and infection risk (immunoglobulin loss) with vaccination and vigilance.

DETAILED. A low albumin marks high thrombosis risk.

CLINICAL. These run in parallel with disease treatment.

CARD 6

Q. How is cardiovascular risk addressed?

Show answer

A. CKD is a cardiovascular risk state, so a statin, blood-pressure control, and lifestyle measures (weight, smoking cessation) are integral, and nephrotoxins like NSAIDs are avoided.

DETAILED. The kidney is treated in the whole-patient context.

CLINICAL. Diet supports the regimen.

CARD 7

Q. What is monitored, and what about the SGLT2 GFR dip?

Show answer

A. Proteinuria, blood pressure, the eGFR trajectory, and potassium (on RAAS/MRA); the early, modest, reversible GFR dip on starting an SGLT2 inhibitor is expected and is not a reason to stop the drug.

DETAILED. It reflects lowered intraglomerular pressure.

CLINICAL. A large or progressive fall is different.

CARD 8

Q. When does care become conservative kidney-failure management?

Show answer

A. When progression is advanced and irreversible — broadening into advance care planning, symptom control, and preparation for kidney replacement therapy, or conservative (non-dialytic) care where chosen.

DETAILED. Supportive therapy spans the whole arc.

CLINICAL. Conservative care is a legitimate path.

CARD 9

Q. What does the evidence show for the supportive pillars?

Show answer

A. RAAS blockade and SGLT2 inhibitors slow progression (DAPA-CKD, EMPA-KIDNEY), finerenone reduces progression and cardiovascular events, and statins reduce cardiovascular risk — with proteinuria the validated, modifiable surrogate tying them together.

DETAILED. The pillars carry hard-outcome evidence.

CLINICAL. Supportive care is genuinely disease-modifying.

20
Phase F · Level 20

One-Minute Preceptor

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

SCENE 1
The dip
GET A COMMITMENTAsk: “eGFR fell a bit after we started the SGLT2 inhibitor — stop it?”
PROBE“What causes that early dip, and is it harmful?”
TEACHIt's the expected hemodynamic effect — lowered intraglomerular pressure, reversible; continue the drug.
REINFORCE“Right — the early dip is expected; don't stop.”
CORRECT ERRORSIf they stopped it, explain the mechanism of benefit.
SCENE 2
Just supportive?
GET A COMMITMENTAsk: “Non-immune proteinuric disease — is ‘just supportive care’ enough?”
PROBE“What does RAAS plus SGLT2 actually do to the outcome?”
TEACHThey slow progression with hard-outcome evidence — supportive care is the disease-modifying treatment here.
REINFORCE“Exactly — supportive care isn't ‘doing nothing’.”
CORRECT ERRORSIf they dismissed it, cite the trial benefit.
21
Phase F · Level 21

Reflective Prompts

Metacognition anchored to this chapter's tensions. No answers provided.

  1. 1. Proteinuria is the surrogate we chase, but how low is low enough — and when does pushing further trade benefit for adverse effects?
  2. 2. The nephrotic thrombosis risk is real but so is the bleeding risk of anticoagulation; where do you set the albumin threshold to anticoagulate?
  3. 3. Four renoprotective levers each add benefit and burden; how do you decide how high to build the stack for a given patient?
  4. 4. Hyperkalemia tempts clinicians to drop renoprotective drugs; how do you weigh keeping a beneficial drug against the safety of the potassium?
  5. 5. When does the goal shift from slowing progression to conservative, symptom-focused care — and who should make that call?
22
Phase F · Level 22

Board-Style Q&A

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

Q 01
Supportive therapy in glomerular disease is best understood as:

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

Q 02
The foundation of progression-slowing therapy in proteinuric glomerular disease is:

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

Q 03
SGLT2 inhibitors in glomerular disease are:

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

Q 04
An early, modest fall in eGFR after starting an SGLT2 inhibitor should prompt you to:

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

Q 05
The therapeutic target and surrogate across glomerular disease is:

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

Q 06
Which nephrotic disease carries the highest thrombosis risk, warranting attention to anticoagulation?

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

Q 07
A patient on RAAS blockade and finerenone develops a rising potassium. You should:

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

Q 08
Which is appropriate cardiovascular and lifestyle care in CKD?

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

Q 09
In Flowchart 16.A, a patient has residual proteinuria despite RAAS blockade and an SGLT2 inhibitor. The pathway directs you to:

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