14

GLOMERULAR DISEASE

Chapter 14

Paraprotein-Related Disease

Myeloma, MGRS & the Monoclonal Kidney

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 detects the paraprotein and defines the renal lesion.
  • Sig-M mechanistic — distinct light-chain injuries produce distinct diseases.
  • Sig-T therapeutic — the treatment is to treat the clone.

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 — diagnosing and treating these diseases is effective-care, not preference-sensitive. L21 — no contested tension warranting reflective prompts. Deposition/immune-complex injury (Chapter 1), the SPEP/light-chain workup (Chapter 2), Congo red and EM (Chapter 3), amyloid (Chapter 7), and cryoglobulinemic MPGN (Chapter 11) 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 how monoclonal proteins injure the kidney and the MGRS concept.
  2. 2. Recognise myeloma cast nephropathy.
  3. 3. Recognise AL amyloidosis and light-chain deposition disease.
  4. 4. Recognise cryoglobulinemic glomerulonephritis.
  5. 5. Detect the paraprotein (SPEP/UPEP, free light chains).
  6. 6. Use biopsy to define the renal lesion and link it to the clone.
  7. 7. Treat the clone (clone-directed therapy).
  8. 8. Manage myeloma cast nephropathy urgently.
  9. 9. Apply the ‘treat the clone’ principle (MGRS).
02
Phase A · Level 2

Executive Summary

A sixty-second reading. Each bullet stands alone.

  • Monoclonal proteins from a clonal B-cell or plasma-cell population injure the kidney in several distinct ways.
  • Monoclonal gammopathy of renal significance (MGRS) is a small clone that causes kidney disease despite not meeting myeloma criteria.
  • In MGRS, the kidney damage — not the tumour burden — drives treatment.
  • Myeloma cast nephropathy is acute kidney injury from free light chains precipitating as casts in the distal tubule.
  • AL amyloidosis deposits light-chain fibrils causing nephrotic syndrome (Congo-red positive).
  • Light-chain deposition disease deposits non-fibrillar light chains, causing nodular glomerulosclerosis.
  • Cryoglobulinemic GN is an immune-complex MPGN with low complement, often hepatitis-C-associated.
  • The paraprotein is detected by serum and urine electrophoresis, immunofixation, and serum free light chains.
  • Biopsy defines the renal lesion and confirms it derives from the monoclonal protein.
  • The marrow characterises the clone, guiding clone-directed therapy.
  • The treatment of paraprotein kidney disease is to treat the clone, reducing the pathogenic protein.
  • Myeloma cast nephropathy needs urgent anti-myeloma therapy to lower light chains, plus supportive care.
  • A monoclonal protein with kidney disease means treat the clone, whatever the tumour burden.
03
Phase A · Level 3

Main Narrative

The medical core. An expert should agree paraprotein-related kidney disease is fully covered here.

Why it matters at the bedside

Amonoclonal protein in the blood is more than a haematology number — it can attack the kidney in half a dozen different ways, and the one idea that ties them together is liberating: treat the clone making the protein, and the kidney often follows. The corollary, the MGRS concept, is just as important: a ‘small’ clone that damages the kidney still needs treating.

The unifying concept and MGRS

  • The unifying idea is that a monoclonal protein — a light chain or whole immunoglobulin from a clonal B-cell or plasma-cell population — injures the kidney, in several distinct patterns. The crucial reframing is monoclonal gammopathy of renal significance (MGRS): a clone too small to meet myeloma criteria can still cause serious kidney disease, and in that case the kidney damage, not the tumour burden, drives the decision to treat. ‘MGUS’ is no longer ‘undetermined significance’ once the kidney is involved.

Myeloma cast nephropathy

  • Myeloma cast nephropathy — ‘myeloma kidney’ — is the classic acute kidney injury of multiple myeloma: a flood of free light chains precipitates with Tamm-Horsfall protein in the distal tubule, forming obstructing casts. It is a tubular, not glomerular, lesion. Its treatment is urgent reduction of the light chains by anti-myeloma therapy, alongside supportive care (hydration, stopping nephrotoxins, treating hypercalcemia) — and the kidney can recover if the light chains fall fast enough.

AL amyloidosis and light-chain deposition disease

  • Two deposition diseases sit beside cast nephropathy. AL amyloidosis (the amyloid of the diabetic-and-other chapter) deposits light-chain-derived fibrils that are Congo-red positive, presenting with nephrotic syndrome. Light-chain deposition disease (the commonest monoclonal immunoglobulin deposition disease) deposits non-fibrillar, Congo-red-negative light chains along basement membranes, producing nodular glomerulosclerosis with proteinuria and progressive CKD. Both are treated by treating the clone.

Cryoglobulinemic GN

  • Cryoglobulinemic glomerulonephritis is the immune-complex face of the monoclonal kidney: cryoglobulins (monoclonal, or mixed and often hepatitis-C-associated) deposit and produce a membranoproliferative pattern with a low complement (the complement chapter), often with systemic vasculitis and palpable purpura. It is treated by addressing its cause — hepatitis C antivirals, clone-directed therapy — with immunosuppression or plasma exchange for severe disease.

Detecting the paraprotein

  • The diagnostic first step is to find the monoclonal protein: serum and urine protein electrophoresis, immunofixation (which confirms and types it), and serum free light chains with the kappa/lambda ratio (which quantify it and track the response to treatment). A bone marrow examination characterises the clone. Without detecting the paraprotein, the renal lesion's cause is missed.

Biopsy and linking to the clone

  • The renal biopsy defines the lesion — cast, amyloid, deposition, cryoglobulinemic, or other — with Congo red for amyloid and electron microscopy distinguishing fibrillar from non-fibrillar deposits. Crucially, it demonstrates light-chain restriction (kappa or lambda), confirming that the lesion derives from the monoclonal protein. This linkage — lesion to clone — is what establishes MGRS and justifies clone-directed treatment.

Treating the clone

  • The treatment, across the spectrum, is to treat the clone — reducing the pathogenic protein at its source. The regimen is matched to the clone: anti-plasma-cell therapy (for example, bortezomib-based) for plasma-cell clones, and anti-B-cell therapy (for example, rituximab-based) for B-cell or lymphoplasmacytic clones. This is co-managed with haematology, and — the MGRS principle — a small clone causing kidney disease is treated even though its tumour burden would not, by itself, warrant therapy.

Managing myeloma cast nephropathy urgently

  • Cast nephropathy is the most time-pressured of these diseases: the obstructing casts and ongoing light-chain toxicity destroy the kidney unless the light chains are brought down quickly. So anti-myeloma therapy is started urgently to cut the light-chain production, with supportive measures (volume, avoiding nephrotoxins and further precipitation, treating hypercalcemia) — the faster the light chains fall, the better the chance of renal recovery.

The ‘treat the clone’ principle

  • The chapter resolves to a single, portable rule: a monoclonal protein plus kidney disease means treat the clone, whatever the tumour burden. Identify the protein (electrophoresis, free light chains), define the lesion (biopsy, with light-chain restriction), and treat the clone making it. It is the principle that turns a bewildering set of monoclonal kidney diseases into one coherent approach.
04
Phase A · Level 4

Reference Tables

Five fully-built tables.

Table A — The unifying concept and MGRS

ConceptNote
The kidney as targetMonoclonal proteins frequently injure the kidney
The proteinA light chain or whole immunoglobulin from a clonal population
MGRSA small clone causing kidney disease (not meeting myeloma criteria)
The principleKidney damage — not tumour burden — drives treatment
TreatmentTreat the clone (clone-directed)
Co-managementWith haematology

Table B — The spectrum of lesions

LesionNote
Myeloma cast nephropathyLight-chain casts in the distal tubule → AKI (‘myeloma kidney’)
AL amyloidosisLight-chain fibrils → nephrotic (Congo red) (Chapter 7)
Light-chain deposition diseaseNon-fibrillar deposits → nodular glomerulosclerosis
Cryoglobulinemic GNImmune-complex MPGN; low complement; hepatitis C
OtherProliferative GN with monoclonal Ig; fibrillary; light-chain Fanconi

Table C — Detecting the paraprotein

TestNote
Serum/urine protein electrophoresisDetect the monoclonal protein
ImmunofixationConfirms and types the paraprotein
Serum free light chains (κ/λ ratio)Quantify; track the response
Bone marrowCharacterise the clone
Imaging / skeletal surveyMyeloma assessment

Table D — Biopsy and diagnosis

ElementNote
Define the lesionCast / amyloid / deposition / cryoglobulinemic / other
Congo redAmyloid (apple-green birefringence)
Electron microscopyFibrillar vs non-fibrillar deposits
Light-chain restrictionLinks the lesion to the clone (κ or λ)
MGRS confirmationThe lesion derives from the monoclonal protein

Table E — Treatment

SettingTreatment
GeneralTreat the clone (clone-directed; co-manage with haematology)
Plasma-cell cloneAnti-plasma-cell therapy (e.g., bortezomib-based)
B-cell / lymphoplasmacytic cloneAnti-B-cell therapy (e.g., rituximab-based)
Myeloma cast nephropathyUrgent anti-myeloma; hydration; stop nephrotoxins; treat hypercalcemia
Cryoglobulinemic GNTreat the cause (hepatitis C antivirals; clone; ± IS / plasma exchange)

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging and Algorithm Flowcharts

Figure 14.1 — The monoclonal kidney
Figure 14.1 — The monoclonal kidney
Figure 14.2 — Myeloma cast nephropathy
Figure 14.2 — Myeloma cast nephropathy
Flowchart 14.A — Kidney disease with a paraprotein
Flowchart 14.A — Kidney disease with a paraprotein
Flowchart 14.B — The lesion patterns
Flowchart 14.B — The lesion patterns

PHASE B · LEVEL 6 · VISUALISE & MAP

Concept Maps

Causal chains, each ending in a named action.

Chain 1 — One source, many injuries

A clonal population produces a monoclonal protein → several distinct renal injuries → kidney disease → ACTION: treat the clone (MGRS), whatever the tumour burden.

Chain 2 — The obstructing cast

A flood of free light chains → precipitation with Tamm-Horsfall protein in the distal tubule → obstructing casts → AKI (myeloma kidney) → ACTION: urgently reduce the light chains (anti-myeloma).

Chain 3 — The fibril

Light chains misfold into fibrils → Congo-red-positive amyloid deposits → nephrotic syndrome → ACTION: treat the clone (and confirm with Congo red).

Chain 4 — The non-fibrillar deposit

Light chains deposit non-fibrillar along basement membranes → nodular glomerulosclerosis (light-chain deposition disease) → proteinuria/CKD → ACTION: treat the clone.

Chain 5 — The cryoglobulin

Cryoglobulins (monoclonal/mixed, often hepatitis-C-associated) → immune-complex MPGN with low complement → cryoglobulinemic GN → ACTION: treat the cause (hepatitis C / the clone).

07
Phase B · Level 7

Clinical Decision Pathways

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

R1
IF kidney disease occurs with a monoclonal protein, THEN consider a paraprotein-related kidney disease (MGRS).
R2
IF a small clone causes kidney disease, THEN treat it (MGRS) regardless of tumour burden.
R3
IF AKI in myeloma with free light chains, THEN suspect cast nephropathy — start urgent anti-myeloma therapy.
R4
IF nephrotic with Congo-red-positive deposits, THEN it is AL amyloidosis (Chapter 7).
R5
IF nodular glomerulosclerosis with non-fibrillar light-chain deposits, THEN it is light-chain deposition disease.
R6
IF MPGN with low complement and cryoglobulins, THEN it is cryoglobulinemic GN — treat the cause.
R7
IF investigating, THEN detect the paraprotein (SPEP/UPEP, immunofixation, free light chains) and biopsy.
R8
IF treating, THEN direct therapy at the clone, co-managing with haematology.

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 1COMPLEX

AKI in myelomaCast nephropathy

Presentation

A patient with multiple myeloma develops acute kidney injury, with very high serum free light chains.

Pause and reflect

Before reading on: what is the lesion, and how fast must you act?

Analysis

AKI in myeloma with a flood of free light chains is myeloma cast nephropathy — light chains precipitating as obstructing distal-tubular casts. It is time-critical: urgent anti-myeloma therapy to cut the light chains, with supportive care (hydration, stopping nephrotoxins, treating hypercalcemia). The faster the light chains fall, the better the chance of renal recovery.

Management plan

  1. Recognise cast nephropathy (myeloma + high free light chains) (R3).
  2. Start urgent anti-myeloma therapy to cut light chains (R3, R8).
  3. Supportive: hydration, stop nephrotoxins, treat hypercalcemia.

Teaching points

  • AKI in myeloma + high free light chains = cast nephropathy — cut the light chains urgently.

Cross-reference: exercises R3, R8.

CASE 2COMPLEX

A small clone, real kidney diseaseMGRS

Presentation

A patient has a kidney lesion shown to derive from a monoclonal protein, but the clone is small and does not meet myeloma criteria.

Pause and reflect

Before reading on: is this a benign gammopathy to watch?

Analysis

This is monoclonal gammopathy of renal significance (MGRS): a clone too small to warrant treatment on tumour-burden grounds, but causing genuine kidney disease — so the kidney damage drives treatment. It is treated with clone-directed therapy (co-managed with haematology), reframing what would otherwise be called a benign ‘MGUS’.

Management plan

  1. Recognise MGRS (lesion derives from a small clone) (R1, R2).
  2. Treat the clone despite low tumour burden (R2, R8).
  3. Co-manage with haematology.

Teaching points

  • A small clone causing kidney disease is MGRS — treat it; the kidney, not tumour burden, decides.

Cross-reference: exercises R1, R2, R8.

CASE 3COMPLEX

Nephrotic with Congo-red depositsAL amyloidosis

Presentation

A patient with nephrotic syndrome has a biopsy showing Congo-red-positive deposits, and a monoclonal light chain is found.

Pause and reflect

Before reading on: what is this, and what is the treatment target?

Analysis

Congo-red-positive deposits with a monoclonal light chain are AL amyloidosis (the amyloid chapter) — light-chain-derived fibrils causing nephrotic syndrome. The treatment target is the source: anti-plasma-cell therapy to reduce the pathogenic light chain. As with the other deposition diseases, you treat the clone.

Management plan

  1. Recognise AL amyloid (Congo red + monoclonal light chain) (R4).
  2. Detect and quantify the paraprotein (free light chains) (R7).
  3. Treat the clone (anti-plasma-cell) (R8).

Teaching points

  • Congo-red+ deposits + a monoclonal light chain = AL amyloid — treat the clone.

Cross-reference: exercises R4, R7, R8; see Chapter 7.

CASE 4COMPLEX

Nodular sclerosis, no diabetesLight-chain deposition disease

Presentation

A non-diabetic patient has nodular glomerulosclerosis with non-fibrillar (Congo-red-negative) light-chain deposits along basement membranes.

Pause and reflect

Before reading on: nodular sclerosis means diabetes, right?

Analysis

Nodular glomerulosclerosis is not only diabetic — in a non-diabetic with non-fibrillar, Congo-red-negative light-chain deposits, it is light-chain deposition disease (the commonest monoclonal immunoglobulin deposition disease). Confirming light-chain restriction links it to the clone, and the treatment is clone-directed.

Management plan

  1. Recognise light-chain deposition disease (non-fibrillar nodular sclerosis) (R5).
  2. Confirm light-chain restriction; detect the paraprotein (R7).
  3. Treat the clone (R8).

Teaching points

  • Non-fibrillar nodular sclerosis in a non-diabetic = light-chain deposition disease — treat the clone.

Cross-reference: exercises R5, R7, R8; see Chapter 7.

CASE 5COMPLEX

MPGN, low complement, purpuraCryoglobulinemic GN

Presentation

A patient with hepatitis C has an MPGN pattern, a low complement, palpable purpura, and detectable cryoglobulins.

Pause and reflect

Before reading on: what links these features, and what is treated?

Analysis

An MPGN pattern with a low complement, purpura, and cryoglobulins — often hepatitis-C-associated — is cryoglobulinemic glomerulonephritis, the immune-complex face of the monoclonal kidney. Treatment is cause-directed: hepatitis C antivirals and/or clone-directed therapy, with immunosuppression or plasma exchange reserved for severe disease.

Management plan

  1. Recognise cryoglobulinemic GN (MPGN, low complement, cryoglobulins) (R6).
  2. Treat the cause (hepatitis C antivirals; clone) (R6, R8).
  3. Immunosuppression / plasma exchange if severe.

Teaching points

  • MPGN + low complement + cryoglobulins (hep C) = cryoglobulinemic GN — treat the cause.

Cross-reference: exercises R6, R8; see Chapter 11.

09
Phase C · Level 9

Clinical Implications

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

MECHANISM

A clonal population produces a kidney-toxic monoclonal protein.

WHY IT MATTERS

The same protein causes several renal lesions.

ACTION

Treat the clone, whatever the tumour burden (MGRS).

MECHANISM

Free light chains precipitate as distal-tubular casts.

WHY IT MATTERS

Obstruction causes AKI (myeloma kidney).

ACTION

Reduce the light chains urgently with anti-myeloma therapy.

MECHANISM

Light chains misfold into fibrils.

WHY IT MATTERS

Congo-red-positive amyloid causes nephrotic syndrome.

ACTION

Treat the clone (and confirm with Congo red).

MECHANISM

Light chains deposit non-fibrillar along membranes.

WHY IT MATTERS

Nodular glomerulosclerosis (LCDD) results.

ACTION

Treat the clone.

MECHANISM

Cryoglobulins form immune complexes.

WHY IT MATTERS

An MPGN with low complement results.

ACTION

Treat the cause (hepatitis C / the clone).

10
Phase C · Level 10

Clinical Pearls

Exhaustive. Every rule in the chapter is here.

A monoclonal protein injures the kidney several ways.
MGRS: a small clone causing kidney disease.
Kidney damage — not tumour burden — drives treatment.
Cast nephropathy = light-chain casts → AKI (myeloma kidney).
Cast nephropathy is tubular, not glomerular.
AL amyloid = light-chain fibrils, Congo-red positive, nephrotic.
Light-chain deposition disease = non-fibrillar, nodular sclerosis.
Cryoglobulinemic GN = MPGN + low complement (hep C).
Detect the paraprotein: SPEP/UPEP, immunofixation, free light chains.
Biopsy defines the lesion; light-chain restriction links it to the clone.
Treat the clone (clone-directed; co-manage haematology).
Cast nephropathy: urgent anti-myeloma + supportive.
Cryoglobulinemic GN: treat the cause (hep C / clone).
Monoclonal protein + kidney disease = treat the clone.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags and NEVER DO

Panel A — Red flags

AKI in myeloma with high free light chains — cast nephropathy (treat urgently).
A clone with kidney disease — MGRS, not a benign gammopathy.
Nodular glomerulosclerosis in a non-diabetic — consider light-chain deposition disease.
MPGN with a low complement and cryoglobulins — cryoglobulinemic GN.

Panel B — NEVER DO

NEVER — dismiss a small clone with kidney disease as benign — it is MGRS and needs treating.
NEVER — delay anti-myeloma therapy in cast nephropathy.
NEVER — omit the paraprotein workup (SPEP/UPEP, free light chains).
NEVER — treat the renal lesion without treating the clone that causes it.
NEVER — assume nodular glomerulosclerosis is always diabetic.
12
Phase D · Level 12

Common Pitfalls

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

WRONG Calling a clone with kidney disease a benign ‘MGUS’.
RIGHT Recognise MGRS and treat the clone.
WHY The kidney damage warrants treatment.
WRONG Delaying anti-myeloma in cast nephropathy.
RIGHT Start it urgently to cut light chains.
WHY Faster light-chain reduction salvages the kidney.
WRONG Missing the paraprotein.
RIGHT Send SPEP/UPEP, immunofixation, and free light chains.
WHY Without it the cause is missed.
WRONG Treating the renal lesion but not the clone.
RIGHT Direct therapy at the clone.
WHY It addresses the source of the protein.
WRONG Assuming nodular sclerosis means diabetes.
RIGHT Consider light-chain deposition disease.
WHY Monoclonal deposits also cause nodular sclerosis.
WRONG Overlooking cryoglobulinemia / hepatitis C.
RIGHT Screen for it in MPGN with low complement.
WHY It is a treatable cause.
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
Treating the clone improves renal outcomes in paraprotein kidney disease.BObservational and cohort data.
Urgent light-chain reduction improves recovery in cast nephropathy.BObservational data.
Serum free light chains and electrophoresis detect the paraprotein.AEstablished assay data.
Congo-red staining diagnoses amyloid.AEstablished pathology.
Cryoglobulinemic GN responds to treating the cause (e.g., hepatitis C).AAntiviral outcome data.
The MGRS concept directs treatment by kidney involvement, not tumour burden.Consensus framework.

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
Renal recovery in cast nephropathy, slow vs rapid light-chain reductionslowrapidBetter with rapid reductionSee L13 — Grade B
Renal outcome, no clone treatment vs clone-directed therapyno treatmentclone-directedBetter with treating the cloneSee L13 — Grade B
Cryoglobulinemic GN, untreated cause vs treated (e.g., hepatitis C)untreatedtreatedBetter with treating the causeSee L13 — Grade A

Reading the table

The pattern is consistent across the spectrum: outcomes improve when the source is addressed — the light chains cut fast in cast nephropathy, the clone treated in MGRS, the cause treated in cryoglobulinemic GN — which is the whole point of ‘treat the clone’. 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 — Paraprotein kidney disease workup note

  • Renal presentation: AKI / nephrotic / nodular sclerosis / MPGN ___.
  • Paraprotein: SPEP/UPEP; immunofixation; serum free light chains (κ/λ) ___.
  • Bone marrow / clone characterisation: ___.
  • Biopsy lesion: cast / amyloid (Congo red) / LCDD / cryo / other; light-chain restriction ___.
  • MGRS confirmed (lesion derives from the clone)? ___.

Template 2 — Clone-directed treatment / co-management note

  • Clone type: plasma-cell vs B-cell / lymphoplasmacytic ___.
  • Clone-directed therapy: anti-plasma-cell (bortezomib-based) / anti-B-cell (rituximab-based) ___.
  • Cast nephropathy: urgent anti-myeloma; hydration; nephrotoxins stopped; hypercalcemia treated ___.
  • Cryoglobulinemic GN: hepatitis C antivirals / clone / IS / plasma exchange ___.
  • Haematology co-management; free-light-chain response monitored ___.
18
Phase F · Level 18

High-Yield Cheat Sheet

Pre-rounds compression. Rules only.

Monoclonal protein → many renal lesions.
MGRS: small clone, real kidney disease → treat it.
Kidney damage drives treatment, not tumour burden.
Cast nephropathy: light-chain casts → AKI (urgent).
AL amyloid: fibrils, Congo-red+, nephrotic.
LCDD: non-fibrillar, nodular sclerosis.
Cryoglobulinemic GN: MPGN + low complement (hep C).
Detect: SPEP/UPEP, immunofixation, free light chains.
Biopsy + light-chain restriction links lesion to clone.
Treat the clone (co-manage haematology).
Cast nephropathy: urgent anti-myeloma.
Monoclonal protein + kidney disease = treat the clone.
19
Phase F · Level 19

Flashcards

Active recall. At least one card per objective.

CARD 1

Q. How do monoclonal proteins injure the kidney, and what is MGRS?

Show answer

A. A light chain or whole immunoglobulin from a clonal population injures the kidney in several distinct ways; monoclonal gammopathy of renal significance (MGRS) is a small clone that causes kidney disease despite not meeting myeloma criteria — the kidney damage, not the tumour burden, drives treatment.

DETAILED. ‘MGUS’ is reframed once the kidney is involved.

CLINICAL. The unifying treatment is to treat the clone.

CARD 2

Q. What is myeloma cast nephropathy?

Show answer

A. ‘Myeloma kidney’ — AKI from free light chains precipitating with Tamm-Horsfall protein as obstructing casts in the distal tubule; a tubular, not glomerular, lesion.

DETAILED. It is the classic AKI of multiple myeloma.

CLINICAL. The kidney can recover if light chains fall fast.

CARD 3

Q. How do AL amyloidosis and light-chain deposition disease differ?

Show answer

A. Both deposit light chains, but AL amyloid forms Congo-red-positive fibrils causing nephrotic syndrome, while light-chain deposition disease deposits non-fibrillar (Congo-red-negative) light chains causing nodular glomerulosclerosis.

DETAILED. Electron microscopy distinguishes fibrillar from non-fibrillar.

CLINICAL. Both are treated by treating the clone.

CARD 4

Q. What is cryoglobulinemic GN?

Show answer

A. An immune-complex MPGN with a low complement, from cryoglobulins (monoclonal or mixed, often hepatitis-C-associated), frequently with systemic vasculitis and purpura.

DETAILED. It is the immune-complex face of the monoclonal kidney.

CLINICAL. It is treated by addressing its cause.

CARD 5

Q. How is the paraprotein detected?

Show answer

A. By serum and urine protein electrophoresis, immunofixation (which confirms and types it), and serum free light chains with the kappa/lambda ratio (which quantify and track it), plus a bone marrow to characterise the clone.

DETAILED. Without detecting it, the cause is missed.

CLINICAL. Free light chains track the response to treatment.

CARD 6

Q. What does the biopsy add?

Show answer

A. It defines the lesion (cast, amyloid, deposition, cryoglobulinemic) — with Congo red for amyloid and electron microscopy for fibrillar vs non-fibrillar deposits — and demonstrates light-chain restriction, linking the lesion to the clone.

DETAILED. This linkage establishes MGRS.

CLINICAL. It justifies clone-directed treatment.

CARD 7

Q. What is the treatment of paraprotein kidney disease?

Show answer

A. To treat the clone — reducing the pathogenic protein at its source — matched to the clone (anti-plasma-cell for plasma-cell clones, anti-B-cell for B-cell clones), co-managed with haematology.

DETAILED. A small clone causing kidney disease is treated despite low tumour burden.

CLINICAL. It is the unifying principle.

CARD 8

Q. How is myeloma cast nephropathy managed urgently?

Show answer

A. With urgent anti-myeloma therapy to cut light-chain production, plus supportive care (volume, stopping nephrotoxins and precipitation, treating hypercalcemia) — the faster the light chains fall, the better the renal recovery.

DETAILED. It is the most time-pressured of these diseases.

CLINICAL. Casts and light-chain toxicity destroy the kidney otherwise.

CARD 9

Q. What is the portable ‘treat the clone’ principle?

Show answer

A. A monoclonal protein plus kidney disease means treat the clone, whatever the tumour burden — identify the protein (electrophoresis, free light chains), define the lesion (biopsy, light-chain restriction), and treat the clone making it.

DETAILED. It unifies the monoclonal kidney diseases.

CLINICAL. The kidney decides, not the tumour burden.

20
Phase F · Level 20

One-Minute Preceptor

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

SCENE 1
A 'benign' gammopathy?
GET A COMMITMENTAsk: “Small clone, doesn't meet myeloma criteria, but there's a kidney lesion from it — just monitor?”
PROBE“What does the kidney involvement change about ‘undetermined significance’?”
TEACHIt becomes MGRS — the kidney damage drives treatment; treat the clone.
REINFORCE“Right — a clone with kidney disease isn't benign.”
CORRECT ERRORSIf they planned to watch, invoke MGRS.
SCENE 2
AKI in myeloma
GET A COMMITMENTAsk: “Myeloma, AKI, sky-high free light chains — what's the lesion and the priority?”
PROBE“What is precipitating in the tubule, and how do you stop it?”
TEACHCast nephropathy — cut the light chains urgently with anti-myeloma therapy, plus support.
REINFORCE“Exactly — lower the light chains fast to save the kidney.”
CORRECT ERRORSIf they delayed treatment, stress the salvage window.
22
Phase F · Level 22

Board-Style Q&A

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

Q 01
Monoclonal gammopathy of renal significance (MGRS) means:

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

Q 02
Myeloma cast nephropathy is:

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

Q 03
Congo-red-positive deposits with a monoclonal light chain indicate:

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

Q 04
Nodular glomerulosclerosis with non-fibrillar, Congo-red-negative light-chain deposits in a non-diabetic is:

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

Q 05
Cryoglobulinemic GN typically shows:

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Q 06
The paraprotein is detected by:

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Q 07
The unifying treatment of paraprotein-related kidney disease is to:

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Q 08
Myeloma cast nephropathy is managed by:

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Q 09
In Flowchart 14.A, biopsy shows a renal lesion with light-chain restriction deriving from a small clone that does not meet myeloma criteria. The pathway directs you to:

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