15

KIDNEY TRANSPLANTATION

Chapter 15

Malignancy & PTLD

Skin Cancer, Lymphoma & Surveillance

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 (primary) — the chapter recognises and screens for the post-transplant cancers.
  • Sig-T therapeutic — it treats them, beginning with reducing immunosuppression.
  • Sig-M mechanistic — impaired immune surveillance and EBV-driven proliferation underlie the risk.

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 — cancer surveillance and treatment are effective-care, not preference-sensitive. L21 — no contested tension specific to this chapter. Pre-transplant cancer-free interval and HPV vaccination (Chapter 4), the EBV thread (Chapter 14), and mTOR inhibitors (Chapter 9) 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 why immunosuppression increases cancer risk.
  2. 2. Identify the cancer spectrum after transplant.
  3. 3. Recognise skin cancer as the most common malignancy.
  4. 4. Explain the EBV-driven mechanism of PTLD.
  5. 5. Recognise and diagnose PTLD.
  6. 6. Treat PTLD, starting with immunosuppression reduction.
  7. 7. Manage skin cancer, including mTOR conversion.
  8. 8. Apply cancer screening and prevention.
  9. 9. Balance immunosuppression against cancer.
02
Phase A · Level 2

Executive Summary

A sixty-second reading. Each bullet stands alone.

  • Immunosuppression impairs immune surveillance, increasing the risk of many cancers, especially virus-associated ones.
  • Skin cancer is by far the most common malignancy after transplant, and squamous cell carcinoma is aggressive.
  • Post-transplant lymphoproliferative disorder is an EBV-driven proliferation of B cells.
  • PTLD risk is highest in EBV-seronegative recipients of seropositive donors (primary infection), especially children.
  • PTLD ranges from polyclonal hyperplasia to monomorphic lymphoma and can involve the graft, gut, and CNS.
  • PTLD is diagnosed by biopsy (with EBV staining and clonality), imaging, and EBV PCR.
  • The first treatment of PTLD is to reduce immunosuppression, restoring T-cell surveillance.
  • Rituximab and chemotherapy are added for more aggressive PTLD.
  • Skin cancer is managed by excision, sun protection, surveillance, and reducing immunosuppression.
  • Conversion to an mTOR inhibitor can reduce recurrent skin cancer.
  • Other virus-associated cancers include Kaposi sarcoma (HHV-8) and HPV-related cancers.
  • Prevention includes vigilant screening, sun protection, HPV vaccination, EBV monitoring, and minimising cumulative immunosuppression.
  • Treating cancer usually means reducing immunosuppression, balanced against rejection risk.
03
Phase A · Level 3

Main Narrative

The medical core. An expert should agree malignancy and PTLD are fully covered here.

Why it matters at the bedside

Cancer is the long shadow of immunosuppression. The same blunting of the immune system that protects the graft also lifts the surveillance that normally catches malignant and virus-transformed cells — so transplant recipients get more cancer, of distinctive kinds, and earlier. The recurring move, opposite to almost everything else, is to treat the cancer by taking immunosuppression away.

Why cancer risk is increased

  • The immune system continuously surveils for malignant and virally-transformed cells; immunosuppression impairs that surveillance, raising the risk of many cancers — most strikingly the virus-associated ones, where a normally-controlled oncogenic virus is unleashed. The risk scales with the cumulative dose and duration of immunosuppression, which is one more reason to minimise it over time.

The cancer spectrum

  • The post-transplant cancer spectrum is distinctive: skin cancer is overwhelmingly the most common; post-transplant lymphoproliferative disorder is the important lymphoid malignancy; and virus-associated cancers — Kaposi sarcoma (HHV-8), HPV-related anogenital and cervical cancer, virus-associated hepatocellular carcinoma — are over-represented. Other solid cancers are modestly increased, and pre-existing recipient cancers (managed by the cancer-free interval) and rare donor-derived cancers complete the picture.

Skin cancer

  • Skin cancer is the commonest malignancy by a wide margin, driven by ultraviolet exposure on a background of immunosuppression. Non-melanoma skin cancer predominates, and — unlike the general population — squamous cell carcinoma outnumbers basal cell and behaves aggressively, with real metastatic potential. Management is excision, rigorous sun protection, and regular dermatologic surveillance, with reduced immunosuppression and mTOR conversion for recurrent or multiple lesions.

PTLD: the mechanism

  • Post-transplant lymphoproliferative disorder is, in most cases, EBV-driven: the Epstein-Barr virus transforms B cells, and immunosuppression removes the T-cell control that normally restrains them, allowing proliferation that ranges from a polyclonal hyperplasia to a frank monomorphic lymphoma. The highest risk is in an EBV-seronegative recipient of a seropositive donor — a primary EBV infection without prior immunity — which is why it disproportionately affects children.

PTLD: recognition and diagnosis

  • PTLD presents variously: lymphadenopathy, a mass, B symptoms (fever, weight loss, sweats), or organ involvement — the graft, gastrointestinal tract, or central nervous system — often with EBV viremia. Diagnosis rests on tissue: biopsy for histology, clonality, and EBV (EBER) staining, with imaging to stage and EBV PCR to support and monitor. It must be actively considered, because its presentations are protean.

PTLD: treatment

  • The first and distinctive step is to reduce immunosuppression — restoring T-cell surveillance, which alone can cause early, polyclonal PTLD to regress. Rituximab (anti-CD20) targets the B cells and is added for CD20-positive disease, and chemotherapy is used for monomorphic or aggressive lymphoma, with surgery or radiation for localised disease. The order — reduce immunosuppression first — is the through-line.

Other virus-associated cancers

  • Beyond skin and PTLD, the virus-associated cancers recur as a theme: Kaposi sarcoma from HHV-8 (which often regresses on reducing immunosuppression or converting to an mTOR inhibitor), HPV-related anogenital and cervical cancers (a reason for pre-transplant HPV vaccination and cervical screening), and virus-associated liver cancer. The pattern reflects the loss of immune control over oncogenic viruses.

Screening and prevention

  • Prevention and surveillance carry much of the burden: vigilant skin surveillance with sun protection (for the commonest cancer), age-appropriate cancer screening pursued more assiduously than in the general population, HPV vaccination and a cancer-free interval before transplant (the evaluation chapter), EBV PCR monitoring in high-risk recipients, and — underlying all — minimising the cumulative immunosuppression that drives the risk.

The role of mTOR inhibitors

  • The mTOR inhibitors occupy a special place here: as antiproliferative agents they appear to carry a lower skin-cancer risk than calcineurin inhibitors and can cause Kaposi sarcoma to regress, so conversion to an mTOR inhibitor is a recognised strategy for recurrent skin cancer and certain virus-associated tumours — immunosuppression with, perhaps, a smaller oncologic price.

The balance

  • The organising principle is the inverse of the rejection chapters: cancer is the cost of immunosuppression, so the response to cancer is generally to reduce immunosuppression — balanced, as ever, against the risk of rejection and graft loss. mTOR conversion offers one way to keep a graft suppressed while lightening the cancer burden; honest weighing of graft against patient is the rest.
04
Phase A · Level 4

Reference Tables

Five fully-built tables.

Table A — The cancer spectrum

CancerNote
Skin cancer (NMSC, esp. SCC)By far the most common; aggressive; sun + immunosuppression
PTLDEBV-driven B-cell proliferation
Kaposi sarcomaHHV-8 associated
HPV-related (anogenital/cervical)Virus-associated
Other solid cancersModestly increased
Recipient / donor-derivedPre-existing (cancer-free interval); donor (rare)

Table B — PTLD

AspectNote
MechanismEBV transforms B cells; loss of T-cell control → proliferation
Highest riskEBV-seronegative recipient, seropositive donor (esp. children)
SpectrumPolyclonal hyperplasia → monomorphic lymphoma
SitesGraft, GI tract, CNS, lymph nodes
DiagnosisBiopsy (histology, clonality, EBV/EBER); imaging; EBV PCR
TreatmentReduce immunosuppression first; rituximab; chemotherapy if aggressive

Table C — Skin cancer

AspectNote
Most commonNon-melanoma (SCC > BCC); SCC aggressive
DriversSun exposure + immunosuppression
ManagementExcision; sun protection; dermatology surveillance
Recurrent / multipleReduce immunosuppression; convert to an mTOR inhibitor

Table D — Screening and prevention

MeasureNote
Skin surveillance + sun protectionFor the most common cancer
Age-appropriate cancer screeningMore vigilant than the general population
HPV vaccinationPre-transplant (Chapter 4)
EBV PCR monitoringHigh-risk (seronegative) for PTLD
Cancer-free interval; minimise cumulative ISPre-transplant (Chapter 4); dose matters

Table E — Treatment principles

PrincipleNote
Reduce immunosuppressionFirst step; restores surveillance (vs rejection risk)
mTOR conversionAntiproliferative; skin cancer / Kaposi
Rituximab / chemotherapyPTLD (by aggressiveness)
Standard oncologic careSurgery / radiation / systemic therapy

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging and Algorithm Flowcharts

Figure 15.1 — Impaired surveillance to cancer
Figure 15.1 — Impaired surveillance to cancer
Figure 15.2 — EBV to PTLD
Figure 15.2 — EBV to PTLD
Flowchart 15.A — Suspected PTLD
Flowchart 15.A — Suspected PTLD
Flowchart 15.B — Skin cancer management
Flowchart 15.B — Skin cancer management
06
Phase B · Level 6

Concept Maps

Causal chains, each ending in a named action.

Chain 1 — Lost surveillance

Immunosuppression → impaired immune surveillance → malignant/virus-transformed cells escape → cancer → ACTION: reduce immunosuppression to treat (and minimise cumulative dose).

Chain 2 — EBV unleashed

EBV transforms B cells + loss of T-cell control → proliferation → PTLD → ACTION: reduce immunosuppression to restore surveillance; add rituximab.

Chain 3 — Primary EBV

EBV-seronegative recipient + seropositive donor → primary EBV without immunity → high PTLD risk (especially children) → ACTION: monitor EBV PCR and reduce immunosuppression if it rises.

Chain 4 — Sun and suppression

Ultraviolet exposure + immunosuppression → aggressive squamous cell carcinoma → metastatic potential → ACTION: sun protection, dermatologic surveillance, and mTOR conversion for recurrence.

Chain 5 — The antiproliferative option

mTOR inhibitors are antiproliferative → lower skin-cancer risk and Kaposi regression → immunosuppression with a smaller oncologic price → ACTION: convert to an mTOR inhibitor for recurrent skin cancer / Kaposi.

07
Phase B · Level 7

Clinical Decision Pathways

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

R1
IF a patient is immunosuppressed, THEN expect an increased cancer risk and screen vigilantly.
R2
IF there are skin lesions, THEN refer to dermatology — squamous cell carcinoma is aggressive; excise and protect from sun.
R3
IF skin cancers are recurrent or multiple, THEN consider conversion to an mTOR inhibitor and reduce immunosuppression.
R4
IF PTLD is suspected, THEN biopsy (histology, clonality, EBV) and check EBV PCR.
R5
IF PTLD is confirmed, THEN reduce immunosuppression first.
R6
IF PTLD is CD20-positive, monomorphic, or does not regress, THEN add rituximab and/or chemotherapy.
R7
IF a recipient is EBV-seronegative (especially a child), THEN monitor EBV PCR and reduce immunosuppression if it rises.
R8
IF treating any post-transplant cancer, THEN reduce immunosuppression, balanced against rejection risk.

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

Crops of skin cancersAggressive SCC

Presentation

A long-term, sun-exposed recipient develops repeated, multiple squamous cell carcinomas.

Pause and reflect

Before reading on: excision alone, or is there more to do?

Analysis

Recurrent, multiple SCCs in an immunosuppressed, sun-exposed patient call for more than serial excision: rigorous sun protection and dermatologic surveillance, reduced immunosuppression, and conversion to an mTOR inhibitor — which carries a lower skin-cancer risk than a calcineurin inhibitor. SCC here is aggressive and not to be underestimated.

Management plan

  1. Excise; intensify sun protection and surveillance (R2).
  2. Reduce immunosuppression; convert to an mTOR inhibitor (R3).
  3. Treat aggressively given SCC's metastatic potential.

Teaching points

  • Recurrent SCC → sun protection, reduced IS, and mTOR conversion — not just excision.

Cross-reference: exercises R2, R3; see Chapter 9.

CASE 2COMPLEX

A seronegative child, rising EBVPTLD

Presentation

An EBV-seronegative pediatric recipient of a seropositive donor has a rising EBV PCR and develops lymphadenopathy.

Pause and reflect

Before reading on: what is the diagnosis, and what is the first treatment?

Analysis

An EBV-seronegative child receiving a seropositive donor has the highest PTLD risk (primary EBV without immunity); rising EBV PCR with lymphadenopathy is PTLD until disproven. After biopsy confirms it, the first treatment is to reduce immunosuppression — which can regress early, polyclonal disease — with rituximab added for CD20-positive disease.

Management plan

  1. Recognise the highest-risk setting; biopsy and EBV PCR (R4, R7).
  2. Reduce immunosuppression first (R5).
  3. Add rituximab (CD20+) / chemotherapy if aggressive (R6).

Teaching points

  • EBV-seronegative child + seropositive donor = highest PTLD risk — reduce IS first.

Cross-reference: exercises R4, R5, R6, R7; see Chapter 14.

CASE 3COMPLEX

B symptoms and a massDiagnosing PTLD

Presentation

A recipient presents with fever, weight loss, night sweats, and an abdominal mass, with EBV viremia.

Pause and reflect

Before reading on: how do you establish the diagnosis?

Analysis

B symptoms, a mass, and EBV viremia in a transplant recipient are PTLD until proven otherwise — but the diagnosis rests on tissue: a biopsy for histology, clonality, and EBV (EBER) staining, with imaging to stage and EBV PCR to support. PTLD's protean presentations mean it must be actively sought.

Management plan

  1. Suspect PTLD; biopsy with EBV/clonality, imaging, EBV PCR (R4).
  2. Stage and characterise (polyclonal vs monomorphic).
  3. Treat by aggressiveness, reducing IS first (R5, R6).

Teaching points

  • B symptoms + mass + EBV viremia = PTLD — confirm on biopsy with EBER and clonality.

Cross-reference: exercises R4, R5, R6.

CASE 4COMPLEX

Violaceous skin plaquesKaposi sarcoma

Presentation

A recipient develops violaceous skin and mucosal plaques; biopsy confirms Kaposi sarcoma (HHV-8).

Pause and reflect

Before reading on: what is the key first move?

Analysis

Kaposi sarcoma is an HHV-8-driven, virus-associated cancer of the immunosuppressed — and it often regresses simply on reducing immunosuppression or converting to an mTOR inhibitor, which has both immunosuppressive and antiproliferative effects. As with the other virus-associated cancers, the first lever is the immunosuppression itself.

Management plan

  1. Recognise HHV-8 Kaposi sarcoma (R1).
  2. Reduce immunosuppression; convert to an mTOR inhibitor (R3, R8).
  3. Add oncologic therapy if extensive.

Teaching points

  • Kaposi sarcoma often regresses on reduced immunosuppression / mTOR conversion.

Cross-reference: exercises R3, R8.

CASE 5COMPLEX

Cancer versus the graftThe balance

Presentation

A recipient with a new malignancy needs immunosuppression reduced to treat it, but is at meaningful risk of rejection.

Pause and reflect

Before reading on: how do you weigh cancer treatment against the graft?

Analysis

Treating cancer generally means reducing immunosuppression to restore surveillance — the inverse of rejection management — which raises rejection risk. The reduction is titrated to the cancer's severity, mTOR conversion can keep the graft suppressed with a smaller oncologic price, and an honest weighing of graft against patient guides how far to go.

Management plan

  1. Reduce immunosuppression to treat the cancer (R8).
  2. Consider mTOR conversion to balance graft and cancer (R3).
  3. Monitor for rejection; weigh graft vs patient honestly.

Teaching points

  • Cancer is treated by reducing immunosuppression — the opposite of rejection — balanced against graft loss.

Cross-reference: exercises R3, R8.

09
Phase C · Level 9

Clinical Implications

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

MECHANISM

Immunosuppression blunts immune surveillance.

WHY IT MATTERS

Malignant and virus-transformed cells escape.

ACTION

Reduce immunosuppression to treat cancer; minimise the cumulative dose.

MECHANISM

EBV transforms B cells once T-cell control is lost.

WHY IT MATTERS

PTLD proliferates from hyperplasia to lymphoma.

ACTION

Reduce immunosuppression first; add rituximab.

MECHANISM

A seronegative recipient meets EBV for the first time.

WHY IT MATTERS

Primary EBV gives the highest PTLD risk.

ACTION

Monitor EBV PCR and reduce immunosuppression if it rises.

MECHANISM

Ultraviolet light plus immunosuppression transforms skin.

WHY IT MATTERS

Squamous cell carcinoma is common and aggressive.

ACTION

Sun protection, surveillance, and mTOR conversion.

MECHANISM

mTOR inhibitors are antiproliferative.

WHY IT MATTERS

They carry a lower skin-cancer risk and regress Kaposi.

ACTION

Convert to an mTOR inhibitor for recurrent skin cancer or Kaposi.

10
Phase C · Level 10

Clinical Pearls

Exhaustive. Every rule in the chapter is here.

Immunosuppression → impaired surveillance → more cancer.
Risk scales with cumulative immunosuppression.
Skin cancer is the most common (SCC > BCC; aggressive).
PTLD = EBV-driven B-cell proliferation.
Highest PTLD risk: EBV-seronegative recipient + seropositive donor (children).
PTLD spectrum: polyclonal hyperplasia → monomorphic lymphoma.
Diagnose PTLD: biopsy (EBER, clonality), imaging, EBV PCR.
PTLD treatment: reduce immunosuppression FIRST.
Add rituximab (CD20+) / chemotherapy if aggressive.
Skin cancer: excise, sun protect, surveil; reduce IS.
mTOR conversion: lower skin-cancer risk; Kaposi regression.
Kaposi (HHV-8); HPV-related cancers; virus-associated pattern.
Prevent: surveillance, sun protection, HPV vaccine, EBV monitoring.
Treat cancer by reducing immunosuppression (vs rejection risk).

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags and NEVER DO

Panel A — Red flags

A new, growing, or non-healing skin lesion — squamous cell carcinoma (aggressive).
Lymphadenopathy, a mass, or B symptoms — PTLD.
A rising EBV PCR in a seronegative recipient — impending PTLD.
CNS or gastrointestinal involvement — extranodal PTLD.

Panel B — NEVER DO

NEVER — treat PTLD without first reducing immunosuppression.
NEVER — dismiss an aggressive or recurrent skin lesion.
NEVER — maintain heavy immunosuppression in a patient with active cancer.
NEVER — neglect skin surveillance and sun protection.
NEVER — forget that EBV-seronegative recipients are at the highest PTLD risk.
12
Phase D · Level 12

Common Pitfalls

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

WRONG Maintaining full immunosuppression while treating PTLD.
RIGHT Reduce immunosuppression first.
WHY It restores the T-cell surveillance that controls EBV.
WRONG Treating recurrent SCC with serial excision alone.
RIGHT Add sun protection, reduced IS, and mTOR conversion.
WHY SCC is aggressive and immunosuppression-driven.
WRONG Keeping heavy immunosuppression in active cancer.
RIGHT Reduce it, balanced against rejection.
WHY Cancer is the cost of immunosuppression.
WRONG Not monitoring EBV in a seronegative recipient.
RIGHT Use EBV PCR surveillance.
WHY Primary EBV is the highest PTLD risk.
WRONG Overlooking sun protection and skin surveillance.
RIGHT Make them routine.
WHY Skin cancer is the commonest malignancy.
WRONG Ignoring cumulative immunosuppression in cancer risk.
RIGHT Minimise it over time.
WHY Cancer risk scales with the cumulative dose.
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
Immunosuppression increases cancer risk via impaired surveillance.ALarge registry and mechanistic data.
Skin cancer is the most common post-transplant malignancy.ARegistry data.
PTLD is EBV-driven and treated first by reducing immunosuppression.BObservational data and consensus.
EBV-seronegative recipients carry the highest PTLD risk.AConsistent observational data.
mTOR inhibitors reduce skin-cancer risk versus calcineurin inhibitors.BRandomised and observational data.
Rituximab and chemotherapy treat CD20-positive/aggressive PTLD.BTrials and cohort 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
Cancer risk, transplant vs general populationgeneral populationtransplantHigher (esp. skin/virus-associated)See L13 — Grade A
PTLD, EBV-seronegative vs seropositive recipientseropositiveseronegativeHigher with primary EBVSee L13 — Grade A
Skin cancer, mTOR inhibitor vs calcineurin inhibitorCNImTOR inhibitorLower with an mTOR inhibitorSee L13 — Grade B

Reading the table

Cancer risk is real and patterned — raised overall, highest for virus-associated tumours, and steepest for PTLD in the EBV-naive — and the mTOR inhibitor offers one lever to lower the skin-cancer burden while keeping the graft suppressed. 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 — Cancer surveillance / screening note

  • Skin: surveillance done; sun protection counselled; lesions ___.
  • Age-appropriate screening up to date: ___.
  • EBV status and PCR monitoring (if seronegative): ___.
  • HPV vaccination / cervical screening (Chapter 4): ___.
  • Cumulative immunosuppression review (minimise): ___.

Template 2 — PTLD diagnosis / treatment note

  • Presentation: nodes / mass / B symptoms / organ (graft, GI, CNS); EBV PCR ___.
  • Biopsy: histology; clonality (poly/monomorphic); EBV/EBER ___.
  • Staging imaging: ___.
  • Treatment: immunosuppression reduced (first); rituximab (CD20+); chemotherapy ___.
  • Response and monitoring (EBV PCR; rejection watch): ___.
18
Phase F · Level 18

High-Yield Cheat Sheet

Pre-rounds compression. Rules only.

Immunosuppression → less surveillance → more cancer.
Skin cancer = most common (SCC aggressive).
PTLD = EBV-driven B-cell proliferation.
Highest PTLD risk: EBV-seronegative + seropositive donor.
Diagnose PTLD: biopsy (EBER), imaging, EBV PCR.
PTLD: reduce IS FIRST, then rituximab/chemo.
Skin cancer: excise, sun protect, surveil, reduce IS.
mTOR conversion: lower skin cancer; Kaposi regression.
Kaposi (HHV-8); HPV cancers — virus-associated.
Prevent: surveillance, sun protection, HPV vaccine, EBV PCR.
Treat cancer = reduce IS (vs rejection).
Minimise cumulative immunosuppression.
19
Phase F · Level 19

Flashcards

Active recall. At least one card per objective.

CARD 1

Q. Why does immunosuppression increase cancer risk?

Show answer

A. It impairs the immune surveillance that clears malignant and virus-transformed cells, raising the risk of many cancers — especially virus-associated ones — in proportion to the cumulative dose.

DETAILED. Oncogenic viruses are unleashed.

CLINICAL. Minimising cumulative immunosuppression lowers the risk.

CARD 2

Q. What is the post-transplant cancer spectrum?

Show answer

A. Skin cancer (much the most common), PTLD, and virus-associated cancers (Kaposi/HHV-8, HPV-related, viral hepatocellular), with a modest rise in other solid cancers.

DETAILED. Pre-existing and donor-derived cancers also occur.

CLINICAL. The pattern is dominated by virus-associated tumours.

CARD 3

Q. Why is skin cancer notable after transplant?

Show answer

A. It is by far the most common malignancy; non-melanoma predominates, and — unlike the general population — squamous cell carcinoma outnumbers basal cell and is aggressive.

DETAILED. Driven by ultraviolet light plus immunosuppression.

CLINICAL. Managed by excision, sun protection, and surveillance.

CARD 4

Q. What is the mechanism of PTLD?

Show answer

A. EBV transforms B cells, and immunosuppression removes the T-cell control that restrains them, allowing proliferation from polyclonal hyperplasia to monomorphic lymphoma.

DETAILED. Highest risk in EBV-seronegative recipients of seropositive donors.

CLINICAL. It disproportionately affects children (primary EBV).

CARD 5

Q. How is PTLD recognised and diagnosed?

Show answer

A. By lymphadenopathy, a mass, B symptoms, or organ involvement, often with EBV viremia; diagnosed by biopsy (histology, clonality, EBV/EBER), imaging, and EBV PCR.

DETAILED. Its presentations are protean.

CLINICAL. Tissue is required for diagnosis.

CARD 6

Q. How is PTLD treated?

Show answer

A. Reduce immunosuppression first (restoring T-cell surveillance, which can regress early disease), then add rituximab for CD20-positive disease and chemotherapy for monomorphic/aggressive lymphoma.

DETAILED. Surgery/radiation for localised disease.

CLINICAL. Reducing immunosuppression first is the through-line.

CARD 7

Q. How is post-transplant skin cancer managed?

Show answer

A. Excision, rigorous sun protection, and dermatologic surveillance, with reduced immunosuppression and conversion to an mTOR inhibitor for recurrent or multiple lesions.

DETAILED. mTOR inhibitors carry a lower skin-cancer risk.

CLINICAL. SCC is aggressive and treated accordingly.

CARD 8

Q. What is the cancer screening and prevention strategy?

Show answer

A. Vigilant skin surveillance with sun protection, age-appropriate screening pursued assiduously, HPV vaccination and a cancer-free interval pre-transplant, EBV monitoring in high-risk recipients, and minimised cumulative immunosuppression.

DETAILED. Prevention carries much of the burden.

CLINICAL. EBV PCR guides PTLD pre-emption.

CARD 9

Q. How is immunosuppression balanced against cancer?

Show answer

A. Treating cancer generally means reducing immunosuppression to restore surveillance — the inverse of rejection — balanced against rejection risk, with mTOR conversion as one way to keep the graft suppressed with a smaller oncologic price.

DETAILED. The reduction is titrated to cancer severity.

CLINICAL. Graft and patient are weighed honestly.

20
Phase F · Level 20

One-Minute Preceptor

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

SCENE 1
Confirmed PTLD
GET A COMMITMENTAsk: “Biopsy confirms PTLD — start chemotherapy?”
PROBE“What single change might make early PTLD regress on its own?”
TEACHReducing immunosuppression — it restores T-cell control of EBV; that comes first.
REINFORCE“Right — reduce immunosuppression first, then rituximab/chemo if needed.”
CORRECT ERRORSIf they jumped to chemo, emphasise IS reduction first.
SCENE 2
Recurrent skin cancer
GET A COMMITMENTAsk: “He keeps getting squamous cell cancers — just keep excising?”
PROBE“What drives them, and which drug class might help?”
TEACHSun plus immunosuppression — reduce IS, protect from sun, and convert to an mTOR inhibitor.
REINFORCE“Exactly — mTOR conversion lowers the skin-cancer burden.”
CORRECT ERRORSIf they relied on excision alone, add the IS strategy.
22
Phase F · Level 22

Board-Style Q&A

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

Q 01
Why is cancer more common after transplant?

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

Q 02
The most common malignancy after kidney transplant is:

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

Q 03
PTLD is most often driven by:

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

Q 04
Who has the highest risk of PTLD?

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

Q 05
The first step in treating confirmed PTLD is to:

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

Q 06
For recurrent post-transplant squamous cell carcinoma, a useful immunosuppressive strategy is:

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

Q 07
Kaposi sarcoma after transplant is associated with which virus, and what often helps?

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

Q 08
How should immunosuppression generally be handled when treating a post-transplant cancer?

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

Q 09
In Flowchart 15.A, biopsy confirms PTLD that is CD20-positive but does not regress on reduced immunosuppression. The pathway directs you to:

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