14

KIDNEY TRANSPLANTATION

Chapter 14

Infections after Transplant

Timeline, CMV, BK & PJP

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 infections by the timeline and the pathogen.
  • Sig-T therapeutic — it treats and, above all, prevents them.

Levels populated and omitted

  • Seventeen levels are built — a recognition-and-treatment chapter with absolute-risk framing and documentation.
  • Omitted: L6 concept maps and L9 implications triads — no mechanistic-physiology signal. L15, L16, and L21 — prophylaxis and treatment are effective-care, not preference-sensitive. Pre-transplant screening and vaccination (Chapter 4) and EBV-driven PTLD (Chapter 15) 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 net state of immunosuppression and the infection timeline.
  2. 2. Recognise the early, middle, and late infection periods.
  3. 3. Diagnose, prevent, and treat CMV infection.
  4. 4. Recognise BK nephropathy and its management.
  5. 5. Distinguish BK nephropathy from rejection.
  6. 6. Prevent Pneumocystis pneumonia.
  7. 7. Recognise the other important post-transplant infections.
  8. 8. Apply the standard prophylaxis.
  9. 9. Balance immunosuppression against infection.
02
Phase A · Level 2

Executive Summary

A sixty-second reading. Each bullet stands alone.

  • Infection risk after transplant reflects the net state of immunosuppression and the patient's exposures.
  • The early period (first month) brings nosocomial and surgical infections, like any major operation.
  • The middle period (one to six months), at peak immunosuppression, brings opportunistic infections — CMV, BK, and Pneumocystis.
  • The late period (beyond six months) brings community-acquired infections, with late opportunistic infection if heavily immunosuppressed.
  • Cytomegalovirus is the most important viral infection, with risk highest in a seronegative recipient of a seropositive donor.
  • CMV is prevented by prophylaxis or preemptive PCR monitoring and treated with ganciclovir or valganciclovir.
  • BK polyomavirus reactivates under immunosuppression and can cause BK nephropathy.
  • BK nephropathy is managed by reducing immunosuppression — the opposite of rejection, which it mimics.
  • BK is screened for by plasma PCR, progressing from viruria to viremia to nephropathy.
  • Pneumocystis pneumonia is prevented by co-trimoxazole prophylaxis.
  • Other important infections include fungal infections, tuberculosis, and EBV (causing PTLD).
  • Standard prophylaxis includes co-trimoxazole and CMV prophylaxis by serostatus.
  • A serious infection signals over-immunosuppression and prompts reducing immunosuppression.
03
Phase A · Level 3

Main Narrative

The medical core. An expert should agree post-transplant infection is fully covered here.

Why it matters at the bedside

The same immunosuppression that protects the graft disarms the patient against infection — so infection is the price of transplantation's success, and managing it is a constant balancing act. Two things make it tractable: a predictable timeline that tells you what to expect when, and a short list of signature pathogens — CMV, BK, Pneumocystis — that prophylaxis and vigilance can largely defeat.

The net state of immunosuppression and the timeline

  • Infection risk is the product of two things: the net state of immunosuppression (how suppressed the patient is, summing all the drugs and their intensity) and their epidemiologic exposures (community, donor-derived, latent). From this comes the classic post-transplant timeline — a roughly predictable sequence of infection types as immunosuppression peaks and then wanes.

The early period

  • In the first month, infections look like those of any major operation: wound and surgical-site infection, line and catheter infection, urinary infection, and occasional donor-derived infection. The graft recipient is immunosuppressed but opportunistic infection has not yet had time to emerge; the threats are nosocomial and surgical.

The middle period: opportunistic

  • From one to six months, at the peak of immunosuppression, the opportunistic infections appear: cytomegalovirus, BK polyomavirus, Pneumocystis, and fungal infections, alongside reactivation of latent infection such as tuberculosis. This is the window that prophylaxis is designed to cover — and prophylaxis reshapes the picture, deferring some infections rather than abolishing them.

The late period

  • Beyond six months, with immunosuppression lower, the pattern returns toward community-acquired infections — respiratory viruses, pneumonia, urinary infection. But a patient kept heavily immunosuppressed (for example, after treatment of chronic rejection) remains at risk of late opportunistic infection, and CMV can appear late once prophylaxis is stopped.

Cytomegalovirus

  • CMV is the single most important viral infection, and risk is stratified by serostatus — a seronegative recipient of a seropositive donor (D+/R-) is highest risk, having no prior immunity. It presents as asymptomatic viremia, a febrile illness with leukopenia, or tissue-invasive disease (colitis, pneumonitis, hepatitis), and has indirect effects including a predisposition to rejection. It is prevented by either universal prophylaxis (valganciclovir) or preemptive PCR-guided treatment, and disease is treated with ganciclovir or valganciclovir, with immunosuppression reduced.

BK polyomavirus

  • BK polyomavirus lies latent in the urothelium and reactivates under immunosuppression, ascending from viruria to viremia to BK nephropathy — a destructive interstitial nephritis of the graft. It is detected by screening plasma BK PCR (catching viremia before nephropathy) and confirmed on biopsy by SV40 staining. There is no reliably effective antiviral, so the treatment is to reduce immunosuppression and let immunity clear the virus.

BK versus rejection

  • BK nephropathy is the great mimic of rejection: both inflame the graft and raise the creatinine — but their treatments are opposite. Rejection is treated by increasing immunosuppression; BK by reducing it. Escalating immunosuppression for what is actually BK feeds the virus and destroys the graft, which is the cardinal reason to screen for BK and stain SV40 before treating presumed rejection (the trap met in the rejection and chronic-dysfunction chapters).

Pneumocystis

  • Pneumocystis jirovecii pneumonia — hypoxia and dyspnea with diffuse infiltrates — is a feared but almost entirely preventable infection: routine co-trimoxazole prophylaxis for the first months after transplant (and longer with heavy immunosuppression) abolishes most cases. Its appearance usually means prophylaxis was missing.

Other infections

  • Beyond the big three: fungal infections (Candida, Aspergillus, Cryptococcus, endemic mycoses), tuberculosis reactivation (screened and treated before transplant), Epstein-Barr virus (which drives post-transplant lymphoproliferative disorder — its own chapter), herpesviruses (HSV, VZV), viral hepatitis, and less common opportunists such as Nocardia, Listeria, and Toxoplasma. Urinary tract infection is common throughout.

Prophylaxis and the balance

  • Standard prophylaxis carries much of the load: co-trimoxazole for Pneumocystis (and incidentally toxoplasma, Nocardia, and urinary infection), CMV prophylaxis (valganciclovir) directed by serostatus, antifungal prophylaxis in selected patients, and the pre-transplant work of treating latent tuberculosis and completing vaccination. Underlying all of it is the balance: a serious infection is a signal of over-immunosuppression, and the response — the opposite of rejection — is to reduce immunosuppression while treating the pathogen.
04
Phase A · Level 4

Reference Tables

Five fully-built tables.

Table A — The infection timeline

PeriodTimingTypical infections
EarlyFirst monthNosocomial/surgical (wound, line, urinary, donor-derived)
Middle1–6 monthsOpportunistic (CMV, BK, PJP, fungal, TB reactivation)
Late>6 monthsCommunity-acquired; late opportunistic if heavily immunosuppressed

Table B — Cytomegalovirus

AspectNote
Highest riskSeronegative recipient, seropositive donor (D+/R-)
PresentationViremia, fever, leukopenia, organ disease (colitis, pneumonitis); indirect (rejection)
PreventionProphylaxis (valganciclovir) or preemptive PCR monitoring
TreatmentGanciclovir / valganciclovir; reduce immunosuppression

Table C — BK polyomavirus

AspectNote
TriggerReactivation under immunosuppression
ProgressionViruria → viremia → nephropathy
ScreeningPlasma BK PCR
DiagnosisSV40 stain on biopsy
TreatmentREDUCE immunosuppression (no reliable antiviral)
TrapMimics rejection — opposite treatment

Table D — Other key infections

PathogenNote
Pneumocystis jiroveciiPrevented by co-trimoxazole
Fungal (Candida, Aspergillus, Cryptococcus)Selected prophylaxis; invasive disease
TuberculosisReactivation — screen/treat pre-transplant (Chapter 4)
Epstein-Barr virusDrives PTLD (Chapter 15)
HSV / VZV, hepatitis, Nocardia, ListeriaVarious

Table E — Standard prophylaxis

ProphylaxisCovers
Co-trimoxazolePneumocystis (also toxoplasma, Nocardia, urinary infection)
CMV prophylaxis (valganciclovir)CMV (directed by serostatus)
Antifungal (selected)Candida / others
Pre-transplant: latent TB, vaccinationTuberculosis; vaccine-preventable (Chapter 4)

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging and Algorithm Flowcharts

Figure 14.1 — The post-transplant infection timeline
Figure 14.1 — The post-transplant infection timeline
Figure 14.2 — BK progression
Figure 14.2 — BK progression
Flowchart 14.A — Fever in the transplant patient
Flowchart 14.A — Fever in the transplant patient
Flowchart 14.B — BK versus rejection
Flowchart 14.B — BK versus rejection
07
Phase B · Level 7

Clinical Decision Pathways

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

R1
IF assessing infection risk, THEN consider the net state of immunosuppression and the timeline.
R2
IF in the first month, THEN expect nosocomial and surgical infections.
R3
IF one to six months, THEN expect opportunistic infections (CMV, BK, Pneumocystis) — prophylaxis modifies this.
R4
IF CMV risk is high (D+/R-), THEN give prophylaxis or preemptive monitoring; treat disease with ganciclovir/valganciclovir.
R5
IF there is BK viremia or nephropathy, THEN reduce immunosuppression — do not increase it.
R6
IF graft dysfunction could be BK, THEN screen by PCR and stain SV40 — do not treat as rejection blindly.
R7
IF preventing Pneumocystis, THEN give co-trimoxazole prophylaxis.
R8
IF a serious infection occurs, THEN reduce immunosuppression and treat the pathogen.

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

Fever and diarrhoea at month threeCMV disease

Presentation

A D+/R- recipient develops fever, leukopenia, and diarrhoea at three months; CMV viremia is high and colitis is suspected.

Pause and reflect

Before reading on: what is this, and why was the risk predictable?

Analysis

A seronegative recipient of a seropositive donor (D+/R-) is at the highest CMV risk, and fever, leukopenia, and colitis with viremia at the opportunistic-period peak is CMV disease. Treatment is ganciclovir/valganciclovir with reduction of immunosuppression; the case underscores why such patients receive prophylaxis or preemptive monitoring.

Management plan

  1. Recognise CMV disease in a high-risk (D+/R-) recipient (R4).
  2. Treat with ganciclovir/valganciclovir; reduce immunosuppression (R4, R8).
  3. Reinforce prophylaxis/monitoring strategy.

Teaching points

  • D+/R- is highest CMV risk — fever, leukopenia, colitis is CMV disease; treat and reduce IS.

Cross-reference: exercises R4, R8.

CASE 2COMPLEX

Rising creatinine, BK viremiaBK nephropathy

Presentation

A patient on intensive immunosuppression has a rising creatinine; plasma BK PCR is high and biopsy stains positive for SV40.

Pause and reflect

Before reading on: more immunosuppression for the inflammation, or less?

Analysis

BK viremia with an SV40-positive biopsy is BK nephropathy — driven by over-immunosuppression and treated by reducing it, since there is no reliable antiviral. Increasing immunosuppression, as one would for rejection (which it mimics), would feed the virus and destroy the graft.

Management plan

  1. Recognise BK nephropathy (viremia + SV40) (R6).
  2. Reduce immunosuppression — do not increase it (R5).
  3. Monitor viral load and function.

Teaching points

  • BK nephropathy is treated by reducing immunosuppression — the opposite of rejection.

Cross-reference: exercises R5, R6; see Chapters 11 and 13.

CASE 3COMPLEX

Breathless and hypoxicPneumocystis

Presentation

A few months post-transplant, a patient who was not on co-trimoxazole develops progressive dyspnea, hypoxia, and diffuse infiltrates.

Pause and reflect

Before reading on: what is this, and how was it preventable?

Analysis

Progressive hypoxia with diffuse infiltrates in an immunosuppressed patient off prophylaxis is Pneumocystis jirovecii pneumonia — a feared infection that routine co-trimoxazole would almost certainly have prevented. It is treated with high-dose co-trimoxazole; its occurrence flags the missing prophylaxis.

Management plan

  1. Recognise PJP (hypoxia, diffuse infiltrates, no prophylaxis) (R7).
  2. Treat with high-dose co-trimoxazole.
  3. Reinstate prophylaxis; reduce immunosuppression as needed (R8).

Teaching points

  • PJP is almost entirely preventable by co-trimoxazole — its occurrence means prophylaxis was missing.

Cross-reference: exercises R7, R8.

CASE 4STANDARD

Fever in the first weekEarly surgical infection

Presentation

A patient develops a fever a few days after transplant, with a tender wound and an indwelling catheter.

Pause and reflect

Before reading on: opportunistic infection already, or something else?

Analysis

In the first month, opportunistic infection has not yet emerged; fever then reflects the infections of any major operation — wound/surgical-site, line, or urinary infection (and occasionally donor-derived). The workup and treatment are those of a post-operative infection, not yet of CMV or PJP.

Management plan

  1. Place the fever in the early (nosocomial/surgical) period (R2).
  2. Work up wound, line, and urinary sources; consider donor-derived.
  3. Treat the identified infection.

Teaching points

  • First-month fever is surgical/nosocomial — opportunistic infection comes later.

Cross-reference: exercises R2.

CASE 5STANDARD

A serious infection on full immunosuppressionThe balance

Presentation

A patient on full maintenance immunosuppression develops a serious systemic infection.

Pause and reflect

Before reading on: do you keep immunosuppression unchanged while treating?

Analysis

A serious infection is a signal that the net state of immunosuppression is too high, so — the opposite of rejection — immunosuppression is reduced while the pathogen is treated, balancing the risk of rejection against the need to let the immune system fight. The degree of reduction is matched to the severity of the infection.

Management plan

  1. Treat the pathogen (R8).
  2. Reduce immunosuppression in proportion to severity (R8).
  3. Monitor for rejection as immunosuppression is restored.

Teaching points

  • Serious infection → reduce immunosuppression while treating — the opposite of rejection.

Cross-reference: exercises R8.

10
Phase C · Level 10

Clinical Pearls

Exhaustive. Every rule in the chapter is here.

Infection risk = net state of immunosuppression × exposures.
Early (month 1): nosocomial/surgical.
Middle (1–6 months): opportunistic (CMV, BK, PJP).
Late (>6 months): community-acquired.
CMV is the most important viral infection.
D+/R- = highest CMV risk.
CMV: prophylaxis or preemptive PCR; treat with (val)ganciclovir.
BK reactivates under immunosuppression: viruria → viremia → nephropathy.
Screen BK by plasma PCR; diagnose by SV40 on biopsy.
BK nephropathy → REDUCE immunosuppression (mimics rejection).
PJP → prevented by co-trimoxazole.
EBV drives PTLD (Chapter 15).
Screen/treat latent TB and vaccinate pre-transplant (Chapter 4).
Serious infection → reduce immunosuppression while treating.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags and NEVER DO

Panel A — Red flags

Fever with leukopenia in the opportunistic period — CMV.
A rising creatinine with BK viremia — BK nephropathy (reduce immunosuppression).
Hypoxia and diffuse infiltrates off co-trimoxazole — Pneumocystis.
A serious systemic infection on full immunosuppression — over-immunosuppression.

Panel B — NEVER DO

NEVER — increase immunosuppression for graft dysfunction that is BK-driven.
NEVER — omit Pneumocystis (co-trimoxazole) prophylaxis.
NEVER — ignore CMV serostatus when planning prophylaxis.
NEVER — treat presumed rejection without excluding BK (PCR / SV40).
NEVER — maintain full immunosuppression unchanged during a serious infection.
12
Phase D · Level 12

Common Pitfalls

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

WRONG Increasing immunosuppression for BK-driven dysfunction.
RIGHT Reduce immunosuppression for BK.
WHY BK is driven by over-immunosuppression.
WRONG Omitting co-trimoxazole prophylaxis.
RIGHT Give routine Pneumocystis prophylaxis.
WHY PJP is almost entirely preventable.
WRONG Ignoring D+/R- status in CMV planning.
RIGHT Use prophylaxis or preemptive monitoring.
WHY D+/R- is the highest-risk group.
WRONG Treating presumed rejection without excluding BK.
RIGHT Screen PCR and stain SV40 first.
WHY BK and rejection need opposite treatments.
WRONG Keeping full immunosuppression during severe infection.
RIGHT Reduce it while treating the pathogen.
WHY Infection signals over-immunosuppression.
WRONG Expecting opportunistic infection in week one.
RIGHT Think surgical/nosocomial early.
WHY Opportunistic infection emerges later.
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
CMV prophylaxis or preemptive therapy reduces CMV disease.ARandomised trials.
Co-trimoxazole prevents Pneumocystis pneumonia.ARandomised trials.
BK nephropathy is managed by reducing immunosuppression.BObservational data and consensus.
D+/R- serostatus carries the highest CMV risk.AConsistent observational data.
Plasma BK PCR screening detects viremia before nephropathy.BObservational data.
A serious infection warrants reducing immunosuppression.Mechanism / standard of care.

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
CMV disease, no prophylaxis vs prophylaxisno prophylaxisprophylaxisMuch less with prophylaxisSee L13 — Grade A
Pneumocystis, no prophylaxis vs co-trimoxazoleno prophylaxisco-trimoxazoleAlmost abolished with prophylaxisSee L13 — Grade A
Graft loss in BK, late vs early immunosuppression reductionlate reductionearly reductionLess loss with early reductionSee L13 — Grade B

Reading the table

Prophylaxis does the heavy lifting — it largely prevents CMV disease and Pneumocystis — and for BK, the graft is saved by reducing immunosuppression early, before nephropathy is established. 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 — Post-transplant infection assessment note

  • Time since transplant and period: early / middle / late.
  • Net state of immunosuppression and prophylaxis status (co-trimoxazole, CMV): ___.
  • Workup: cultures; CMV PCR; BK PCR; SV40 (if biopsy); imaging ___.
  • Likely pathogen / diagnosis: ___.
  • Action: pathogen-directed treatment; immunosuppression reduced (severity): ___.

Template 2 — Prophylaxis plan note

  • CMV serostatus (D/R) and strategy: prophylaxis (valganciclovir) / preemptive PCR ___.
  • Co-trimoxazole (Pneumocystis) started: yes/no; duration ___.
  • Antifungal prophylaxis (if indicated): ___.
  • Pre-transplant: latent TB treated; vaccinations complete (Chapter 4): ___.
  • BK screening schedule (plasma PCR): ___.
18
Phase F · Level 18

High-Yield Cheat Sheet

Pre-rounds compression. Rules only.

Risk = net immunosuppression × exposures.
Month 1: surgical/nosocomial.
1–6 months: opportunistic (CMV, BK, PJP).
>6 months: community-acquired.
CMV: D+/R- highest; (val)ganciclovir; prophylaxis/preemptive.
BK: viruria → viremia → nephropathy; screen PCR; SV40.
BK → REDUCE immunosuppression (mimics rejection).
PJP → co-trimoxazole prophylaxis.
EBV → PTLD (Ch 15).
TB / vaccines: pre-transplant (Ch 4).
Serious infection → reduce immunosuppression.
Infection and rejection need opposite IS changes.
19
Phase F · Level 19

Flashcards

Active recall. At least one card per objective.

CARD 1

Q. What determines post-transplant infection risk and shapes the timeline?

Show answer

A. The net state of immunosuppression and the patient's exposures; from these comes a predictable timeline of infection types as immunosuppression peaks and wanes.

DETAILED. Risk is the product of suppression and exposure.

CLINICAL. Prophylaxis reshapes the timeline.

CARD 2

Q. What infections characterise the three periods?

Show answer

A. Early (month 1): nosocomial/surgical; middle (1–6 months): opportunistic (CMV, BK, PJP, fungal); late (>6 months): community-acquired.

DETAILED. Opportunistic infection peaks with immunosuppression.

CLINICAL. Late opportunistic infection occurs if heavily immunosuppressed.

CARD 3

Q. How is CMV stratified, presented, prevented, and treated?

Show answer

A. Highest risk in a seronegative recipient of a seropositive donor (D+/R-); presents as viremia, fever/leukopenia, or organ disease; prevented by prophylaxis or preemptive PCR; treated with ganciclovir/valganciclovir plus reduced immunosuppression.

DETAILED. It also predisposes to rejection (indirect effect).

CLINICAL. It is the most important viral infection.

CARD 4

Q. How does BK polyomavirus cause disease and how is it managed?

Show answer

A. It reactivates under immunosuppression, ascending viruria → viremia → BK nephropathy; managed by reducing immunosuppression, as there is no reliable antiviral.

DETAILED. Screen by plasma PCR; diagnose by SV40 on biopsy.

CLINICAL. Catch viremia before nephropathy.

CARD 5

Q. How is BK nephropathy distinguished from rejection, and why does it matter?

Show answer

A. Both inflame the graft and raise the creatinine, but BK needs reduced immunosuppression while rejection needs more — opposite treatments.

DETAILED. Escalating immunosuppression for BK destroys the graft.

CLINICAL. Screen PCR and stain SV40 before treating presumed rejection.

CARD 6

Q. How is Pneumocystis pneumonia prevented?

Show answer

A. By routine co-trimoxazole prophylaxis for the first months after transplant (longer with heavy immunosuppression).

DETAILED. Its occurrence usually means prophylaxis was missing.

CLINICAL. It presents with hypoxia and diffuse infiltrates.

CARD 7

Q. Name other important post-transplant infections.

Show answer

A. Fungal infections, tuberculosis reactivation, Epstein-Barr virus (PTLD), herpesviruses, viral hepatitis, and opportunists like Nocardia and Listeria; urinary infection is common.

DETAILED. TB is screened and treated before transplant.

CLINICAL. EBV-driven PTLD has its own chapter.

CARD 8

Q. What is the standard prophylaxis?

Show answer

A. Co-trimoxazole (Pneumocystis, also toxoplasma/Nocardia/UTI), CMV prophylaxis (valganciclovir) by serostatus, selected antifungal prophylaxis, and pre-transplant treatment of latent TB and completion of vaccination.

DETAILED. Prophylaxis prevents most CMV and PJP.

CLINICAL. BK is managed by screening, not prophylaxis.

CARD 9

Q. How is immunosuppression balanced against infection?

Show answer

A. A serious infection signals over-immunosuppression, so — opposite to rejection — immunosuppression is reduced while the pathogen is treated, the reduction matched to severity.

DETAILED. Infection and rejection pull immunosuppression in opposite directions.

CLINICAL. Monitor for rejection as immunosuppression is restored.

20
Phase F · Level 20

One-Minute Preceptor

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

SCENE 1
Rejection or BK?
GET A COMMITMENTAsk: “Rising creatinine on heavy immunosuppression — escalate for rejection?”
PROBE“What must you check before adding immunosuppression?”
TEACHBK — plasma PCR and SV40; if BK, reduce immunosuppression, don't increase it.
REINFORCE“Right — BK and rejection are treated in opposite directions.”
CORRECT ERRORSIf they escalated blindly, name the BK trap.
SCENE 2
The breathless patient
GET A COMMITMENTAsk: “Hypoxic with diffuse infiltrates, and he wasn't on co-trimoxazole — what is it?”
PROBE“What would co-trimoxazole have prevented?”
TEACHPneumocystis — almost entirely preventable; treat with high-dose co-trimoxazole.
REINFORCE“Exactly — PJP off prophylaxis is a missed prevention.”
CORRECT ERRORSIf they missed the prophylaxis link, emphasise it.
22
Phase F · Level 22

Board-Style Q&A

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

Q 01
Which infections dominate the first month after transplant?

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

Q 02
Which CMV serostatus carries the highest risk?

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

Q 03
BK nephropathy is managed by:

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

Q 04
A rising creatinine could be rejection or BK. Before escalating immunosuppression you must:

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

Q 05
Pneumocystis pneumonia after transplant is best prevented by:

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

Q 06
How is established CMV disease treated?

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

Q 07
Which virus drives post-transplant lymphoproliferative disorder?

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

Q 08
A patient on full immunosuppression develops a serious systemic infection. You should:

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

Q 09
In Flowchart 14.B, a rising creatinine has BK viremia and an SV40-positive biopsy. The pathway directs you to:

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