13

APPLIED CHRONIC KIDNEY DISEASE · VOLUME 6

Chapter 13

CKD in Pregnancy

Pre-Conception, Medication Safety & Progression Risk

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

Signals declared

  • Sig-D — Diagnostic (primary). Stratify pregnancy risk by CKD stage, interpret creatinine and proteinuria against pregnancy's changes, and distinguish CKD progression from superimposed pre-eclampsia.
  • Sig-T — Therapeutic (strong). Pre-conception counselling and the medication switch, blood-pressure control and aspirin prophylaxis, and intensive dialysis in pregnancy.
  • Sig-M — Mechanistic (strong). How pregnancy hyperfiltration superimposed on CKD accelerates progression, why CKD raises pre-eclampsia risk, and why fetotoxic drugs must be stopped.

Levels populated and omitted

Populated (19): L1–L14, L17–L20, L22. The mechanistic signal fires the concept maps (L6) and triads (L9); the therapeutic signal fires the absolute-risk table (L14) and templates (L17); the diagnostic signal drives the tables, rules, cases, pitfalls, and board items.

  • L15 / L16 preference-sensitive map and SDM scripts — omitted. No Sig-E; managing CKD in pregnancy is effective, protocol-driven care (the reproductive choice itself is the patient's, supported by counselling).
  • L21 reflective prompts — omitted. No Sig-E/V; the diagnostic tension (progression versus pre-eclampsia) is worked through the cases and pitfalls.
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

By the end of this chapter you should be able to:

  • Describe the bidirectional risk between CKD and pregnancy, graded by stage, blood pressure, and proteinuria.
  • Interpret creatinine and proteinuria in a pregnant woman with CKD against pregnancy's physiologic changes.
  • Deliver pre-conception counselling, including the timing of pregnancy and transplant.
  • Switch fetotoxic drugs to pregnancy-safe alternatives before conception.
  • Use aspirin prophylaxis and pregnancy-safe blood-pressure control.
  • Distinguish CKD progression or a lupus flare from superimposed pre-eclampsia.
  • Prescribe intensive dialysis when it is needed in pregnancy.
  • Coordinate multidisciplinary care and reassess CKD post-partum.
02
Phase A · Level 2

Executive Summary

  • CKD and pregnancy interact in both directions: CKD raises adverse pregnancy outcomes, and pregnancy can accelerate CKD.
  • CKD increases pre-eclampsia, preterm birth, fetal growth restriction, low birth weight, caesarean, and stillbirth, with risk graded by stage, hypertension, and proteinuria.
  • Pregnancy can accelerate CKD progression, especially in advanced CKD with hypertension and proteinuria, sometimes causing permanent GFR loss; early CKD with normal blood pressure and low proteinuria usually does well.
  • Pregnancy raises GFR and lowers creatinine, but in CKD this fall may be blunted — so a rising creatinine in pregnancy is concerning.
  • Proteinuria rises physiologically in pregnancy, confounding the assessment of CKD proteinuria and of pre-eclampsia.
  • Pre-conception counselling is the cornerstone: discuss the stage-specific risks, optimise the patient, and time the pregnancy when CKD is stable, blood pressure controlled, and proteinuria low.
  • Stop fetotoxic drugs before conception — ACE inhibitors, ARBs, SGLT2 inhibitors, mycophenolate, cyclophosphamide, and methotrexate — switching to pregnancy-safe alternatives.
  • Safe alternatives include azathioprine, tacrolimus or ciclosporin, hydroxychloroquine (continued in lupus), and labetalol, nifedipine, or methyldopa for blood pressure.
  • Give low-dose aspirin from early in pregnancy for pre-eclampsia prophylaxis, as CKD is a high-risk state.
  • For transplant recipients, advise waiting until the graft is stable, typically one to two years post-transplant, and switch mycophenolate to azathioprine first.
  • Superimposed pre-eclampsia is common and hard to diagnose against baseline proteinuria and hypertension; angiogenic markers and new severe features help.
  • In lupus nephritis, ensure remission before conception, continue hydroxychloroquine, and distinguish a flare from pre-eclampsia.
  • When dialysis is needed in pregnancy, deliver it intensively — longer and more frequent sessions improve fetal outcomes.
  • Care is multidisciplinary throughout, and CKD is reassessed post-partum with medications restarted appropriately.
03
Phase A · Level 3

Main Narrative

Pregnancy in a woman with chronic kidney disease is a two-way risk: her kidney disease threatens the pregnancy, and the pregnancy can threaten her kidney. Much of the harm is preventable, but the prevention happens before conception — in counselling, in optimising blood pressure and proteinuria, and above all in switching the fetotoxic drugs that so much of CKD care relies on. This chapter is the pre-existing-CKD counterpart to the acute-kidney-injury-in-pregnancy chapter of the previous volume, which it cross-references for the shared interpretive traps and the thrombotic microangiopathies.

The bidirectional risk

Two risks run in parallel. First, CKD worsens pregnancy outcomes: pre-eclampsia, preterm birth, fetal growth restriction, low birth weight, caesarean delivery, and stillbirth are all more common, and the excess rises with CKD stage, with hypertension, and with proteinuria — the same three variables that predict renal outcomes also predict obstetric ones. Second, pregnancy can accelerate the CKD itself. In advanced CKD, particularly with hypertension and significant proteinuria, the demands of pregnancy can cause a step-down in function that does not fully recover, a permanent loss of GFR. The reassuring counterpart is that a woman with early CKD, normal blood pressure, and minimal proteinuria usually does well, for herself and her baby. Stratifying this risk — by stage, blood pressure, and proteinuria — is the first task, and it is the basis of honest counselling.

Reading the numbers in pregnancy

The interpretive traps of the acute chapter apply here too. Pregnancy raises GFR by around half and lowers serum creatinine, so a 'normal' non-pregnant creatinine can be abnormal for pregnancy — and in a woman with CKD, the expected gestational fall may be blunted or absent, so a creatinine that merely fails to drop, or that rises, is concerning and signals trouble. Proteinuria, meanwhile, increases physiologically in normal pregnancy, which confounds both the assessment of her baseline CKD proteinuria and the diagnosis of pre-eclampsia, since rising protein can be physiologic, CKD progression, or pre-eclampsia. And the physiologic right-sided hydronephrosis of pregnancy should not be mistaken for obstruction. Every renal number in a pregnant CKD patient must be read against these shifts, not against the non-pregnant range.

Pre-conception counselling: where the work is done

The single most valuable intervention in CKD and pregnancy happens before the pregnancy. Pre-conception counselling lays out the stage-specific risks honestly, optimises the modifiable factors, and times the pregnancy for when the disease is most stable. The aim is to enter pregnancy with the CKD stable, the blood pressure controlled on safe agents, and the proteinuria as low as possible. For the woman with a kidney transplant, this means advising her to wait until the graft is stable — typically one to two years post-transplant — before conceiving. Counselling also covers folic acid, the plan for aspirin prophylaxis, and nephrotoxin avoidance. Done well, it converts a high-risk pregnancy into a planned, optimised one; done not at all — a woman presenting already pregnant on fetotoxic drugs — it forecloses the chance to prevent harm that has, by then, already begun.

The medication switch

CKD care leans heavily on drugs that are fetotoxic, so the medication switch is the practical heart of pre-conception care. The renin-angiotensin blockers — ACE inhibitors and ARBs — cause fetal renal dysgenesis, oligohydramnios, and skull defects and must be stopped before or at conception. SGLT2 inhibitors are stopped for want of pregnancy safety data. In the patient with lupus or a transplant, mycophenolate is teratogenic and is switched to azathioprine, and cyclophosphamide and methotrexate are likewise avoided. The substitutions are well established: azathioprine, tacrolimus or ciclosporin, and hydroxychloroquine (which is continued in lupus for its benefit) are the pregnancy-safe immunosuppressants, and labetalol, nifedipine, and methyldopa are the pregnancy-safe antihypertensives. The discipline is to make these switches deliberately and early — not to discover a pregnant woman still taking an ACE inhibitor.

Managing the pregnancy

Once pregnant, the CKD patient is managed as high-risk by a multidisciplinary team — nephrology, maternal-fetal medicine, and neonatology together. Blood pressure is controlled with the safe agents, low-dose aspirin is given from early in pregnancy because CKD is a high pre-eclampsia-risk state, and GFR, proteinuria, and blood pressure are monitored closely. The recurring diagnostic challenge is distinguishing CKD progression — or, in lupus, a disease flare — from superimposed pre-eclampsia, because all can present with worsening hypertension, proteinuria, and renal function against an already abnormal baseline. The overlap is genuine and hard, and it leans on timing, on new severe features, and on angiogenic markers such as the sFlt-1 to PlGF ratio, with the acute chapter's framework for the thrombotic microangiopathies in reserve. In lupus, remission should be secured before conception, hydroxychloroquine continued, and a flare distinguished from pre-eclampsia so that immunosuppression rather than delivery is escalated when appropriate.

Dialysis in pregnancy

Fertility is reduced in advanced CKD and dialysis, but conception does occur, and a woman may also need dialysis initiated during pregnancy. The key principle, shared with the acute chapter, is intensity: pregnancy in a dialysis patient is managed with intensive, more frequent dialysis — longer hours and more sessions, with lower urea targets — because the cleaner uraemic environment markedly improves fetal outcomes compared with conventional schedules. This is one of the clearest examples in nephrology where doing more dialysis genuinely helps, and it reverses the usual 'standard dose is enough' message precisely because the goal is a healthy fetus in a low-urea milieu rather than adequacy for the mother alone.

After delivery, and the team

The post-partum period is not an afterthought. CKD must be reassessed, because pregnancy may have advanced it, and the medications that were stopped or switched are restarted appropriately — RAAS blockade and SGLT2 inhibition resumed once the patient is no longer pregnant and, where relevant, with attention to breastfeeding compatibility. Contraception is discussed, both to space pregnancies and to allow the kidney to recover and stabilise. Throughout, from pre-conception to post-partum, the care is genuinely multidisciplinary, and the nephrologist's distinctive contributions are the risk stratification, the medication switch, the interpretation of the renal numbers against pregnancy's physiology, and the disentangling of progression, flare, and pre-eclampsia.

Where the evidence is firm, and where it is observational

The firm parts are the drug-safety ones — the fetotoxicity of RAAS blockers, mycophenolate, and the others is well established — and the benefit of intensive dialysis, supported by consistent observational data, along with aspirin prophylaxis for pre-eclampsia. The softer parts are the precise stage-specific risk figures and the management of the progression-versus-pre-eclampsia overlap, which rest on cohort data and judgement rather than trials, since randomising pregnant women is rarely feasible. The honest position is to counsel from the consistent observational risk gradient, to make the well-established drug switches without exception, to deliver intensive dialysis and aspirin prophylaxis, and to manage the diagnostic overlaps with a multidisciplinary team and the interpretive discipline this and the acute chapter share.

04
Phase A · Level 4

Reference Tables

Table 13.1 — The bidirectional risk

DirectionDetail
CKD → pregnancy↑ pre-eclampsia, preterm birth, growth restriction, low birth weight, caesarean, stillbirth
Graded byCKD stage, hypertension, proteinuria
Pregnancy → CKDCan accelerate progression, esp. advanced CKD with HTN/proteinuria
Lower-risk groupEarly CKD, normal BP, low proteinuria — usually good outcomes

Table 13.2 — Interpreting the numbers in pregnancy

ChangeImplication in CKD
GFR rises, creatinine fallsExpected fall may be blunted in CKD
A rising creatinineConcerning — signals trouble
Proteinuria rises physiologicallyConfounds CKD proteinuria and pre-eclampsia diagnosis
Right-sided hydronephrosisPhysiologic — not obstruction (Volume 5 Chapter 16)

Table 13.3 — Drugs to stop and switch before conception

Stop (fetotoxic)ProblemSafe alternative
ACE inhibitor / ARBRenal dysgenesis, oligohydramnios, skull defectsLabetalol/nifedipine/methyldopa for BP
SGLT2 inhibitorInsufficient safety dataStop
MycophenolateTeratogenicAzathioprine
Cyclophosphamide / methotrexateTeratogenicAzathioprine, tacrolimus/ciclosporin
(Continue) hydroxychloroquineBeneficial in lupusContinue

Table 13.4 — Pre-conception checklist

ItemDetail
Counsel risksStage-specific maternal, fetal, and renal risks
OptimiseStable CKD, controlled BP (safe agents), low proteinuria
Medication switchStop fetotoxic drugs; switch to safe alternatives
Transplant timingWait until graft stable (~1–2 years); switch MMF to azathioprine
ProphylaxisFolic acid; plan low-dose aspirin; avoid nephrotoxins

Table 13.5 — CKD progression / flare versus superimposed pre-eclampsia

FeatureNote
Shared pictureWorsening BP, proteinuria, and renal function on an abnormal baseline
DiscriminatorsTiming, new severe features, angiogenic markers (sFlt-1/PlGF)
Lupus flareDistinguish from pre-eclampsia — escalate immunosuppression vs deliver
BackstopThrombotic-microangiopathy framework (Volume 5 Chapter 16)

Table 13.6 — Management and dialysis in pregnancy

ElementDetail
TeamNephrology, maternal-fetal medicine, neonatology
BP & prophylaxisPregnancy-safe agents; low-dose aspirin from early pregnancy
MonitoringGFR, proteinuria, BP closely; fetal surveillance
DialysisIntensive / more frequent — improves fetal outcomes
Post-partumReassess CKD; restart RAAS/SGLT2i appropriately; contraception

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging & Flowchart Specifications

Figure 13.1 — The bidirectional risk
Figure 13.1 — The bidirectional risk
Figure 13.2 — Pregnancy hyperfiltration on the CKD kidney
Figure 13.2 — Pregnancy hyperfiltration on the CKD kidney
Figure 13.3 — The pre-conception medication switch
Figure 13.3 — The pre-conception medication switch
Flowchart 13.A — CKD and pregnancy
Flowchart 13.A — CKD and pregnancy
06
Phase B · Level 6

Concept Maps

Each chain runs from physiology to a named bedside action; read the arrows as “leads to.”

Bidirectional risk. CKD → worse pregnancy outcomes AND pregnancy → accelerated CKD, both graded by stage/BP/proteinuria → ACTION: stratify and counsel before conception; optimise the modifiable factors.

Pregnancy hyperfiltration on CKD. Pregnancy physiologic hyperfiltration + already-elevated glomerular pressure (CKD) → amplified hyperfiltration → accelerated progression, sometimes permanent → ACTION: counsel advanced-CKD patients on the risk of permanent GFR loss and monitor closely.

CKD and pre-eclampsia. CKD → endothelial/anti-angiogenic predisposition → high superimposed pre-eclampsia risk on a confounded baseline → ACTION: give low-dose aspirin prophylaxis and use angiogenic markers to diagnose against baseline proteinuria/HTN.

Fetotoxic drugs. RAAS blockers / mycophenolate / SGLT2i → fetal harm → must not be present in pregnancy → ACTION: switch to azathioprine, tacrolimus, hydroxychloroquine, and safe antihypertensives BEFORE conception.

Intensive dialysis. More frequent dialysis → lower urea / cleaner milieu → better fetal outcomes → ACTION: intensify dialysis (longer, more frequent) in the pregnant dialysis patient.

07
Phase B · Level 7

Decision Pathways

R1
IF a woman with CKD is planning pregnancy, THEN counsel the stage-specific bidirectional risk and optimise CKD, blood pressure, and proteinuria before conception.
R2
IF a CKD patient may become pregnant, THEN switch fetotoxic drugs (ACE inhibitor/ARB, SGLT2 inhibitor, mycophenolate) to safe alternatives before conception — not after a positive test.
R3
IF interpreting renal numbers in pregnancy, THEN read them against pregnancy physiology — a blunted creatinine fall or a rising creatinine is concerning, and proteinuria rises physiologically.
R4
IF a CKD patient is pregnant, THEN give low-dose aspirin from early pregnancy and control blood pressure with pregnancy-safe agents.
R5
IF the renal picture worsens in pregnancy, THEN distinguish CKD progression or a lupus flare from superimposed pre-eclampsia using timing, severe features, and angiogenic markers.
R6
IF a transplant recipient is considering pregnancy, THEN advise waiting until the graft is stable (~1–2 years) and switch mycophenolate to azathioprine.
R7
IF dialysis is required in pregnancy, THEN deliver it intensively — longer and more frequent sessions improve fetal outcomes.
R8
IF caring for a pregnant CKD patient, THEN manage with a multidisciplinary team and reassess CKD post-partum, restarting medications appropriately.

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

CASE 1BEFORE SHE CONCEIVES

The medication switchPre-conception counselling

Presentation

A 30-year-old with CKD and proteinuria, on an ACE inhibitor and an SGLT2 inhibitor, asks about planning a pregnancy. Her blood pressure is reasonable. The team plans to 'review the medications if she becomes pregnant.'

Pause and reflect

Is it safe to wait until she is pregnant to review her drugs?

Analysis

Waiting is the error. Her ACE inhibitor is fetotoxic, and the SGLT2 inhibitor lacks pregnancy safety data, so both must be stopped before conception — not discovered on board at a positive test, by which time harm may already have begun. Pre-conception is precisely when the preventable harm is prevented: switch the drugs, optimise blood pressure and proteinuria on safe agents, and counsel her on the stage-specific risks and timing.

Plan

Before she tries to conceive, stop the ACE inhibitor and SGLT2 inhibitor, switch to a pregnancy-safe antihypertensive, plan low-dose aspirin prophylaxis, give folic acid, and counsel her on risk and optimal timing. Coordinate with obstetrics.

Teaching point

Switch fetotoxic drugs before conception, not after — pre-conception counselling is where the harm is prevented.

Cross-reference

Exercises rules R1 and R2; the medication-switch figure (13.3); Tables 13.3 and 13.4.

CASE 2THE ADVANCED-CKD PREGNANCY

Risk to mother and kidneyCounselling and monitoring in advanced CKD

Presentation

A woman with advanced CKD (G4), hypertension, and significant proteinuria is pregnant. She and the team are focused on the baby and have not considered the risk to her own kidney function.

Pause and reflect

What are the risks here — to the pregnancy and to her kidney?

Analysis

This is a high-risk pregnancy on both fronts. Advanced CKD with hypertension and proteinuria carries a high risk of pre-eclampsia, preterm birth, and growth restriction for the pregnancy, and the demands of pregnancy can accelerate her CKD — potentially causing permanent GFR loss. Both risks must be made explicit and managed; focusing only on the fetus underserves her.

Plan

Manage as high-risk with a multidisciplinary team: pregnancy-safe blood-pressure control, low-dose aspirin, and close monitoring of GFR, proteinuria, blood pressure, and fetal growth. Counsel her honestly about the risk of permanent kidney function loss, and plan post-partum reassessment.

Teaching point

Advanced CKD pregnancy threatens both the pregnancy and the kidney — counsel the risk of permanent GFR loss and manage as high-risk.

Cross-reference

Exercises rules R1, R4, R8; the bidirectional-risk and hyperfiltration concept maps; Figures 13.1–13.2; Table 13.1.

CASE 3PROGRESSION OR PRE-ECLAMPSIA?

The diagnostic overlapDistinguishing the worsening picture

Presentation

A pregnant woman with CKD and baseline proteinuria develops worsening hypertension, rising proteinuria, and a creeping creatinine in the third trimester. The team cannot tell whether this is CKD progression or superimposed pre-eclampsia.

Pause and reflect

How do you distinguish CKD progression from superimposed pre-eclampsia against an abnormal baseline?

Analysis

This is the genuine diagnostic overlap of CKD pregnancy: progression and pre-eclampsia share worsening blood pressure, proteinuria, and renal function, and the baseline abnormality makes the standard thresholds unreliable. The discriminators are the timing, the appearance of new severe features, and angiogenic markers — a low PlGF or high sFlt-1/PlGF ratio supports pre-eclampsia — with the thrombotic-microangiopathy framework of the acute chapter in reserve. The distinction matters because pre-eclampsia is treated by delivery while progression or a flare is managed medically.

Plan

Use timing, severe features, and the sFlt-1/PlGF ratio to weigh pre-eclampsia against progression, with the multidisciplinary team. If pre-eclampsia, plan delivery as indicated; if progression or a lupus flare, escalate appropriate management. Do not assume one without the discriminators.

Teaching point

CKD progression and superimposed pre-eclampsia overlap — use timing, severe features, and angiogenic markers to distinguish them, because the treatments differ.

Cross-reference

Exercises rule R5; the pre-eclampsia concept map; Table 13.5; the TMA differential in Volume 5 Chapter 16.

CASE 4DIALYSIS AND PREGNANCY

More is better hereIntensifying dialysis

Presentation

A woman on maintenance haemodialysis becomes pregnant. The unit plans to continue her usual thrice-weekly schedule, reasoning that it is 'adequate.'

Pause and reflect

Is a conventional dialysis schedule adequate for a pregnant patient?

Analysis

Conventional dialysis is not the right standard in pregnancy. Intensive, more frequent dialysis — longer hours, more sessions, lower urea targets — markedly improves fetal outcomes by maintaining a cleaner uraemic environment, and this is one of the clear instances where doing more dialysis genuinely helps. Continuing her usual schedule because it is 'adequate' for her alone underserves the pregnancy.

Plan

Intensify her dialysis to a more frequent, longer-hours regimen with a lower urea target, with multidisciplinary and obstetric input and close fetal surveillance. Reverse the usual 'standard dose is enough' rule for the pregnant patient.

Teaching point

Pregnancy in a dialysis patient calls for intensive, more frequent dialysis — here, more genuinely improves fetal outcomes.

Cross-reference

Exercises rule R7; the intensive-dialysis concept map; Table 13.6; dialysis in pregnancy in Volume 5 Chapter 16.

09
Phase C · Level 9

Clinical Implications

One triad per mechanism the narrative exposed: the physiology, why it matters, and the bedside move.

MECHANISM

CKD and pregnancy each worsen the other, graded by stage, blood pressure, and proteinuria.

WHY IT MATTERS

Both the pregnancy and the kidney are at risk, and the risk is predictable.

ACTION

Stratify and counsel before conception, optimising the modifiable factors.

MECHANISM

Pregnancy's physiologic hyperfiltration is superimposed on a CKD kidney already at high glomerular pressure.

WHY IT MATTERS

The amplified hyperfiltration can accelerate progression, sometimes permanently, in advanced CKD.

ACTION

Counsel advanced-CKD patients on permanent GFR loss and monitor closely.

MECHANISM

CKD predisposes to the endothelial, anti-angiogenic injury of pre-eclampsia on a confounded baseline.

WHY IT MATTERS

Superimposed pre-eclampsia is common and hard to diagnose against baseline proteinuria and hypertension.

ACTION

Give aspirin prophylaxis and use angiogenic markers to diagnose against the baseline.

MECHANISM

Several cornerstone CKD drugs — RAAS blockers, mycophenolate, SGLT2 inhibitors — are fetotoxic.

WHY IT MATTERS

Their presence in pregnancy causes preventable fetal harm.

ACTION

Switch them to pregnancy-safe alternatives before conception.

MECHANISM

More frequent dialysis maintains a lower-urea, cleaner intrauterine environment.

WHY IT MATTERS

It markedly improves fetal outcomes over conventional schedules.

ACTION

Intensify dialysis — longer and more frequent — in the pregnant dialysis patient.

10
Phase C · Level 10

Clinical Pearls

CKD and pregnancy threaten each other — bidirectional risk.
CKD → pre-eclampsia, preterm birth, growth restriction, low birth weight, stillbirth.
Risk graded by stage, hypertension, and proteinuria.
Pregnancy can accelerate CKD, esp. advanced disease — sometimes permanent GFR loss.
Early CKD, normal BP, low proteinuria — usually good outcomes.
Pregnancy lowers creatinine; in CKD the fall may be blunted — a rising creatinine is concerning.
Proteinuria rises physiologically — confounds CKD and pre-eclampsia assessment.
Pre-conception counselling is the key intervention.
STOP before conception: ACEi/ARB, SGLT2i, mycophenolate, cyclophosphamide, methotrexate.
Safe: azathioprine, tacrolimus/ciclosporin, hydroxychloroquine (continue in lupus).
Safe BP: labetalol, nifedipine, methyldopa.
Low-dose aspirin from early pregnancy (CKD is high pre-eclampsia risk).
Transplant: wait for a stable graft (~1–2 years); switch MMF to azathioprine.
Distinguish CKD progression/lupus flare from superimposed pre-eclampsia (timing, severe features, sFlt-1/PlGF).
Lupus: remission before conception; continue hydroxychloroquine.
Dialysis in pregnancy: intensive/more frequent improves fetal outcomes.
Multidisciplinary care throughout; reassess CKD post-partum.
Cross-reference the AKI-in-pregnancy chapter (Volume 5).

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags & Never-Do

Panel A — Red flags

A woman of childbearing potential with CKD on an ACE inhibitor/ARB, SGLT2 inhibitor, or mycophenolate — switch before conception.
A rising or non-falling creatinine in pregnancy — concerning; investigate (progression vs pre-eclampsia).
Worsening BP, proteinuria, and creatinine in the third trimester — superimposed pre-eclampsia until proven otherwise.
Advanced CKD pregnancy — high risk of permanent GFR loss; counsel and monitor closely.
A pregnant dialysis patient on a conventional schedule — intensify dialysis for fetal outcomes.

Panel B — Never do

NEVER — continue ACE inhibitors/ARBs, SGLT2 inhibitors, or mycophenolate into pregnancy.
NEVER — wait until a positive test to review fetotoxic drugs.
NEVER — interpret pregnancy renal numbers against the non-pregnant range.
NEVER — leave a pregnant dialysis patient on a conventional, non-intensified schedule.
12
Phase D · Level 12

Common Pitfalls

Pitfall 1 — Waiting to switch drugs

WRONG Planning to review fetotoxic drugs once the patient is pregnant.
RIGHT Switching them to safe alternatives before conception.
WHY By a positive test, fetotoxic harm may already have begun.

Pitfall 2 — The non-pregnant range

WRONG Reading a pregnant CKD patient's creatinine and proteinuria against the non-pregnant range.
RIGHT Interpreting them against pregnancy physiology (blunted fall, physiologic proteinuria).
WHY A rising creatinine and physiologic proteinuria are missed or misread otherwise.

Pitfall 3 — Focusing only on the fetus

WRONG Managing an advanced-CKD pregnancy with attention only to the baby.
RIGHT Counselling and monitoring the risk of permanent maternal GFR loss too.
WHY Pregnancy can permanently worsen advanced CKD.

Pitfall 4 — Assuming the diagnosis

WRONG Calling a worsening third-trimester picture progression (or pre-eclampsia) without discriminators.
RIGHT Using timing, severe features, and angiogenic markers to distinguish them.
WHY They overlap on an abnormal baseline, and the treatments differ (deliver vs treat medically).

Pitfall 5 — Conventional dialysis in pregnancy

WRONG Keeping a pregnant dialysis patient on her usual thrice-weekly schedule.
RIGHT Intensifying to longer, more frequent dialysis.
WHY Intensive dialysis markedly improves fetal outcomes.
13
Phase D · Level 13

Evidence Grading

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.

Graded statements (by evidence type)

StatementGradeBasis (evidence type)
ACE inhibitors/ARBs and mycophenolate are fetotoxic.AEstablished teratogenicity data
CKD increases adverse pregnancy outcomes, graded by stage/BP/proteinuria.BConsistent observational cohorts
Pregnancy can accelerate CKD progression in advanced disease.BObservational data
Low-dose aspirin reduces pre-eclampsia in high-risk pregnancy.ARCTs
Intensive dialysis improves fetal outcomes in pregnancy.BObservational cohorts
Angiogenic markers (sFlt-1/PlGF) aid pre-eclampsia diagnosis.BValidation studies
Hydroxychloroquine should be continued in lupus pregnancy.BObservational and consensus evidence

Patient Decisions

Phase E Patient Decisions
14
Phase E · Level 14

Absolute Risk in Natural Frequency

Natural-frequency estimates for orientation, from CKD-pregnancy cohorts; they vary greatly with stage, blood pressure, and proteinuria. They convey the size of the decisions, expressed per 100 comparable pregnancies.

Per 100 pregnancies…OutcomeRoughly how manySee
In advanced CKD with HTN/proteinuriaDevelop pre-eclampsia or preterm birthMany — far more than in early CKDL13 row 2
In advanced CKDSuffer permanent GFR loss from the pregnancyA meaningful shareL13 row 3
High-risk given low-dose aspirinAvoid pre-eclampsia vs no aspirinMore with aspirinL13 row 4
On intensive vs conventional dialysisAchieve a live birth / better fetal outcomeMore with intensive dialysisL13 row 5

How to read these

Read these as orientation, not promises; CKD-pregnancy outcomes swing enormously with stage, blood pressure, and proteinuria. The stable signals: risk rises steeply with CKD stage, aspirin reduces pre-eclampsia, and intensive dialysis improves fetal outcomes. Communicate them as people out of 100, not as a hazard ratio.

Apply & Test

Phase F Apply & Test
17
Phase F · Level 17

Documentation Templates

Paste-ready notes. Tick the boxes that apply and delete the rest; make the medication switch and the pregnancy-adjusted interpretation explicit.

Template 1 — Pre-conception counselling / medication switch

  • CKD stage ___ ; BP ___ ; proteinuria ___ — stage-specific risk counselled: ☐ yes.
  • Fetotoxic drugs stopped/switched BEFORE conception: ☐ ACEi/ARB → safe agent ☐ SGLT2i stopped ☐ mycophenolate → azathioprine ☐ other ___ .
  • Safe regimen: ☐ labetalol/nifedipine/methyldopa ☐ azathioprine/tacrolimus ☐ hydroxychloroquine continued (lupus).
  • Prophylaxis planned: ☐ folic acid ☐ low-dose aspirin (from early pregnancy).
  • Transplant: graft stable (~1–2 years), MMF switched: ☐ yes (if applicable).
  • Timing advised when CKD stable / BP controlled / proteinuria low: ☐ yes.

Template 2 — Pregnancy CKD monitoring and management

  • Multidisciplinary team engaged: ☐ nephrology ☐ maternal-fetal medicine ☐ neonatology.
  • BP on safe agents; low-dose aspirin in place: ☐ yes.
  • Monitoring (read against pregnancy physiology): creatinine ___ (blunted fall / rising?), proteinuria ___ , BP ___ ; fetal surveillance.
  • Worsening picture: ☐ distinguish progression/lupus flare vs superimposed pre-eclampsia (timing, severe features, sFlt-1/PlGF).
  • Dialysis (if needed): intensive/more frequent, lower urea target: ☐ yes.
  • Post-partum: ☐ reassess CKD ☐ restart RAAS/SGLT2i appropriately ☐ contraception discussed.
18
Phase F · Level 18

Cheat Sheet

CKD ↔ pregnancy: bidirectional risk.
CKD → pre-eclampsia, preterm, growth restriction, stillbirth (graded by stage/BP/proteinuria).
Pregnancy → accelerated CKD (esp. advanced; can be permanent).
Early CKD + normal BP + low proteinuria → usually good.
Pregnancy lowers creatinine; CKD blunts the fall — rising creatinine = concerning.
Proteinuria rises physiologically — confounds assessment.
Pre-conception counselling = the key intervention.
STOP before conception: ACEi/ARB, SGLT2i, MMF, cyclophosphamide, methotrexate.
Safe: azathioprine, tacrolimus/ciclosporin, hydroxychloroquine.
Safe BP: labetalol, nifedipine, methyldopa.
Low-dose aspirin from early pregnancy.
Transplant: stable graft ~1–2 y; MMF → azathioprine.
Progression/flare vs pre-eclampsia: timing, severe features, sFlt-1/PlGF.
Lupus: remission first; continue hydroxychloroquine.
Dialysis in pregnancy: intensive/more frequent.
MDT throughout; reassess post-partum (cross-ref Vol 5 Ch 16).
19
Phase F · Level 19

Flashcards

CARD 1

Q. What is the bidirectional risk of CKD and pregnancy?

Show answer

A. CKD increases pre-eclampsia, preterm birth, growth restriction, low birth weight, and stillbirth; pregnancy can accelerate CKD, especially advanced disease, sometimes permanently — risk graded by stage, blood pressure, and proteinuria.

DETAILED. Early CKD with normal BP and low proteinuria usually does well.

CLINICAL. Stratify and counsel before conception.

CARD 2

Q. How are renal numbers interpreted in pregnancy with CKD?

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A. Pregnancy raises GFR and lowers creatinine, but in CKD this fall may be blunted, so a rising creatinine is concerning; proteinuria rises physiologically, confounding assessment.

DETAILED. The non-pregnant range misleads.

CLINICAL. Read every renal value against pregnancy physiology.

CARD 3

Q. Which drugs must be switched before conception, and to what?

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A. Stop ACE inhibitors/ARBs, SGLT2 inhibitors, mycophenolate, cyclophosphamide, and methotrexate; switch to azathioprine, tacrolimus or ciclosporin, hydroxychloroquine (continued in lupus), and labetalol/nifedipine/methyldopa.

DETAILED. These are fetotoxic.

CLINICAL. Switch before conception, not after a positive test.

CARD 4

Q. Why is pre-conception counselling the key intervention?

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A. It allows the stage-specific risks to be discussed, the modifiable factors optimised, the fetotoxic drugs switched, and the pregnancy timed for when CKD is most stable — preventing harm before it begins.

DETAILED. Once pregnant on fetotoxic drugs, harm may already have occurred.

CLINICAL. Counsel and optimise before conception.

CARD 5

Q. How do you distinguish CKD progression from superimposed pre-eclampsia?

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A. Both worsen blood pressure, proteinuria, and renal function on an abnormal baseline; use timing, new severe features, and angiogenic markers (sFlt-1/PlGF), with the TMA framework in reserve.

DETAILED. The treatments differ — delivery for pre-eclampsia, medical management for progression or flare.

CLINICAL. Use the discriminators rather than assuming.

CARD 6

Q. What aspirin prophylaxis is used, and why?

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A. Low-dose aspirin from early pregnancy, because CKD is a high pre-eclampsia-risk state and aspirin reduces pre-eclampsia in high-risk pregnancy.

DETAILED. It is an evidence-based prophylactic measure.

CLINICAL. Start low-dose aspirin early in CKD pregnancy.

CARD 7

Q. How should dialysis be delivered in pregnancy?

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A. Intensively — longer and more frequent sessions with a lower urea target — because a cleaner uraemic environment markedly improves fetal outcomes.

DETAILED. This reverses the usual 'standard dose is enough' rule.

CLINICAL. Intensify dialysis in the pregnant dialysis patient.

CARD 8

Q. What are the transplant and lupus considerations?

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A. Advise waiting until the graft is stable (typically 1–2 years post-transplant) and switch mycophenolate to azathioprine; in lupus, ensure remission before conception and continue hydroxychloroquine.

DETAILED. Both reduce the risk of flare and fetal harm.

CLINICAL. Time the pregnancy and use safe immunosuppression.

20
Phase F · Level 20

One-Minute Preceptor

SCENE 1
The intern deferring the drug switch
GET A COMMITMENT“You plan to review her ACE inhibitor and SGLT2 inhibitor if she becomes pregnant — why wait?”
PROBE FOR EVIDENCE“We'll catch it early” — ask: “What do these drugs do to the fetus, and when does that harm start?”
TEACH A GENERAL RULEFetotoxic drugs must be switched before conception, because by a positive test the harm may already have begun — pre-conception is where it's prevented.
REINFORCE WHAT WAS RIGHTRecognising the drugs need review was correct.
CORRECT A MISTAKESwitch them now to safe alternatives and counsel her before she tries to conceive.
SCENE 2
The resident on the usual dialysis schedule
GET A COMMITMENT“You're keeping this pregnant dialysis patient on thrice-weekly — your reasoning?”
PROBE FOR EVIDENCE“It's adequate for her” — ask: “What does the uraemic environment do to the fetus, and what does intensive dialysis change?”
TEACH A GENERAL RULEIntensive, more frequent dialysis maintains a cleaner environment and markedly improves fetal outcomes — here, more dialysis genuinely helps.
REINFORCE WHAT WAS RIGHTThinking about adequacy was reasonable.
CORRECT A MISTAKEIntensify her dialysis with obstetric input for the pregnancy.
22
Phase F · Level 22

Board-Style Questions

Q 01
A woman with proteinuric CKD on an ACE inhibitor and an SGLT2 inhibitor is planning pregnancy. The correct action is to:

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Q 02
How should a creatinine that fails to fall in pregnancy in a CKD patient be interpreted?

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Q 03
Which immunosuppressant must be switched before pregnancy, and to what?

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Q 04
Which prophylaxis reduces pre-eclampsia in a CKD pregnancy?

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Q 05
In the third trimester, a CKD patient develops worsening BP, proteinuria, and creatinine. The diagnostic approach is to:

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Q 06
How should dialysis be delivered to a pregnant patient?

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Q 07
A transplant recipient is considering pregnancy. The advice is to:

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Q 08
Pregnancy can accelerate CKD progression chiefly because:

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Q 09
Across 100 advanced-CKD pregnancies with hypertension and proteinuria versus early CKD, the outcomes are best described as:

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