10

APPLIED CHRONIC KIDNEY DISEASE · VOLUME 6

Chapter 10

Cardiovascular Disease

The Dominant Killer in CKD: Statins, SCD & Renalism

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

Signals declared

  • Sig-D — Diagnostic (primary). Recognise CKD as a high-risk cardiovascular state, the distinctive forms its disease takes, and the pitfalls of interpreting troponin.
  • Sig-T — Therapeutic (strong). Statins where they work, the pillars as cardiovascular protection, antiplatelets and anticoagulation, and the avoidance of under-treatment.
  • Sig-V — Evidence-dense (strong). The statin trials and the dialysis paradox, the exclusion of CKD from cardiovascular trials, and the resulting evidence gaps — graded and reflected on.

Levels populated and omitted

Populated (18): L1–L5, L7, L8, L10–L14, L17–L22. The therapeutic and evidence signals fire the absolute-risk table (L14), the templates (L17), and the reflective prompts (L21); the diagnostic signal drives the tables, rules, cases, pitfalls, and board items.

  • L6 / L9 mechanism levels — omitted. No Sig-M; the distinctive pathology of CKD cardiovascular disease is summarised in narrative rather than mapped.
  • L15 / L16 preference-sensitive map and SDM scripts — omitted. No Sig-E; treating cardiovascular risk in CKD is effective care.
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

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

  • Explain why most CKD patients die of cardiovascular disease rather than reaching ESKD.
  • Describe the distinctive forms of cardiovascular disease in CKD, including structural disease and sudden cardiac death.
  • List the traditional and non-traditional cardiovascular risk factors in CKD.
  • Interpret a chronically elevated troponin and recognise acute coronary syndrome against it.
  • Apply the statin evidence — initiating in non-dialysis CKD but not in dialysis.
  • Use the progression-slowing pillars as cardiovascular protection.
  • Recognise and avoid 'renalism' — the under-treatment of cardiovascular disease in CKD.
  • Navigate antiplatelet and anticoagulant decisions given the dual stroke and bleeding risk.
02
Phase A · Level 2

Executive Summary

  • Cardiovascular disease is the leading cause of death in CKD; most patients, especially in earlier stages, die of it rather than reaching dialysis.
  • CKD is an independent, graded cardiovascular risk factor — risk rises as eGFR falls and albuminuria increases.
  • The disease is not only accelerated atherosclerosis: it includes left ventricular hypertrophy, heart failure, arterial stiffness from medial calcification, valvular calcification, and sudden cardiac death.
  • Sudden cardiac death is a major mode of death, particularly in advanced and dialysis CKD.
  • Risk is driven by traditional factors plus non-traditional ones — uraemia, inflammation, oxidative stress, CKD-MBD and vascular calcification, anaemia, volume overload, and FGF23.
  • Standard risk scores underestimate the risk; most CKD patients should be regarded as high cardiovascular risk.
  • Troponin is chronically elevated in CKD from reduced clearance and subclinical injury, so acute coronary syndrome is diagnosed by the trend in high-sensitivity troponin, not a single value.
  • Statins (with ezetimibe) reduce atherosclerotic events in non-dialysis CKD, but starting a statin in a dialysis patient has not shown benefit.
  • So initiate statin therapy in non-dialysis CKD, continue it if a patient is already on one at dialysis start, but do not routinely initiate it in dialysis.
  • The progression-slowing pillars are also cardiovascular protection — SGLT2 inhibitors reduce heart-failure hospitalisation and cardiovascular death, and blood-pressure control and RAAS blockade reduce events.
  • Antiplatelets are used for established atherosclerotic disease, weighing the higher bleeding risk; anticoagulation for atrial fibrillation must balance elevated stroke and bleeding risk and is genuinely uncertain in advanced CKD.
  • Renalism — withholding beneficial cardiac investigation and treatment from CKD patients out of misplaced caution — is common and causes harm.
  • CKD patients are under-offered angiography, revascularisation, anticoagulation, and cardiac surgery, worsening their outcomes.
  • CKD has often been excluded from cardiovascular trials, leaving an evidence gap that explains why some CKD-specific results differ from the general population.
03
Phase A · Level 3

Main Narrative

For most people with CKD, the kidney is not what kills them — the heart is. Cardiovascular disease is the dominant cause of death across the CKD spectrum, and especially in the earlier stages, where patients are far more likely to die of a cardiovascular event than to ever reach dialysis. That single fact reframes CKD care: managing the kidney is, in large part, managing cardiovascular risk. But the cardiovascular disease of CKD is distinctive, the evidence is patchy because CKD patients were excluded from the trials, and the commonest error is not over-treatment but under-treatment.

The dominant killer, and a different disease

CKD is an independent and graded cardiovascular risk factor — the same heatmap that predicts kidney outcomes predicts cardiovascular ones, with risk rising as eGFR falls and albuminuria climbs. But the disease is not simply more atherosclerosis. Alongside accelerated coronary, cerebrovascular, and peripheral atherosclerosis sit a set of structural and electrical problems: left ventricular hypertrophy driven by pressure, volume, and anaemia; heart failure, the cardiorenal syndrome of the previous volume; arterial stiffness from the medial calcification of CKD-MBD; valvular calcification; and, prominently, sudden cardiac death, which becomes a leading mode of death in advanced and dialysis CKD. This breadth matters because interventions aimed only at atherosclerotic plaque — statins, for instance — address only part of the problem, which is part of why their benefit attenuates in advanced disease where calcification and sudden death dominate.

Why the risk is so high

The risk is the sum of two lists. The traditional factors — hypertension, diabetes, dyslipidaemia, smoking — are common in CKD and matter. But layered on top are the non-traditional, CKD-specific factors: the uraemic milieu with its retained toxins, chronic inflammation and oxidative stress, the mineral-bone disorder and vascular calcification of Chapter 8, anaemia, volume overload, and elevated FGF23 and phosphate. Because of this second list, standard cardiovascular risk calculators — built in non-CKD populations — systematically underestimate the risk, and the practical rule is to regard most CKD patients as high cardiovascular risk rather than relying on a score that was never calibrated for them.

The troponin trap

A specific diagnostic pitfall deserves attention. Troponin is frequently and chronically elevated in CKD, both because reduced renal clearance raises the baseline level and because subclinical myocardial injury is genuinely common. The trap is bidirectional: a clinician may dismiss a real acute coronary syndrome as 'just the CKD baseline,' or may over-react to a chronically elevated value in an asymptomatic patient. The resolution is to diagnose acute coronary syndrome from the trend — a significant rise and fall on serial high-sensitivity troponin, in the right clinical context — rather than from a single elevated value read against a non-CKD reference range. The baseline is elevated; the acute event is a change from it.

Statins, and the dialysis paradox

Lipid-lowering in CKD is the clearest illustration of why the evidence must be read carefully. The large SHARP trial of simvastatin with ezetimibe in CKD reduced atherosclerotic cardiovascular events, establishing the benefit of statin-based therapy in the CKD population. But the benefit is not uniform across that population: dedicated trials of starting a statin in haemodialysis patients — atorvastatin in diabetic dialysis patients, rosuvastatin in a broader dialysis population — were negative, showing no reduction in cardiovascular events. The likely explanation returns to the first section: in dialysis, the cardiovascular disease is increasingly calcification and sudden death rather than the lipid-driven atherosclerotic plaque that statins target. The resulting guidance is precise: initiate a statin (with or without ezetimibe) in non-dialysis CKD, particularly in adults over fifty; continue it if a patient is already taking one when they start dialysis; but do not routinely initiate a statin in a patient already on dialysis. And the approach is 'fire and forget' — a fixed regimen rather than titration to an LDL target.

The pillars are cardiovascular drugs too

It is easy to compartmentalise the progression-slowing pillars as 'kidney drugs,' but they are among the most effective cardiovascular interventions in CKD. SGLT2 inhibitors reduce heart-failure hospitalisation and cardiovascular death, benefits established in the heart-failure trials and carried into the CKD trials of Chapter 5. Blood-pressure control, on the SPRINT model of Chapter 4, reduces cardiovascular events, and RAAS blockade reduces them too, with GLP-1 agonists adding cardiovascular benefit in the diabetic. So the pillars do double duty, and the cardiovascular indication reinforces the renal one — another reason that, for most patients with progressive CKD, these drugs are not optional. Managing the traditional risk factors — glycaemia, lipids, blood pressure, smoking — completes the preventive package.

Antiplatelets, anticoagulation, and the hard decisions

Two areas are genuinely difficult because CKD raises both thrombotic and bleeding risk at once. Antiplatelet therapy is used for established atherosclerotic disease as secondary prevention, accepting the higher bleeding risk that CKD confers, while its role in primary prevention is uncertain. Anticoagulation for atrial fibrillation is harder still: CKD raises the risk of both stroke and bleeding, so the net benefit is finely balanced. In moderate CKD, dose-adjusted direct oral anticoagulants are generally preferred to warfarin, but in advanced CKD and dialysis the decision becomes genuinely uncertain — warfarin raises concerns about vascular calcification and calciphylaxis, while direct oral anticoagulants may accumulate, and the trial evidence is thin. These decisions are individualised, weighing the competing risks rather than applying a general-population rule. Sudden cardiac death, the other major threat, has frustratingly little proven prevention: managing electrolytes and avoiding QT-prolonging drugs help, but prophylactic defibrillators have not shown the benefit in dialysis that they do in the general heart-failure population.

Renalism: the error of under-treatment

If there is one behavioural lesson in this chapter, it is to beware renalism — the systematic under-treatment of cardiovascular disease in CKD patients out of misplaced caution. Fearing contrast nephropathy, bleeding, or futility, clinicians too often withhold from CKD patients the very interventions that would help them: coronary angiography and revascularisation, anticoagulation for atrial fibrillation, cardiac surgery, and even statins. The data are consistent that CKD patients are under-offered evidence-based cardiac care and that this under-treatment worsens their already high-risk outcomes. The corrective is not recklessness but proportion: contrast can be given with appropriate precautions for an indicated angiogram, anticoagulation can be considered on its merits, and a high-risk patient who would benefit from an intervention should not be denied it simply because they have CKD. The cardiovascular disease that kills them deserves to be treated.

Where the evidence is firm, and where it is absent

The firm parts: CKD is a major cardiovascular risk state, statins help in non-dialysis CKD, SGLT2 inhibitors reduce heart-failure and cardiovascular outcomes, and renalism causes harm. The conspicuous gaps come from a structural problem — CKD patients, especially advanced and dialysis patients, were routinely excluded from the landmark cardiovascular trials, so much of what we 'know' is extrapolated rather than tested. This is why the dialysis statin result surprised people, why anticoagulation in advanced CKD remains unresolved, and why sudden-cardiac-death prevention is weak. The honest stance is to apply the CKD-specific evidence where it exists — statins in non-dialysis disease, the pillars throughout — to extrapolate cautiously where it does not, and above all to resist the reflex to under-treat the leading cause of death in our patients.

04
Phase A · Level 4

Reference Tables

Table 10.1 — Cardiovascular disease types in CKD

TypeDetail
Accelerated atherosclerosisCoronary, cerebrovascular, peripheral
Left ventricular hypertrophyPressure, volume, anaemia
Heart failureCardiorenal syndrome (Volume 5)
Arterial / valvular calcificationMedial calcification → stiffness (CKD-MBD, Chapter 8)
Sudden cardiac deathMajor mode, especially in advanced/dialysis CKD

Table 10.2 — Risk factors: traditional and non-traditional

CategoryFactors
TraditionalHypertension, diabetes, dyslipidaemia, smoking
Uraemic / inflammatoryUraemic toxins, chronic inflammation, oxidative stress
CKD-MBDVascular calcification, FGF23, hyperphosphataemia
Other CKD-specificAnaemia, volume overload
ImplicationStandard scores underestimate — treat most CKD as high risk

Table 10.3 — Statins in CKD: the evidence

SettingAction / evidence
Non-dialysis CKDInitiate statin ± ezetimibe — reduces atherosclerotic events (SHARP)
Already on a statin at dialysis startContinue it
Initiating in dialysisDo NOT — negative trials (4D, AURORA)
ApproachFixed regimen ('fire and forget'), not titration to an LDL target

Table 10.4 — The pillars as cardiovascular protection

TherapyCardiovascular benefit
SGLT2 inhibitorsReduce heart-failure hospitalisation and cardiovascular death
Blood-pressure controlReduces cardiovascular events (SPRINT, Chapter 4)
RAAS blockadeReduces cardiovascular events
GLP-1 receptor agonistsCardiovascular benefit in diabetes
Risk-factor controlGlycaemia, lipids, blood pressure, smoking cessation

Table 10.5 — Antiplatelets and anticoagulation in CKD

DecisionDetail
Antiplatelet (secondary prevention)Use for established atherosclerotic disease; higher bleeding risk
Antiplatelet (primary prevention)Uncertain benefit
Anticoagulation, moderate CKDDose-adjusted DOAC generally preferred to warfarin
Anticoagulation, advanced/dialysisGenuinely uncertain — individualise (calcification vs accumulation)

Table 10.6 — Renalism: the under-treatment to avoid

Withheld interventionConsequence of withholding
Coronary angiography / revascularisationMissed treatment of ischaemia
Anticoagulation for AFPreventable stroke
Cardiac surgeryDenied benefit
Statins (non-dialysis)Missed event reduction
PrincipleTreat the leading cause of death — with precautions, not avoidance

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging & Flowchart Specifications

Figure 10.1 — The competing-risk picture
Figure 10.1 — The competing-risk picture
Figure 10.2 — A different cardiovascular disease
Figure 10.2 — A different cardiovascular disease
Figure 10.3 — The renalism trap
Figure 10.3 — The renalism trap
Flowchart 10.A — Cardiovascular care in CKD
Flowchart 10.A — Cardiovascular care in CKD

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

CASE 1WHAT WILL KILL HIM?

The heart, not the kidneyPrioritising cardiovascular risk

Presentation

A 60-year-old with CKD G3a, diabetes, and hypertension is followed closely for his kidney function, but his cardiovascular risk factors receive little attention because the focus is on 'preventing dialysis.'

Pause and reflect

Given his stage and comorbidities, what is the most likely cause of death — and where should the effort go?

Analysis

At CKD G3a with diabetes and hypertension, he is far more likely to die of a cardiovascular event than to reach dialysis. Focusing only on the kidney number misallocates effort: his cardiovascular risk is high, standard scores underestimate it, and it is the dominant threat to his life. Cardiovascular risk modification is not a side issue here — it is the main event.

Plan

Treat him as high cardiovascular risk: optimise blood pressure and glycaemia, ensure a statin and the SGLT2-inhibitor pillar, address smoking and lipids, and use RAAS blockade. The renal and cardiovascular plans reinforce each other.

Teaching point

Most CKD patients die of cardiovascular disease, not ESKD — manage cardiovascular risk as the dominant threat, not an afterthought.

Cross-reference

Exercises rules R1 and R2; the competing-risk figure (10.1); Tables 10.2 and 10.4.

CASE 2THE DIALYSIS STATIN QUESTION

Where the evidence divergesStatins in dialysis versus non-dialysis

Presentation

Two patients are considered for a statin: one with non-dialysis CKD G3b and one established on haemodialysis with no prior statin. The team plans to start statins in both, citing 'high cardiovascular risk.'

Pause and reflect

Does the statin evidence apply equally to both patients?

Analysis

It does not. In non-dialysis CKD, statin-based therapy reduces atherosclerotic events (SHARP), so the G3b patient should start one. But dedicated trials of initiating a statin in dialysis patients were negative, likely because their cardiovascular disease is increasingly calcification and sudden death rather than lipid-driven plaque — so starting a statin in the dialysis patient is not indicated. Had he already been on a statin at dialysis start, it would be continued.

Plan

Start a statin (with ezetimibe if needed) in the non-dialysis G3b patient. Do not initiate a statin in the dialysis patient who is not already on one; focus his cardiovascular care on the pillars, risk factors, and avoiding renalism.

Teaching point

Initiate statins in non-dialysis CKD, but not in dialysis — the evidence diverges because the disease does.

Cross-reference

Exercises rule R3; Figure 10.2; Table 10.3; the L21 reflective prompts.

CASE 3DENIED THE ANGIOGRAM

Renalism in actionAvoiding under-treatment

Presentation

A CKD G4 patient with an acute coronary syndrome is managed conservatively without angiography because the team fears contrast nephropathy and considers intervention 'too risky given the kidneys.' He has a poor outcome.

Pause and reflect

Was withholding angiography the right call, or an example of renalism?

Analysis

This is renalism — the under-treatment of cardiovascular disease in CKD out of misplaced caution. The fear of contrast and of intervention led to withholding an indicated, potentially life-saving procedure, and the data consistently show that such under-treatment worsens outcomes in already high-risk patients. Contrast can be given with precautions, and a CKD patient with an acute coronary syndrome should not be denied angiography simply because of their kidneys.

Plan

Offer guideline-indicated angiography and revascularisation with appropriate contrast precautions and peri-procedural care, weighing the real benefit against manageable risks. Apply the same principle to anticoagulation, cardiac surgery, and statins — treat, with precautions, rather than withhold.

Teaching point

Renalism — withholding beneficial cardiac care from CKD patients — harms. Treat the indicated disease with precautions, not avoidance.

Cross-reference

Exercises rules R6 and R7; the renalism figure (10.3); Table 10.6; the renalism caution in Chapter 3.

CASE 4THE 'HIGH' TROPONIN

Read the trendTroponin in CKD

Presentation

A CKD patient with chest pain has a troponin above the reference range. One clinician dismisses it as 'the CKD baseline'; another wants to act on the single value alone.

Pause and reflect

How should a single elevated troponin be interpreted in CKD?

Analysis

Both clinicians are partly wrong. Troponin is chronically elevated in CKD from reduced clearance and subclinical injury, so a single value above the reference range neither confirms nor excludes an acute coronary syndrome. The diagnosis rests on the trend — a significant rise and fall on serial high-sensitivity troponin, interpreted in the clinical context — not on the elevated baseline and not dismissed as 'just the CKD.'

Plan

Obtain serial high-sensitivity troponins and look for a significant dynamic change against his baseline, combined with the clinical picture and ECG, to diagnose or exclude an acute coronary syndrome — rather than acting on, or dismissing, a single value.

Teaching point

Troponin is chronically elevated in CKD — diagnose acute coronary syndrome from the rising-and-falling trend, not a single value.

Cross-reference

Exercises rule R4; the troponin discussion in L3.

10
Phase C · Level 10

Clinical Pearls

Most CKD patients die of cardiovascular disease, not ESKD — especially earlier stages.
CKD is an independent, graded cardiovascular risk factor (the heatmap).
CKD cardiovascular disease is more than plaque: LVH, HF, calcification, sudden death.
Sudden cardiac death is a major mode, especially in dialysis.
Risk = traditional factors + non-traditional (uraemia, inflammation, CKD-MBD, anaemia, FGF23).
Standard risk scores underestimate — treat most CKD as high risk.
Troponin is chronically elevated in CKD — diagnose ACS by the trend.
Statins (± ezetimibe) reduce events in non-dialysis CKD (SHARP).
Do NOT initiate statins in dialysis (4D, AURORA negative); continue if already on.
'Fire and forget' statin regimen — not titration to an LDL target.
The pillars are cardiovascular drugs: SGLT2i cut HF/CV death; BP and RAAS reduce events.
Antiplatelets for established atherosclerotic disease (higher bleeding risk).
Anticoagulation for AF: balance stroke vs bleeding; DOAC in moderate CKD; uncertain in advanced.
Sudden-death prevention is weak; prophylactic ICD unproven in dialysis.
Renalism (under-treatment from misplaced caution) is common and harmful.
Treat the leading cause of death — with precautions, not avoidance.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags & Never-Do

Panel A — Red flags

A CKD patient with an acute coronary syndrome being managed conservatively for fear of contrast — renalism; offer indicated angiography with precautions.
A dynamic rise-and-fall in high-sensitivity troponin — acute coronary syndrome, not the CKD baseline; act on it.
A statin being started in a dialysis patient — not indicated (negative trials); reserve initiation for non-dialysis CKD.
Progressive vascular calcification and LVH — high sudden-death risk; optimise the modifiable factors.
AF in CKD with stroke risk — don't reflexively withhold anticoagulation; weigh stroke against bleeding individually.

Panel B — Never do

NEVER — treat CKD cardiovascular risk as secondary to the kidney number — it is the leading cause of death.
NEVER — diagnose or exclude ACS from a single troponin in CKD — use the trend.
NEVER — initiate a statin in a dialysis patient expecting cardiovascular benefit.
NEVER — withhold indicated cardiac investigation or treatment from a CKD patient out of reflexive caution.
12
Phase D · Level 12

Common Pitfalls

Pitfall 1 — Kidney tunnel vision

WRONG Focusing only on preventing dialysis while neglecting cardiovascular risk.
RIGHT Managing cardiovascular risk as the dominant threat.
WHY Most CKD patients die of cardiovascular disease before reaching ESKD.

Pitfall 2 — Statins everywhere

WRONG Starting a statin in a dialysis patient because they are high-risk.
RIGHT Initiating in non-dialysis CKD but not in dialysis (continuing if already on).
WHY Trials of initiating statins in dialysis were negative — the disease differs.

Pitfall 3 — Misreading troponin

WRONG Dismissing a troponin as 'CKD baseline' or acting on a single value.
RIGHT Diagnosing ACS from a significant rise-and-fall trend in context.
WHY Troponin is chronically elevated in CKD; the acute event is a change.

Pitfall 4 — Renalism

WRONG Withholding angiography, anticoagulation, or surgery from a CKD patient out of caution.
RIGHT Offering indicated cardiac care with appropriate precautions.
WHY Under-treatment worsens outcomes in already high-risk patients.

Pitfall 5 — Forgetting the pillars are CV drugs

WRONG Viewing SGLT2 inhibitors and RAAS blockade as kidney-only therapies.
RIGHT Using them as cardiovascular protection too.
WHY SGLT2 inhibitors reduce heart-failure and cardiovascular death.
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)
CKD is an independent, graded cardiovascular risk factor.ALarge consortium cohorts
Statins reduce atherosclerotic events in non-dialysis CKD.ARCT (SHARP-type)
Initiating statins in dialysis does not reduce cardiovascular events.ARCTs (4D, AURORA-type)
SGLT2 inhibitors reduce heart-failure and cardiovascular outcomes.AMultiple RCTs
Renalism (cardiovascular under-treatment) worsens CKD outcomes.BConsistent observational data
Anticoagulation choice in advanced CKD is uncertain.CLimited and conflicting evidence
Prophylactic ICDs lack proven benefit in dialysis.BRCT and observational data

Patient Decisions

Phase E Patient Decisions
14
Phase E · Level 14

Absolute Risk in Natural Frequency

Natural-frequency estimates for orientation, from CKD cardiovascular cohorts and trials; they vary with stage and risk. They convey the size of the cardiovascular decisions, expressed per 100 comparable patients.

Per 100 patients…OutcomeRoughly how manySee
With earlier-stage CKDDie of cardiovascular disease vs reach dialysisFar more die of CVDL13 row 1
Non-dialysis CKD given a statinAvoid an atherosclerotic eventA meaningful severalL13 row 2
Dialysis patients started on a statinAvoid a cardiovascular eventNo more than placeboL13 row 3
With CKD denied indicated cardiac care (renalism)Have a worse outcomeMore than those treatedL13 row 5

How to read these

Read these as orientation, not promises; CKD cardiovascular outcomes vary with stage and competing risk. The stable signals: cardiovascular death dominates, statins help in non-dialysis but not when started in dialysis, and renalism worsens 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 high-risk status and the anti-renalism stance explicit.

Template 1 — Cardiovascular risk assessment and statin plan

  • CKD stage ___ ; regarded as high cardiovascular risk (scores underestimate): ☐ yes.
  • Traditional factors addressed: ☐ BP ☐ glycaemia ☐ lipids ☐ smoking.
  • Pillars as CV protection in place: ☐ SGLT2 inhibitor ☐ RAAS blockade ☐ ± GLP-1.
  • Statin: ☐ initiated (non-dialysis CKD, ± ezetimibe) ☐ continued (already on at dialysis start) ☐ not initiated (on dialysis).
  • Troponin interpreted by trend (hs-troponin) if ACS suspected: ☐ yes.

Template 2 — CKD cardiac-care checklist (avoid renalism)

  • Indicated angiography/revascularisation offered with contrast precautions: ☐ yes ☐ declined with documented reason.
  • Atrial fibrillation: anticoagulation considered on merits (stroke vs bleeding); ☐ DOAC (moderate CKD) ☐ individualised (advanced).
  • Cardiac surgery / device therapy not withheld solely for CKD: ☐ confirmed.
  • Antiplatelet for established atherosclerotic disease: ☐ yes (bleeding risk weighed).
  • Sudden-death modifiable factors optimised (electrolytes, QT drugs avoided): ☐ yes.
  • Decision documented as treat-with-precautions, not reflexive avoidance: ☐ yes.
18
Phase F · Level 18

Cheat Sheet

CVD is the leading cause of death in CKD (esp. earlier stages).
CKD = independent, graded CV risk (heatmap).
CKD CVD = atherosclerosis + LVH + HF + calcification + sudden death.
Risk = traditional + non-traditional (uraemia, inflammation, MBD, anaemia, FGF23).
Standard scores underestimate — treat most CKD as high risk.
Troponin chronically elevated — diagnose ACS by TREND (hs-troponin).
Statins ± ezetimibe in NON-dialysis CKD (SHARP).
Do NOT initiate statins in dialysis (4D/AURORA); continue if already on.
Fire-and-forget statin (no LDL titration target).
Pillars = CV drugs: SGLT2i ↓ HF/CV death; BP/RAAS ↓ events.
Antiplatelet: secondary prevention (bleeding risk).
AF anticoagulation: DOAC in moderate CKD; uncertain in advanced/dialysis.
Sudden-death prevention weak; prophylactic ICD unproven in dialysis.
RENALISM = under-treating CV disease in CKD — common and harmful.
Treat with precautions, not avoidance.
CKD excluded from many CV trials — an evidence gap.
19
Phase F · Level 19

Flashcards

CARD 1

Q. Why does cardiovascular disease dominate CKD outcomes?

Show answer

A. CKD is an independent, graded cardiovascular risk factor, and most patients — especially in earlier stages — die of cardiovascular disease before ever reaching dialysis.

DETAILED. Standard risk scores underestimate the risk.

CLINICAL. Treat most CKD patients as high cardiovascular risk.

CARD 2

Q. How is CKD cardiovascular disease distinctive?

Show answer

A. It is more than accelerated atherosclerosis — it includes left ventricular hypertrophy, heart failure, arterial and valvular calcification, and sudden cardiac death.

DETAILED. Statins target only the atherosclerotic component.

CLINICAL. Address the full spectrum, not just lipids.

CARD 3

Q. How should troponin be interpreted in CKD?

Show answer

A. It is chronically elevated from reduced clearance and subclinical injury, so acute coronary syndrome is diagnosed from a significant rise-and-fall trend on high-sensitivity troponin, not a single value.

DETAILED. Neither dismiss it nor act on one elevated value.

CLINICAL. Read the trend in context.

CARD 4

Q. What is the statin evidence in CKD?

Show answer

A. Statins (with ezetimibe) reduce atherosclerotic events in non-dialysis CKD (SHARP), but initiating a statin in dialysis patients is not beneficial (4D, AURORA).

DETAILED. Dialysis cardiovascular disease is more calcification and sudden death than lipid plaque.

CLINICAL. Initiate in non-dialysis CKD; continue if already on at dialysis start; don't initiate in dialysis.

CARD 5

Q. How do the progression-slowing pillars protect the heart?

Show answer

A. SGLT2 inhibitors reduce heart-failure hospitalisation and cardiovascular death; blood-pressure control and RAAS blockade reduce events; GLP-1 agonists add benefit in diabetes.

DETAILED. They are cardiovascular as well as kidney drugs.

CLINICAL. Use the pillars for cardiovascular protection too.

CARD 6

Q. How are antiplatelets and anticoagulation handled in CKD?

Show answer

A. Antiplatelets for established atherosclerotic disease, accepting higher bleeding risk; anticoagulation for AF balancing elevated stroke and bleeding risk — a dose-adjusted DOAC in moderate CKD, individualised in advanced disease.

DETAILED. CKD raises both thrombotic and bleeding risk.

CLINICAL. Weigh the competing risks individually.

CARD 7

Q. What is renalism, and why does it matter?

Show answer

A. The systematic under-treatment of cardiovascular disease in CKD — withholding angiography, revascularisation, anticoagulation, surgery, or statins — out of misplaced caution, which worsens outcomes.

DETAILED. It is common and harmful.

CLINICAL. Treat indicated disease with precautions, not avoidance.

CARD 8

Q. Why is the cardiovascular evidence in CKD often uncertain?

Show answer

A. CKD patients, especially advanced and dialysis patients, were routinely excluded from the landmark cardiovascular trials, leaving an evidence gap filled by extrapolation.

DETAILED. This is why the dialysis statin result surprised and why anticoagulation in advanced CKD is unresolved.

CLINICAL. Apply CKD-specific evidence where it exists, extrapolate cautiously elsewhere.

20
Phase F · Level 20

One-Minute Preceptor

SCENE 1
The intern starting a statin in dialysis
GET A COMMITMENT“You're starting a statin in this dialysis patient — why?”
PROBE FOR EVIDENCE“He's high cardiovascular risk” — ask: “What did the trials of starting statins in dialysis show, and why might they differ from SHARP?”
TEACH A GENERAL RULEStatins reduce events in non-dialysis CKD but not when started in dialysis, where calcification and sudden death dominate — so don't initiate in dialysis.
REINFORCE WHAT WAS RIGHTRecognising his high risk was correct.
CORRECT A MISTAKEDon't start the statin; focus on the pillars, risk factors, and avoiding renalism.
SCENE 2
The resident withholding the angiogram
GET A COMMITMENT“You're managing this CKD patient's ACS without angiography — what's the reasoning?”
PROBE FOR EVIDENCE“The contrast might harm his kidneys” — ask: “What does withholding indicated cardiac care do to CKD outcomes?”
TEACH A GENERAL RULERenalism — under-treating cardiovascular disease in CKD — worsens outcomes; contrast can be given with precautions, and indicated angiography should not be withheld for the kidneys alone.
REINFORCE WHAT WAS RIGHTConsidering contrast risk was reasonable.
CORRECT A MISTAKEOffer indicated angiography with precautions rather than withholding it.
21
Phase F · Level 21

Reflective Prompts

Genuine tensions this evidence leaves open; sit with them rather than resolving them too quickly.

  • CKD patients were excluded from the very trials that define cardiovascular care, yet they bear the highest risk. How should we practise when the best evidence systematically omits our sickest patients?
  • Statins help in non-dialysis CKD but not when started in dialysis. What does that teach about extrapolating a mechanism (LDL-lowering) across a population whose disease has changed?
  • Renalism is driven by reasonable fears — contrast, bleeding, futility. How do you distinguish appropriate caution from harmful under-treatment in a specific patient?
  • Anticoagulation in advanced CKD pits stroke against bleeding with little trial guidance. How do you make a confident individual decision in genuine evidential equipoise?
  • Sudden cardiac death is a leading mode of death with little proven prevention. How do you communicate a major risk for which you have no strong intervention?
22
Phase F · Level 22

Board-Style Questions

Q 01
For a patient with earlier-stage CKD, the most likely cause of death is:

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Q 02
Cardiovascular disease in CKD is best described as:

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Q 03
How should a single elevated troponin be interpreted in a CKD patient with chest pain?

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Q 04
A patient established on haemodialysis with no prior statin is considered for one. The correct action is to:

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Q 05
How should statin therapy be used in non-dialysis CKD?

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Q 06
Which therapy provides both kidney and cardiovascular protection in CKD?

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Q 07
A CKD G4 patient with an acute coronary syndrome is managed conservatively for fear of contrast. This illustrates:

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Q 08
Anticoagulation for atrial fibrillation in advanced CKD is best described as:

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Q 09
Across 100 dialysis patients started on a statin versus placebo, the effect on cardiovascular events is best described as:

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