03

APPLIED CHRONIC KIDNEY DISEASE · VOLUME 6

Chapter 3

The CKD Clinic

Assessment, Monitoring & the Referral Pathway

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

Signals declared

  • Sig-D — Diagnostic (primary). Assess the new CKD patient, find the cause and the reversible factors, and monitor the trajectory and complications over time.
  • Sig-T — Therapeutic (strong). Run a proactive, structured clinic: deliver the progression-slowing basics, screen and treat complications, immunise, and refer at the right time.
  • Sig-M — Mechanistic (secondary). The monitoring rationale follows from the pathway of Chapter 2 — the GFR trajectory is the loop's speed, albuminuria is the response marker, and complications appear as the failing kidney's functions decline.

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 documentation 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; structured assessment and monitoring are effective care. The preference-sensitive decisions of advanced CKD belong to Chapters 14, 17, and 18.
  • L21 reflective prompts — omitted. No Sig-E/V; the chapter's tensions (referral thresholds, screening intensity) are worked through the pitfalls (L12).
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

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

  • Perform a structured initial assessment of a new CKD patient, identifying the cause and the reversible factors.
  • Stage by CGA, place on the heatmap, and compute the kidney-failure risk equation to set the management intensity.
  • Set a monitoring schedule for eGFR and albuminuria scaled to the patient's risk.
  • Define progression and rapid progression, and investigate a steepening GFR trajectory.
  • Screen proactively for the complications of CKD at the GFR thresholds at which they appear.
  • Deliver the proactive clinic basics: progression-slowing therapy, cardiovascular risk, immunisation, and nephrotoxin avoidance.
  • Apply the criteria for nephrology referral and the shared-care model with primary care.
  • Recognise when a high-risk patient should enter the predialysis pathway.
02
Phase A · Level 2

Executive Summary

  • The CKD clinic does three things: assess and diagnose, monitor over time, and deliver proactive, structured care — all calibrated to risk.
  • The initial assessment identifies the cause (history, examination, urine, bloods, imaging, and selective serology or biopsy) and stages by CGA.
  • Always search for reversible or treatable factors — obstruction, nephrotoxins, volume depletion, uncontrolled blood pressure or glucose, and infection.
  • Monitoring frequency is scaled to the heatmap: low-risk patients are reviewed annually, high-risk patients every few months.
  • The GFR trajectory is the key prognostic signal; a rapid decline — a sustained fall greater than about 5 mL/min per year, or a category drop with a 25% loss — defines progression and triggers investigation.
  • A steepening trajectory should prompt a search for a superimposed cause: AKI on CKD, obstruction, a nephrotoxin, or uncontrolled risk factors.
  • Albuminuria is followed as a response marker — a falling ACR signals that progression-slowing therapy is working.
  • Complications appear at predictable GFR thresholds, so screen proactively from G3a–G3b: anaemia, mineral-bone disorder, acidosis, hyperkalaemia, and cardiovascular risk.
  • Most patients with early CKD die of cardiovascular disease before they ever reach dialysis, so cardiovascular risk is a central clinic task.
  • Review medications at every visit: avoid nephrotoxins, dose-adjust for function, and give sick-day guidance to hold certain drugs during acute illness.
  • Immunise against influenza, pneumococcus, hepatitis B (especially before dialysis), and COVID-19.
  • Refer to nephrology for eGFR below 30, severe albuminuria, rapid progression, AKI, refractory hypertension, persistent hyperkalaemia, or a suspected uncommon or hereditary cause.
  • Most low-risk CKD is managed in primary care with the basics; nephrology focuses on the higher-risk and on preparation for kidney failure.
  • A high kidney-failure risk should move the patient into the predialysis pathway — modality education, access planning, and transplant assessment.
03
Phase A · Level 3

Main Narrative

The CKD clinic turns the staging of Chapter 1 and the pathway of Chapter 2 into recurring, practical care. Its work is unglamorous and structured: find out why the kidneys are failing and whether anything is reversible, watch the trajectory closely enough to catch acceleration, screen for the complications before they cause harm, deliver the handful of therapies that slow progression and protect the heart, and decide — by risk, not by reflex — who needs a nephrologist and who can be cared for closer to home.

The initial assessment

A first CKD visit answers two questions: what is the cause, and what can be reversed? The cause is pursued through a focused history — diabetes, hypertension, family history of kidney disease, nephrotoxin and analgesic use, traditional or herbal remedies, recurrent infection or stones, and features of systemic disease — an examination centred on blood pressure, volume, and systemic signs, and a core set of tests: urinalysis with sediment and an albumin-to-creatinine ratio, creatinine and electrolytes, glucose and HbA1c, and a renal ultrasound for size, structure, obstruction, and cysts. Selective serology — immunological screens, paraprotein studies, viral serology — is added when the picture suggests a specific disease, and biopsy is reserved for when the cause is unclear and the result would change management. The patient is then staged by Cause, GFR, and Albuminuria, placed on the heatmap, and given a kidney-failure risk estimate that sets how intensively everything that follows is done.

Finding the reversible

Before settling into long-term management, the clinic looks hard for anything that can be undone, because reversing it may recover function or halt a decline. Obstruction must be excluded on the ultrasound. Nephrotoxins — non-steroidal anti-inflammatories, certain herbal preparations, an unnecessary RAAS-plus-diuretic combination — are stopped. Volume depletion is corrected, blood pressure and glucose brought under control, and infection treated. This reversible-factor search is not a one-off; at every later visit, and especially when the trajectory worsens, the same checklist is run again, because a treatable insult superimposed on CKD is the commonest reason a stable patient suddenly deteriorates.

Monitoring: frequency by risk

How often to monitor follows directly from the heatmap. A patient in a green, low-risk cell needs little more than an annual eGFR and ACR; a patient in a red, very-high-risk cell needs review every few months. Tailoring frequency to risk concentrates attention where it changes outcomes and spares the low-risk patient needless testing and anxiety. The two numbers tracked at every visit are the eGFR and the albuminuria, because between them they capture both how far the disease has come and how fast it is moving.

The trajectory is the signal

Of everything the clinic measures, the GFR trajectory matters most, because it is the speed of the final common pathway made visible. A slow, stable decline is expected in established CKD; a steepening one is a warning. KDIGO defines progression as a drop in GFR category accompanied by a sustained fall of at least 25% from baseline, and rapid progression as a sustained decline of more than about 5 mL/min per year. A trajectory that accelerates past these markers should never be accepted as 'just the CKD getting worse'; it should trigger a search for a superimposed, often treatable cause — an acute kidney injury on the chronic background, a new obstruction, a nephrotoxin, uncontrolled hypertension or glucose — and an intensification of pathway-targeted treatment. The trajectory is both the alarm and the report card.

Albuminuria as the response marker

The albumin-to-creatinine ratio is followed not only to stage but to judge whether treatment is working. Because proteinuria is a mediator of progression, lowering it slows the disease, so a falling ACR after starting RAAS blockade or an SGLT2 inhibitor is evidence the pathway has been slowed, and a persistently high or rising ACR signals that therapy needs intensifying. In this sense the clinic uses albuminuria the way a diabetes clinic uses HbA1c — a modifiable number that both predicts the future and measures the response to what you have done.

Screening for complications before they harm

As GFR falls, the kidney's excretory and endocrine functions fail in a predictable order, so the complications can be screened for before they cause symptoms. From around G3a to G3b onward the clinic begins checking for anaemia, for the mineral-bone disorder through calcium, phosphate, parathyroid hormone, and vitamin D, for metabolic acidosis through bicarbonate, and for hyperkalaemia, while attending to cardiovascular risk throughout. Each of these is a Part 3 topic in its own right, but the clinic's job is the proactive screening — catching the anaemia, the rising phosphate, or the falling bicarbonate at a routine visit rather than at a crisis. And because cardiovascular disease, not dialysis, is the commonest destination of early CKD, cardiovascular risk management is not a side task but a central one.

Proactive, structured care

The therapeutic core of the clinic is to deliver, reliably and to every eligible patient, the things that work: the progression-slowing pillars of Part 2 — blood-pressure control, RAAS blockade, SGLT2 inhibition, proteinuria reduction — cardiovascular risk reduction including statins, treatment of the complications, immunisation against influenza, pneumococcus, hepatitis B, and COVID-19, careful medication review with nephrotoxin avoidance and sick-day guidance, and patient education that turns the person into an active participant in their own care. Doing this consistently is best achieved with a structured review — a checklist or bundle run at each visit — so that nothing high-yield is missed, the kind of governance the well-run CKD service is built on.

Referral and shared care

Not every CKD patient needs a nephrologist, and deciding who does is a core clinic judgement. Referral is warranted for an eGFR below 30, severe albuminuria, rapid progression, an episode of AKI or an unexplained fall, refractory hypertension on multiple agents, persistent abnormal potassium, recurrent or extensive stones, and any suspected uncommon, genetic, or immunological cause, with an active nephritic sediment prompting urgent referral. Most lower-risk CKD — the green and yellow cells — is well managed in primary care with the same basics, in a shared-care model that reserves specialist time for the higher-risk and for the work of preparing for kidney failure. When the kidney-failure risk equation predicts a meaningful chance of reaching end-stage disease, the patient enters the predialysis pathway of Part 5 — modality education, access planning, transplant assessment, and vaccination — begun early enough to be unhurried. The clinic's referral decisions, like its monitoring, are calibrated to risk rather than to a single threshold.

04
Phase A · Level 4

Reference Tables

Table 3.1 — The initial CKD assessment

DomainContent
HistoryDiabetes, hypertension, family history, nephrotoxins/herbal remedies, stones, systemic disease
ExaminationBlood pressure, volume status, systemic signs
UrineSediment; albumin-to-creatinine ratio
BloodCreatinine/eGFR, electrolytes, glucose/HbA1c; selective serology
ImagingUltrasound — size, structure, obstruction, cysts
BiopsyWhen the cause is unclear and would change management

Table 3.2 — Reversible / treatable factors to find

FactorAction
ObstructionExclude on ultrasound; relieve
NephrotoxinsStop NSAIDs, nephrotoxic herbal remedies, unnecessary combinations
Volume depletionCorrect; review diuretics
Uncontrolled BP / glucoseOptimise control
InfectionTreat; consider obstruction with infection

Table 3.3 — Monitoring frequency by risk (heatmap-scaled)

Risk (heatmap)eGFR + ACR frequencyNote
Low (green)AnnuallyOften primary-care managed
Moderate (yellow)Every 6–12 monthsReinforce basics
High (orange)Every 3–6 monthsScreen complications
Very high (red)Every 1–3 monthsRefer; predialysis planning

Table 3.4 — Defining progression

TermDefinition
ProgressionDrop in GFR category with a sustained ≥ 25% fall from baseline
Rapid progressionSustained decline > ~5 mL/min/1.73 m² per year
Action on accelerationSearch for AKI-on-CKD, obstruction, nephrotoxin, uncontrolled risk factors
ThenIntensify pathway-targeted therapy; consider/expedite referral

Table 3.5 — Complication screening by GFR threshold

ComplicationScreen withFrom about
AnaemiaHaemoglobin (± iron studies)G3a–G3b
Mineral-bone disorderCalcium, phosphate, PTH, vitamin DG3b
Metabolic acidosisBicarbonateG3b–G4
HyperkalaemiaPotassiumG3b onward (and on RAAS)
Cardiovascular riskLipids, BP, glucoseThroughout

Table 3.6 — Criteria for nephrology referral

TriggerDetail
eGFR < 30 (G4–G5)Plan for kidney failure
Severe albuminuria (A3)ACR ≥ 300 mg/g / heavy proteinuria
Rapid progression / AKIAccelerating trajectory or unexplained fall
Refractory hypertensionUncontrolled on ≥ 4 agents
Persistent hyperkalaemia / recurrent stonesAs listed
Uncommon / hereditary / immunological causeActive nephritic sediment → urgent

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging & Flowchart Specifications

Figure 3.1 — The structured CKD visit
Figure 3.1 — The structured CKD visit
Figure 3.2 — Reading the GFR trajectory
Figure 3.2 — Reading the GFR trajectory
Figure 3.3 — Complications appear as GFR falls
Figure 3.3 — Complications appear as GFR falls
Flowchart 3.A — The CKD clinic visit
Flowchart 3.A — The CKD clinic visit
06
Phase B · Level 6

Concept Maps

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

The trajectory as alarm. The final common pathway runs at a rate → the eGFR slope makes it visible → a steepening slope means the loop has accelerated → ACTION: on rapid progression, search for a superimposed cause and intensify therapy.

Albuminuria as report card. Proteinuria mediates progression → therapy that lowers it slows the pathway → a falling ACR signals response, a rising one signals undertreatment → ACTION: follow the ACR and intensify if it does not fall.

Complications by threshold. Falling GFR → excretory and endocrine functions fail in a predictable order → anaemia, mineral-bone disorder, acidosis, hyperkalaemia appear at set thresholds → ACTION: screen proactively from G3a–G3b, before symptoms.

The second hit. A nephrotoxin or AKI superimposed on CKD → an acute acceleration of decline → often the reason a stable patient deteriorates → ACTION: avoid nephrotoxins, give sick-day guidance, and re-run the reversible-factor check when the trajectory worsens.

Cardiovascular dominance. The uraemic, vascular milieu of CKD → accelerated cardiovascular disease → most early-CKD patients die of cardiovascular disease before reaching ESKD → ACTION: make cardiovascular risk reduction a central clinic task, not an afterthought.

07
Phase B · Level 7

Decision Pathways

R1
IF a new patient presents with CKD, THEN assess the cause and search for reversible factors before settling into long-term management.
R2
IF setting a monitoring schedule, THEN scale the frequency of eGFR and ACR to the heatmap risk — annual for green, every few months for red.
R3
IF the GFR trajectory accelerates beyond the progression thresholds, THEN search for a superimposed cause and intensify therapy — do not accept it as 'just the CKD.'
R4
IF albuminuria does not fall on progression-slowing therapy, THEN intensify treatment — the ACR is the response marker.
R5
IF GFR reaches G3a–G3b, THEN begin proactive screening for anaemia, mineral-bone disorder, acidosis, and hyperkalaemia.
R6
IF managing any CKD patient, THEN treat cardiovascular risk — most die of cardiovascular disease before reaching dialysis.
R7
IF a referral criterion is met (eGFR < 30, A3, rapid progression, AKI, refractory hypertension, persistent hyperkalaemia, uncommon cause), THEN refer to nephrology.
R8
IF the kidney-failure risk equation predicts a meaningful ESKD risk, THEN enter the predialysis pathway early — modality education, access planning, transplant assessment.

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

CASE 1THE NEW REFERRAL

Cause and the reversibleThe initial CKD assessment

Presentation

A 58-year-old is referred with a newly noted eGFR of 42 and an ACR of 80 mg/g. She takes regular NSAIDs for joint pain and an over-the-counter herbal remedy, has borderline blood pressure, and has had no prior assessment.

Pause and reflect

Before labelling and monitoring her CKD, what two questions must the first visit answer?

Analysis

The first visit must establish the cause and find what is reversible. Her history already flags two potentially nephrotoxic exposures — the NSAIDs and the herbal remedy — and uncontrolled blood pressure, each correctable. A structured assessment (urine sediment and ACR, bloods, ultrasound, selective serology) will define the cause and exclude obstruction, and CGA staging with a risk estimate will set her management intensity.

Plan

Stop the NSAIDs and the nephrotoxic remedy, control the blood pressure, complete the cause work-up, stage by CGA, and compute the risk equation. Then set risk-scaled monitoring and the progression-slowing basics, rechecking the reversible factors at follow-up.

Teaching point

The first CKD visit answers two questions: what is the cause, and what can be reversed? Reversible factors are found by looking for them.

Cross-reference

Exercises rule R1; Tables 3.1 and 3.2; nephrotoxins in Volume 5 Chapter 8.

CASE 2THE STEEPENING SLOPE

Not 'just the CKD'Investigating rapid progression

Presentation

A patient with stable G3b CKD, whose eGFR had declined by about 2 mL/min per year for years, drops 12 mL/min over four months. A colleague attributes it to 'the CKD progressing' and plans no investigation.

Pause and reflect

Is a sudden steepening of the trajectory just the natural course — or a signal?

Analysis

This is rapid progression, well beyond her established slope, and accepting it as the natural course risks missing a treatable cause. A trajectory that accelerates is the alarm of the final common pathway running faster, usually because of a superimposed insult: an AKI on the chronic background, a new obstruction, a nephrotoxin, or uncontrolled blood pressure or glucose.

Plan

Investigate the acceleration — review medications and nephrotoxins, image for obstruction, assess volume and blood pressure, exclude AKI — correct what is found, and intensify pathway-targeted therapy. Expedite referral if no reversible cause is found or the decline continues.

Teaching point

A steepening GFR trajectory is a signal, not a sentence. Rapid progression triggers a search for a superimposed, often treatable, cause.

Cross-reference

Exercises rule R3; the trajectory concept map; Figure 3.2; Table 3.4.

CASE 3WHO STAYS, WHO GOES

Shared care by riskApplying the referral criteria

Presentation

A primary-care clinic asks which of two CKD patients to refer. One is 70 with G3a, A1, stable, well-controlled. The other is 50 with G3b, A3, and a rising creatinine.

Pause and reflect

Do both need a nephrologist, or can one be managed in primary care?

Analysis

Risk, not the CKD label, decides. The stable G3a A1 patient sits in a low-risk cell and is well suited to primary-care management with the basics. The G3b A3 patient with a rising creatinine meets referral criteria — severe albuminuria and progression — and has a high kidney-failure risk warranting specialist input and probable predialysis planning.

Plan

Keep the low-risk patient in primary care with risk-scaled monitoring and the progression-slowing basics; refer the high-risk patient to nephrology and begin the predialysis pathway. Use the risk equation to calibrate the urgency rather than a single GFR threshold.

Teaching point

Refer by risk, not by the CKD diagnosis. Most low-risk CKD belongs in shared care; specialist time is for the higher-risk and for preparation.

Cross-reference

Exercises rules R7 and R8; Table 3.6; the kidney-failure risk equation in Chapter 1; the predialysis pathway in Chapter 14.

CASE 4BEFORE IT CAUSED HARM

Proactive screeningCatching the complications early

Presentation

A patient with G3b CKD attends a routine review feeling well. The clinic checks haemoglobin, calcium, phosphate, PTH, vitamin D, bicarbonate, and potassium, and finds early anaemia and a low bicarbonate that the patient had not noticed.

Pause and reflect

Why screen an asymptomatic patient for these specific things at G3b?

Analysis

As GFR falls, the kidney's excretory and endocrine functions fail in a predictable order, so the complications of CKD appear at set thresholds — anaemia and mineral-bone disorder around G3a–G3b, acidosis and hyperkalaemia thereafter. Proactive screening catches them, as here, before they cause symptoms or accelerate progression, when they are easiest to treat.

Plan

Work up the anaemia (iron studies first) and treat the acidosis, and continue scheduled screening for the other complications as GFR falls. Manage cardiovascular risk throughout. The detailed management of each belongs to Part 3; the clinic's task here was the proactive catch.

Teaching point

CKD complications appear at predictable GFR thresholds. Screen proactively from G3a–G3b so you treat them before they cause harm.

Cross-reference

Exercises rules R5 and R6; the complications-by-threshold concept map; Figure 3.3; Table 3.5; the complications in Part 3.

09
Phase C · Level 9

Clinical Implications

One triad per mechanism the narrative exposed: the rationale, why it matters, and the clinic action.

MECHANISM

The GFR trajectory is the speed of the final common pathway made visible.

WHY IT MATTERS

A steepening slope means the loop has accelerated, usually from a superimposed, treatable cause.

ACTION

On rapid progression, search for the superimposed cause and intensify therapy.

MECHANISM

Proteinuria mediates progression, so therapy that lowers it slows the disease.

WHY IT MATTERS

A falling ACR signals response; a persistently high one signals undertreatment.

ACTION

Follow the ACR as a response marker and intensify if it does not fall.

MECHANISM

As GFR falls, the kidney's excretory and endocrine functions fail in a predictable order.

WHY IT MATTERS

Anaemia, mineral-bone disorder, acidosis, and hyperkalaemia appear at set thresholds.

ACTION

Screen proactively from G3a–G3b, before the complications cause harm.

MECHANISM

A nephrotoxin or an AKI superimposed on CKD acutely accelerates the decline.

WHY IT MATTERS

It is the commonest reason a previously stable patient suddenly deteriorates.

ACTION

Avoid nephrotoxins, give sick-day guidance, and re-check reversible factors when the trajectory worsens.

MECHANISM

The uraemic, vascular milieu of CKD accelerates cardiovascular disease.

WHY IT MATTERS

Most patients with early CKD die of cardiovascular disease before ever reaching dialysis.

ACTION

Make cardiovascular risk reduction a central clinic task, not an afterthought.

10
Phase C · Level 10

Clinical Pearls

The clinic's three jobs: assess/diagnose, monitor, deliver proactive care — all by risk.
First visit answers two questions: what's the cause, and what's reversible?
Always search for reversible factors: obstruction, nephrotoxins, volume, BP/glucose, infection.
Re-run the reversible-factor check whenever the trajectory worsens.
Scale monitoring frequency to the heatmap (annual green → every few months red).
Track eGFR and ACR at every visit.
The GFR trajectory is the key prognostic signal — the pathway's speed.
Progression = category drop with ≥ 25% fall; rapid = > ~5 mL/min/year.
A steepening slope is an alarm — investigate a superimposed cause, don't accept it.
Albuminuria is the response marker — a falling ACR means therapy is working.
Complications appear at predictable thresholds — screen from G3a–G3b.
Screen: Hb, Ca/PO4/PTH/vitamin D, bicarbonate, potassium; CV risk throughout.
Most early-CKD patients die of CVD before reaching dialysis — treat CV risk.
Review meds every visit: avoid nephrotoxins, dose-adjust, give sick-day rules.
Immunise: influenza, pneumococcus, hepatitis B (pre-dialysis), COVID-19.
Refer: eGFR < 30, A3, rapid progression, AKI, refractory HTN, persistent hyperkalaemia, uncommon cause.
Most low-risk CKD belongs in shared care with primary care.
High kidney-failure risk → enter the predialysis pathway early.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags & Never-Do

Panel A — Red flags

A sudden steepening of the GFR trajectory — rapid progression; investigate for AKI-on-CKD, obstruction, or a nephrotoxin urgently.
An active nephritic sediment (red-cell casts, dysmorphic red cells) — urgent nephrology referral, not routine.
Severe albuminuria (A3) or refractory hypertension — meets referral criteria; do not manage indefinitely in primary care.
New or rising potassium on RAAS blockade — act before an arrhythmia; do not abandon RAAS reflexively (see Chapter 4).
A high kidney-failure risk with no predialysis preparation — begin modality education and access planning now.

Panel B — Never do

NEVER — accept an accelerating GFR trajectory as 'just the CKD' without investigating.
NEVER — settle into monitoring without first searching for reversible factors.
NEVER — neglect cardiovascular risk — it is the commonest cause of death in CKD.
NEVER — wait for symptoms to screen for CKD complications — screen by GFR threshold.
12
Phase D · Level 12

Common Pitfalls

Pitfall 1 — Skipping the reversible search

WRONG Labelling and monitoring CKD without looking for reversible factors.
RIGHT Running the reversible-factor checklist at the first visit and at any deterioration.
WHY A treatable insult (nephrotoxin, obstruction, volume) is the commonest reason for sudden decline.

Pitfall 2 — 'Just the CKD'

WRONG Attributing a sudden steep GFR drop to natural progression.
RIGHT Recognising rapid progression and investigating a superimposed cause.
WHY Acceleration beyond the established slope signals a treatable insult.

Pitfall 3 — Reactive complication care

WRONG Waiting for symptoms before checking for anaemia, acidosis, or mineral-bone disorder.
RIGHT Screening proactively from G3a–G3b at routine visits.
WHY Complications appear at predictable thresholds and are easiest to treat early.

Pitfall 4 — Forgetting the heart

WRONG Focusing only on the kidney and the risk of dialysis.
RIGHT Making cardiovascular risk reduction a central task.
WHY Most early-CKD patients die of cardiovascular disease before reaching ESKD.

Pitfall 5 — Referring by threshold alone

WRONG Referring or keeping patients purely on the GFR number.
RIGHT Using risk (heatmap, the risk equation, and the criteria) to decide.
WHY Two patients at the same GFR can need very different care.
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)
The GFR trajectory (rate of decline) predicts ESKD.ALarge observational cohorts
Rapid progression should prompt a search for a superimposed cause.BConsensus and observational evidence
Albuminuria reduction tracks with slower progression.BTrial and observational data
CKD complications appear at predictable GFR thresholds.BObservational data
Most early-CKD patients die of cardiovascular disease before ESKD.ALarge epidemiological cohorts
Structured, risk-based CKD care improves process and outcomes.BHealth-services and observational evidence
Risk-based referral outperforms a single GFR threshold.BValidation and modelling studies

Patient Decisions

Phase E Patient Decisions
14
Phase E · Level 14

Absolute Risk in Natural Frequency

Natural-frequency estimates for orientation, from CKD cohorts; they vary with stage, cause, and comorbidity. They show what the clinic's monitoring and care are aimed at, expressed per 100 comparable patients.

Per 100 patients…OutcomeRoughly how manySee
With early CKD (G3, low albuminuria)Die of cardiovascular disease before reaching dialysisMore than reach ESKDL13 row 5
With CKD overallProgress to ESKDA minority — most do notL13 row 1
With a rapidly progressing trajectoryHave a treatable superimposed cause found on work-upA meaningful shareL13 row 2
High-risk, given structured risk-based careMeet process and outcome targetsMore than with ad hoc careL13 row 6

How to read these

Read these as orientation, not promises; CKD outcomes vary with stage, cause, and comorbidity. The stable signals: most early-CKD patients die of cardiovascular disease rather than reaching dialysis, rapid progression often has a treatable cause, and structured risk-based care does better than ad hoc follow-up. 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 structured review and the referral reasoning explicit — the basis of a well-governed CKD service.

Template 1 — Structured CKD clinic review

  • Stage (CGA): cause ___ , GFR category ___ , albuminuria category ___ ; heatmap risk ___ ; KFRE ___ .
  • Trajectory: eGFR ___ (slope ___ mL/min/yr); ACR ___ (trend ___ ); progression: ☐ stable ☐ progressing ☐ rapid.
  • Reversible factors checked: ☐ obstruction ☐ nephrotoxins ☐ volume ☐ BP/glucose ☐ infection.
  • Complication screen (from G3a–G3b): ☐ Hb ☐ Ca/PO4/PTH/vitD ☐ bicarbonate ☐ potassium.
  • Progression-slowing therapy: ☐ BP target ☐ RAAS ☐ SGLT2i ☐ albuminuria response reviewed.
  • CV risk: ☐ lipids/statin ☐ BP ☐ glucose; immunisations: ☐ influenza ☐ pneumococcal ☐ hepatitis B ☐ COVID-19.
  • Medication review: ☐ nephrotoxins avoided ☐ doses adjusted ☐ sick-day rules given.

Template 2 — Nephrology referral

  • Referral trigger: ☐ eGFR < 30 ☐ A3 / heavy proteinuria ☐ rapid progression / AKI ☐ refractory hypertension ☐ persistent hyperkalaemia ☐ recurrent stones ☐ uncommon/hereditary/immunological cause.
  • Urgency: ☐ routine ☐ urgent (active nephritic sediment / rapidly rising creatinine).
  • Summary: cause/stage/risk ___ ; reversible factors addressed ___ ; current therapy ___ .
  • Predialysis pathway indicated (high KFRE): ☐ yes → modality education / access planning / transplant assessment.
  • Shared-care plan with primary care: ___ .
18
Phase F · Level 18

Cheat Sheet

Clinic = assess + monitor + proactive care, all by risk.
First visit: find the cause + the reversible factors.
Reversible: obstruction, nephrotoxins, volume, BP/glucose, infection.
Re-check reversibles whenever the trajectory worsens.
Monitor eGFR + ACR; frequency scaled to heatmap.
Trajectory = the pathway's speed (the key signal).
Progression = category drop + ≥ 25% fall; rapid = > ~5 mL/min/yr.
Steepening slope → investigate superimposed cause; don't say 'just the CKD.'
ACR = response marker; falling = working.
Screen complications from G3a–G3b: Hb, Ca/PO4/PTH/vitD, HCO3, K.
CV risk throughout — most die of CVD before ESKD.
Meds every visit: avoid nephrotoxins, dose-adjust, sick-day rules.
Immunise: flu, pneumococcal, hep B (pre-dialysis), COVID.
Refer: eGFR < 30 · A3 · rapid progression/AKI · refractory HTN · persistent ↑K · uncommon cause.
Most low-risk CKD = shared care with primary care.
High KFRE → predialysis pathway early.
19
Phase F · Level 19

Flashcards

CARD 1

Q. What are the three jobs of the CKD clinic?

Show answer

A. Assess and diagnose (cause and reversible factors), monitor over time (trajectory and complications), and deliver proactive structured care — all calibrated to risk.

DETAILED. Each is scaled to the heatmap and risk equation.

CLINICAL. Run it as a structured, risk-based bundle.

CARD 2

Q. What two questions must the first CKD visit answer?

Show answer

A. What is the cause, and what can be reversed?

DETAILED. Reversible factors — obstruction, nephrotoxins, volume depletion, uncontrolled BP/glucose, infection — are found by looking for them.

CLINICAL. Assess the cause and search the reversibles before long-term management.

CARD 3

Q. How is CKD monitoring frequency set?

Show answer

A. Scaled to the heatmap risk — annually for low-risk (green), every few months for very-high-risk (red).

DETAILED. eGFR and ACR are tracked at every visit.

CLINICAL. Concentrate monitoring where it changes outcomes.

CARD 4

Q. Define progression and rapid progression, and the response to acceleration.

Show answer

A. Progression: a GFR category drop with a sustained ≥ 25% fall. Rapid: a sustained decline > ~5 mL/min/year. Acceleration prompts a search for a superimposed cause.

DETAILED. The trajectory is the pathway's speed.

CLINICAL. Investigate and intensify; never accept it as 'just the CKD.'

CARD 5

Q. Why and how is albuminuria monitored?

Show answer

A. Because it mediates progression, a falling ACR signals that therapy is working and a persistently high one signals undertreatment.

DETAILED. It is used like HbA1c — a modifiable response marker.

CLINICAL. Follow the ACR and intensify if it does not fall.

CARD 6

Q. When are CKD complications screened, and which?

Show answer

A. Proactively from G3a–G3b: anaemia, mineral-bone disorder (Ca, PO4, PTH, vitamin D), acidosis (bicarbonate), and hyperkalaemia, with cardiovascular risk throughout.

DETAILED. They appear at predictable GFR thresholds.

CLINICAL. Screen before symptoms, when they are easiest to treat.

CARD 7

Q. What are the criteria for nephrology referral?

Show answer

A. eGFR < 30, severe albuminuria (A3), rapid progression or AKI, refractory hypertension, persistent hyperkalaemia, recurrent stones, and uncommon/hereditary/immunological causes; active nephritic sediment is urgent.

DETAILED. Most lower-risk CKD is managed in shared care.

CLINICAL. Refer by risk and criteria, not a single threshold.

CARD 8

Q. Why is cardiovascular risk a central CKD-clinic task?

Show answer

A. Because most patients with early CKD die of cardiovascular disease before ever reaching dialysis.

DETAILED. The uraemic, vascular milieu accelerates cardiovascular disease.

CLINICAL. Treat CV risk as a core part of CKD care, not an afterthought.

20
Phase F · Level 20

One-Minute Preceptor

SCENE 1
The intern who blamed 'the CKD'
GET A COMMITMENT“Her eGFR dropped 12 points in four months and you've put it down to the CKD — agreed?”
PROBE FOR EVIDENCE“It's a progressive disease” — ask: “What was her usual slope, and what could make it suddenly steeper?”
TEACH A GENERAL RULEAcceleration beyond the established slope is rapid progression — a signal to search for a superimposed, often treatable, cause.
REINFORCE WHAT WAS RIGHTTracking the trajectory was exactly right.
CORRECT A MISTAKEInvestigate — nephrotoxins, obstruction, AKI, BP/glucose — before accepting the decline.
SCENE 2
The resident skipping the screen
GET A COMMITMENT“You didn't screen this G3b patient because she feels well — why?”
PROBE FOR EVIDENCE“She has no symptoms” — ask: “When do anaemia and the mineral-bone disorder appear, and do they cause symptoms early?”
TEACH A GENERAL RULEComplications appear at predictable GFR thresholds and are silent early; proactive screening from G3a–G3b catches them in time.
REINFORCE WHAT WAS RIGHTListening to how she feels matters.
CORRECT A MISTAKEScreen Hb, calcium/phosphate/PTH/vitamin D, bicarbonate, and potassium now.
22
Phase F · Level 22

Board-Style Questions

Q 01
What two questions should the first CKD clinic visit answer?

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Q 02
A stable CKD patient's eGFR falls 12 mL/min over four months, far beyond her usual slope. The correct response is to:

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Q 03
How should the frequency of CKD monitoring be determined?

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Q 04
Why is a falling albumin-to-creatinine ratio on therapy reassuring?

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Q 05
From about which GFR stage should proactive screening for anaemia and mineral-bone disorder begin?

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Q 06
Across 100 patients with early CKD, the commonest outcome is:

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Q 07
Which patient should be referred to nephrology?

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Q 08
What should trigger entry into the predialysis pathway?

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Q 09
Which is the best description of how a CKD clinic should be run?

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