10

APPLIED AKI & CRITICAL CARE NEPHROLOGY · VOLUME 5

Chapter 10

AKI in Sepsis & the ICU

Resuscitation, Perfusion & Renal Support

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

Signals declared

  • Sig-D — Diagnostic (primary). Recognise septic AKI early, separate it from the other ICU causes, and monitor the things that change management — perfusion, congestion, and cumulative balance.
  • Sig-T — Therapeutic (strong). The ICU management: antibiotics and source control, fluids and de-resuscitation, the MAP target and vasopressor choice, the renal-support and 'blood-purification' questions.
  • Sig-M — Mechanistic (strong). Microcirculatory and inflammatory injury with preserved flow, plus the ICU amplifiers — ventilation, intra-abdominal pressure, and venous congestion.
  • Sig-V — Evidence-dense (strong). This is one of the most trial-rich areas in nephrology — MAP targets, fluid composition and volume, and RRT timing all rest on large RCTs, so the chapter grades and reflects.

Levels populated and omitted

Populated (20): L1–L14, L17–L22. As a four-signal flagship it fires nearly everything — the absolute-risk table and templates (Sig-T), concept maps and triads (Sig-M), and reflective prompts (Sig-V).

  • L15 / L16 preference-sensitive map and SDM scripts — omitted. No Sig-E; resuscitating and supporting the septic kidney is effective care. The values-laden decisions — when RRT becomes a goals-of-care question — are built in Chapters 13 and 18.
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

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

  • Explain why sepsis is the leading cause of ICU AKI and why its injury is not simple hypoperfusion.
  • Identify the ICU amplifiers of septic AKI — mechanical ventilation, intra-abdominal hypertension, fluid overload, and nephrotoxins.
  • Prioritise early appropriate antibiotics and source control as the most renal-protective interventions in sepsis.
  • Resuscitate with a balanced crystalloid to adequacy, then de-resuscitate, avoiding the harm of fluid overload.
  • Set a mean arterial pressure target of 65 mmHg, and justify a higher target in chronic hypertension from the trial evidence.
  • Choose vasopressors rationally — noradrenaline first, vasopressin as a catecholamine-sparing adjunct, angiotensin II for refractory shock.
  • Apply the evidence on RRT timing — no benefit to early initiation without a conventional indication — and reject unproven 'blood-purification.'
  • Deploy the KDIGO care bundle for the high-risk kidney to prevent and limit AKI.
02
Phase A · Level 2

Executive Summary

  • Sepsis is the commonest cause of AKI in the ICU, and AKI independently worsens the outcome of sepsis.
  • Septic AKI is microcirculatory, inflammatory, and metabolic, often with preserved or increased renal blood flow — not the simple ischaemia the name suggests.
  • The ICU amplifies it: mechanical ventilation and intra-abdominal hypertension raise renal venous pressure, fluid overload congests the kidney, and nephrotoxins pile on.
  • The most renal-protective things you can do in sepsis are early appropriate antibiotics and source control — every hour of delay costs lives.
  • Resuscitate with a balanced crystalloid to adequate perfusion, assessing responsiveness and tolerance, then move deliberately to de-resuscitation.
  • After initial resuscitation, restrictive and liberal fluid strategies perform similarly, but a persistent positive balance harms — so do not keep pouring.
  • Noradrenaline is the first-line vasopressor; the default mean arterial pressure target is 65 mmHg.
  • A higher MAP target (around 80–85) does not help unselected patients but reduces AKI and RRT in those with chronic hypertension — individualise.
  • Vasopressin is a catecholamine-sparing adjunct that may reduce RRT use; angiotensin II raises pressure in refractory vasodilatory shock.
  • Beyond adequate perfusion, more pressure and more fluid do not restore the septic GFR and add harm — the lesson from the ATN chapter.
  • Do not start renal replacement therapy early just because there is sepsis and AKI; accelerated initiation gives no benefit and more dialysis dependence.
  • Start RRT for conventional indications — refractory hyperkalaemia, acidosis, volume overload, uraemia — unless an emergency forces your hand.
  • 'Blood-purification' — high-volume haemofiltration and cytokine or endotoxin adsorption — is not proven to improve outcomes and should stay within trials.
  • Apply the KDIGO bundle to the high-risk kidney: stop nephrotoxins, optimise perfusion and volume, monitor, avoid contrast and hyperglycaemia.
03
Phase A · Level 3

Main Narrative

Septic AKI is where the whole volume converges: the staging of Chapter 1, the perfusion thinking of Chapter 4, the venous-congestion lesson of Chapter 6, and the septic biology of Chapter 7 all meet at the bedside of a shocked, oliguric ICU patient. It is also one of the most trial-tested problems in the field, which means many instincts — push the pressure, start dialysis early, clean the blood — have been formally tested and found wanting. The chapter's job is to translate that evidence into what to do in the first hours and the following days.

Why the septic kidney fails, in the ICU

Chapter 7 established the biology: in sepsis the renal blood flow is often preserved or even increased, yet GFR falls, because the injury is microcirculatory shunting, inflammation, endothelial and glycocalyx damage, and an adaptive tubular cell-cycle arrest rather than global ischaemia. The intensive care unit adds its own insults on top. Positive-pressure ventilation raises intrathoracic pressure, lowering venous return and raising renal venous pressure. Intra-abdominal hypertension — common in the resuscitated, oedematous, or surgical abdomen — compresses the kidney and narrows its perfusion gradient. Fluid overload, so easy to accumulate in days of resuscitation, congests the kidney exactly as in cardiorenal disease. And the ICU is where nephrotoxins cluster: vancomycin, aminoglycosides, contrast. Septic AKI in the ICU is therefore rarely one mechanism; it is the septic injury plus whatever the unit has added.

The first hour is antibiotics and source control

The single most renal-protective intervention in sepsis is not a renal intervention at all: it is killing the infection. Early, appropriate, broad-spectrum antibiotics — with every hour of delay associated with higher mortality — and prompt source control do more for the kidney than any haemodynamic manoeuvre, because they remove the inflammatory driver of the injury. This reframes the bedside priority. The reflex to focus on the kidney — the urine output, the creatinine, the dialysis line — must not crowd out the faster, higher-yield work of treating the sepsis itself. The kidney recovers when the sepsis is controlled, and not reliably before.

Fluids: resuscitate, then de-resuscitate

Sepsis resuscitation has matured from 'fill the tank' to a two-phase discipline. In the first phase, restore perfusion with a balanced crystalloid — an initial volume in the region of 30 mL/kg is a common starting point, but it should be titrated to the individual rather than poured by protocol, assessing fluid responsiveness and tolerance as Chapter 4 described. Balanced solutions are preferred over saline; the trial evidence is not unanimous, but the weight of it favours avoiding the chloride load. The second phase is the harder discipline: stop when responsiveness ends, and de-resuscitate. After the initial resuscitation, restrictive and liberal fluid strategies have performed similarly in large trials, which means there is no benefit to be had from continued liberal fluids — and a persistent positive balance, with its venous congestion, independently harms the kidney and the patient. The modern error is no longer too little early fluid; it is too much late fluid.

The MAP target, and when 65 is not enough

Noradrenaline is the first-line vasopressor, and the default mean arterial pressure target is 65 mmHg. The instinct to aim higher — surely more pressure means more renal perfusion — was tested directly: targeting 80 to 85 mmHg gave no overall benefit and more atrial fibrillation. But the same trial carried a crucial subgroup signal: patients with chronic hypertension, whose renal autoregulation is right-shifted, had less doubling of creatinine and less RRT at the higher target. The practical synthesis is to default to 65 mmHg and to consider a higher target, around 80 to 85, specifically in the chronically hypertensive. This is autoregulation from Chapter 2 made actionable: the pressure a kidney needs depends on the pressure it is used to.

Beyond noradrenaline

When noradrenaline alone is insufficient, vasopressin is the usual next agent. Compared with noradrenaline as a first-line drug it did not change kidney-failure-free days, but it reduced the use of renal replacement therapy and spares catecholamine exposure, so it is a reasonable adjunct. Angiotensin II raises blood pressure in refractory vasodilatory shock and has a place when catecholamines and vasopressin are failing. Throughout, the discipline from Chapter 7 holds: once perfusion is adequate, escalating pressure further does not restore the septic GFR — it is the sepsis, not the blood pressure, that the kidney is waiting on. Vasopressors restore organ perfusion pressure; they do not treat the microcirculatory injury.

Renal replacement: when, and what not to do

Two strong evidence messages govern RRT in septic AKI. First, on timing: starting dialysis early — accelerated, before a conventional indication — does not improve survival and leaves more patients dialysis-dependent than a watchful, standard approach. So do not start RRT simply because a patient has sepsis and AKI; wait for the conventional indications — refractory hyperkalaemia, severe acidosis, diuretic-resistant volume overload, or uraemic complications — unless an emergency forces an immediate start. The detailed timing and prescription belong to Chapters 13 and 14. Second, on the seductive idea of using RRT to 'clean the blood' of inflammatory mediators: high-volume haemofiltration and the various cytokine- and endotoxin-adsorption therapies have not been shown to improve outcomes, and some have been formally negative. Outside a trial, RRT is organ support for the failing kidney, not a treatment for the sepsis itself.

Monitoring, and the prevention bundle

Because septic AKI is multifactorial and the ICU keeps adding insults, monitoring is active. Recognise AKI early by KDIGO criteria, and separate the septic component from the other ICU causes — a pre-renal hit, a nephrotoxic one, an abdominal compartment syndrome, an obstruction. Treat cumulative fluid balance as a vital sign and read venous congestion with point-of-care ultrasound; measure intra-abdominal pressure in the at-risk abdomen. And apply the KDIGO care bundle to every high-risk kidney: discontinue nephrotoxins, optimise volume and perfusion, monitor creatinine and urine output, avoid hyperglycaemia, and avoid contrast where possible. A biomarker-guided version of this bundle has been shown to reduce moderate-to-severe AKI after cardiac surgery, which is the best evidence yet that disciplined supportive prevention — not a drug — is what protects the kidney.

Where the evidence is firm, and where it argues

The negative trials here are unusually clarifying: early RRT, high MAP targets for everyone, liberal late fluids, and blood-purification have all been tested and have not delivered, and that is firm. The positives are softer and more interesting: the chronic-hypertension MAP subgroup, the catecholamine-sparing role of vasopressin, and the balanced-versus-saline question, where trials disagree at the margins. What is not in doubt is the primacy of antibiotics and source control, the harm of fluid overload, and the futility of treating the kidney as if it could be fixed independently of the sepsis. The honest summary is that septic AKI is managed by treating sepsis well and supporting the kidney patiently — and by resisting the interventions that feel active but test negative.

04
Phase A · Level 4

Reference Tables

Table 10.1 — ICU amplifiers of septic AKI

AmplifierEffect on the kidney
Mechanical ventilationRaises intrathoracic pressure → lower venous return, higher renal venous pressure
Intra-abdominal hypertensionCompresses the kidney → narrowed perfusion gradient
Fluid overloadVenous congestion → lower GFR (cardiorenal physiology)
NephrotoxinsVancomycin, aminoglycosides, contrast — stacked second hits
Recurrent hypotensionRe-injures an already vulnerable kidney

Table 10.2 — Haemodynamic targets and agents

ElementDefaultNote
MAP target65 mmHgConsider 80–85 in chronic hypertension
First vasopressorNoradrenalineTitrate to MAP target
AdjunctVasopressinCatecholamine-sparing; may reduce RRT use
Refractory shockAngiotensin IIRaises pressure when catecholamines/vasopressin fail

Table 10.3 — Fluid strategy in septic AKI

Phase / choiceApproach
Initial resuscitationBalanced crystalloid, ~30 mL/kg as a starting point, titrated to the patient
Fluid typeBalanced preferred over saline (trials mixed, weight favours balanced)
After resuscitationRestrictive and liberal perform similarly — no benefit to liberal
De-resuscitationRemove the surplus; a positive cumulative balance harms

Table 10.4 — Renal replacement in septic AKI

QuestionAnswer
TimingNo benefit to early/accelerated start; more dependence — wait for indications
Conventional indicationsRefractory hyperkalaemia, acidosis, volume overload, uraemia (or emergency)
ModalityCRRT often used if unstable (Chapter 14); no clear mortality difference
Blood purificationHigh-volume HF and cytokine/endotoxin adsorption — unproven; keep to trials

Table 10.5 — The KDIGO high-risk AKI care bundle

ElementAction
NephrotoxinsDiscontinue where possible
HaemodynamicsOptimise volume and perfusion (functional monitoring)
MonitoringTrack creatinine and urine output closely
MetabolicAvoid hyperglycaemia
ContrastAvoid where feasible

Table 10.6 — Key ICU AKI trials (by question)

QuestionTrial typeResult
MAP 80–85 vs 65RCT (SEPSISPAM-type)No overall benefit; less RRT in chronic hypertension
Early vs standard RRTRCTs (STARRT-AKI-type)No survival benefit; more dependence with early
Restrictive vs liberal fluidRCTs (CLASSIC/CLOVERS-type)Similar outcomes; no benefit to liberal
Balanced vs salineRCTs (SMART/BaSICS-type)Mixed; weight favours balanced
KDIGO bundle vs usual careRCT (PrevAKI-type)Less moderate-severe AKI with the bundle
Phase B Visualise & Map
05
Phase B · Level 5

Imaging & Flowchart Specifications

Figure 10.1 — The septic kidney in the ICU
Figure 10.1 — The septic kidney in the ICU
Figure 10.2 — The MAP target and autoregulation
Figure 10.2 — The MAP target and autoregulation
Figure 10.3 — Resuscitate then de-resuscitate
Figure 10.3 — Resuscitate then de-resuscitate
Flowchart 10.A — The shocked, oliguric ICU patient
Flowchart 10.A — The shocked, oliguric ICU patient
07
Phase B · Level 7

Decision Pathways

R1
IF a patient has sepsis with AKI, THEN prioritise early appropriate antibiotics and source control above any renal-specific manoeuvre.
R2
IF resuscitating septic shock, THEN use a balanced crystalloid to adequate perfusion, assessing responsiveness and tolerance — then de-resuscitate.
R3
IF setting a perfusion target, THEN aim for a MAP of 65 mmHg by default, and around 80–85 mmHg in a chronically hypertensive patient.
R4
IF noradrenaline alone is insufficient, THEN add vasopressin as a catecholamine-sparing adjunct, and consider angiotensin II in refractory shock.
R5
IF perfusion is adequate but the kidney is still failing, THEN do not escalate pressure or fluid further — treat the sepsis and support the kidney.
R6
IF a positive cumulative balance is accumulating, THEN de-resuscitate; fluid overload independently harms.
R7
IF considering RRT in septic AKI, THEN wait for a conventional indication — do not start early just because there is sepsis and AKI.
R8
IF tempted to use RRT to remove inflammatory mediators, THEN do not — blood-purification is unproven outside trials.

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

CASE 1THE FIRST HOUR

Antibiotics over algorithmsPrioritising source control and timely antibiotics

Presentation

A 60-year-old man presents with septic shock from a perforated viscus and AKI. The team is debating fluid volumes and a dialysis line while the antibiotics and surgical referral wait.

Pause and reflect

What is the single most renal-protective action in this first hour — and is it a renal action?

Analysis

The most renal-protective intervention is not renal at all: appropriate antibiotics now and urgent source control of the perforation. Each hour of antibiotic delay raises mortality, and the kidney will not recover while the inflammatory driver runs. The focus on fluids and a dialysis line, while not wrong, must not displace the faster, higher-yield work.

Plan

Give broad-spectrum antibiotics immediately and mobilise surgery for source control. Restore perfusion with balanced crystalloid to adequacy and noradrenaline to a MAP of 65. Defer the dialysis decision unless an emergency indication appears.

Teaching point

In septic AKI, treat the sepsis first. Antibiotics and source control protect the kidney more than any haemodynamic or renal-replacement manoeuvre.

Cross-reference

Exercises rules R1 and R5; the septic-injury concept map; Chapter 7's septic biology.

CASE 2THE CHRONIC HYPERTENSIVE

When 65 isn't enoughIndividualising the MAP target

Presentation

A 70-year-old woman with long-standing, poorly controlled hypertension is in septic shock on noradrenaline at a MAP of 65 mmHg. She remains oliguric, and her creatinine is climbing despite adequate antibiotics and euvolaemia.

Pause and reflect

Her MAP is 'at target' — but is 65 the right target for her kidney?

Analysis

Chronic hypertension right-shifts renal autoregulation, so a MAP of 65 may sit on the falling limb of her GFR curve. The trial evidence is specific: a higher target of around 80 to 85 mmHg gave no benefit to unselected patients but reduced creatinine doubling and RRT in the chronically hypertensive. She is exactly that subgroup.

Plan

Raise her MAP target to around 80–85 mmHg with noradrenaline, watching for atrial fibrillation and the limits of catecholamine exposure. Keep treating the sepsis; do not over-resuscitate with fluid to raise pressure.

Teaching point

The MAP target is not universal. In chronic hypertension, autoregulation is right-shifted, and a higher target protects the kidney.

Cross-reference

Exercises rule R3; the pressure-to-need concept map; Figure 10.2; autoregulation in Chapter 2.

CASE 3THE EARLY-DIALYSIS TEMPTATION

Waiting is the interventionRRT timing in septic AKI

Presentation

A 55-year-old man with septic AKI is stage 3 by creatinine and oliguric, but his potassium is 4.8 mmol/L, his pH is 7.30, and he is not fluid-overloaded. A colleague wants to 'start CRRT early to get ahead of it.'

Pause and reflect

He has severe AKI but no emergency indication. Does starting dialysis now help him?

Analysis

Stage and oliguria alone are not indications to start RRT. The trial evidence is clear that accelerated initiation, before a conventional indication, does not improve survival and leaves more patients dialysis-dependent. He has no refractory hyperkalaemia, severe acidosis, overload, or uraemic complication, so starting now would expose him to the line, the anticoagulation, and the dependence risk for no benefit.

Plan

Do not start RRT now. Continue treating the sepsis, support the kidney, and monitor for a conventional or emergency indication, starting promptly if one develops. The detailed timing logic is in Chapter 13.

Teaching point

Severe AKI is not itself a reason to dialyse. Wait for a conventional indication; early initiation buys dependence, not survival.

Cross-reference

Exercises rule R7; the support-don't-purify concept map; RRT timing in Chapter 13.

CASE 4DROWNING THE KIDNEY

Too much late fluidDe-resuscitation and intra-abdominal pressure

Presentation

A woman several days into ICU treatment for septic shock is now many litres positive. Her oxygenation has worsened, her abdomen is tense, and her creatinine, which had stabilised, is rising again. Bladder pressure is elevated.

Pause and reflect

Her kidney is failing again as the balance climbs and the abdomen tightens. What is happening, and what does she need?

Analysis

She has tipped into fluid overload with intra-abdominal hypertension. The positive balance congests the kidney and the raised intra-abdominal pressure narrows its perfusion gradient — two ICU amplifiers acting together. The renal injury is now from too much fluid and a tense abdomen, not from under-resuscitation.

Plan

De-resuscitate actively — diuretics, or ultrafiltration if diuretic-resistant and an RRT indication exists — while monitoring perfusion. Manage the intra-abdominal hypertension and reassess the abdomen surgically if it progresses. Let the falling balance be the treatment.

Teaching point

Late fluid overload and intra-abdominal hypertension re-injure the septic kidney. De-resuscitation and pressure control are active treatments, not afterthoughts.

Cross-reference

Exercises rule R6; the ICU-amplifiers and resuscitate-then-stop concept maps; fluid overload in Chapters 4 and 6.

09
Phase C · Level 9

Clinical Implications

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

MECHANISM

Septic AKI is microcirculatory and inflammatory with often-preserved renal blood flow.

WHY IT MATTERS

The injury is not global ischaemia, so pressure and flow beyond adequacy do not restore GFR.

ACTION

Treat the sepsis with antibiotics and source control; support, don't over-resuscitate, the kidney.

MECHANISM

Mechanical ventilation and intra-abdominal hypertension raise renal venous pressure and narrow the perfusion gradient.

WHY IT MATTERS

These ICU amplifiers add a congestive injury on top of the septic one.

ACTION

Measure intra-abdominal pressure when at risk and limit avoidable venous congestion.

MECHANISM

A persistent positive fluid balance congests the kidney as in cardiorenal disease.

WHY IT MATTERS

Liberal late fluid gives no benefit and independently harms.

ACTION

Resuscitate to adequacy, then de-resuscitate; treat cumulative balance as a vital sign.

MECHANISM

Chronic hypertension right-shifts renal autoregulation.

WHY IT MATTERS

A MAP of 65 may sit on the falling limb of GFR in these patients, raising AKI and RRT risk.

ACTION

Target around 80–85 mmHg in the chronically hypertensive, 65 by default.

MECHANISM

Early RRT and blood-purification have been tested and do not improve septic-AKI outcomes.

WHY IT MATTERS

Accelerated initiation adds dependence, and mediator removal adds cost and risk without benefit.

ACTION

Start RRT only for conventional indications, and keep blood-purification within trials.

10
Phase C · Level 10

Clinical Pearls

Sepsis is the commonest cause of ICU AKI, and AKI worsens sepsis outcomes.
Septic AKI is microcirculatory and inflammatory — flow is often preserved.
The ICU amplifies it: ventilation, intra-abdominal pressure, overload, nephrotoxins.
The most renal-protective steps are antibiotics and source control.
Every hour of antibiotic delay costs lives in septic shock.
Resuscitate with balanced crystalloid to adequacy — then de-resuscitate.
After initial resuscitation, restrictive and liberal fluids perform similarly.
A persistent positive balance independently harms — it's a vital sign.
Noradrenaline first; default MAP target 65 mmHg.
Target ~80–85 mmHg in chronic hypertension (right-shifted autoregulation).
Vasopressin is a catecholamine-sparing adjunct that may reduce RRT.
Angiotensin II raises pressure in refractory vasodilatory shock.
Past adequate perfusion, more pressure doesn't restore the septic GFR.
Don't start RRT early just for sepsis + AKI — no benefit, more dependence.
Start RRT for conventional indications (K, acid, volume, uraemia) or emergency.
Blood-purification (high-volume HF, adsorption) is unproven — keep to trials.
Apply the KDIGO bundle to every high-risk kidney.
Measure intra-abdominal pressure in the tense, oedematous abdomen.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags & Never-Do

Panel A — Red flags

Septic shock with delayed antibiotics — every hour of delay raises mortality; give them now.
A tense abdomen with worsening oliguria — intra-abdominal hypertension; measure bladder pressure and act.
A chronically hypertensive patient failing at MAP 65 — consider a higher target before blaming the kidney.
Rising creatinine as the cumulative balance climbs — fluid overload re-injury; de-resuscitate.
A true emergency RRT indication (refractory hyperkalaemia, acidosis, overload, uraemia) — start without waiting for a 'better time.'

Panel B — Never do

NEVER — let renal interventions delay antibiotics or source control in sepsis.
NEVER — escalate pressure or fluid to 'fix' a septic kidney once perfusion is adequate.
NEVER — start RRT early in septic AKI without a conventional or emergency indication.
NEVER — use RRT as a blood-purification therapy for sepsis outside a trial.
12
Phase D · Level 12

Common Pitfalls

Pitfall 1 — Treating the kidney before the sepsis

WRONG Focusing on fluids and a dialysis line while antibiotics and source control wait.
RIGHT Giving antibiotics and arranging source control first.
WHY Treating the infection is the most renal-protective action; the kidney follows the sepsis.

Pitfall 2 — One MAP target for all

WRONG Targeting 65 mmHg in a chronically hypertensive patient whose kidney is failing.
RIGHT Raising the target to around 80–85 in that subgroup.
WHY Chronic hypertension right-shifts autoregulation, so 65 may be on the falling limb.

Pitfall 3 — Liberal late fluids

WRONG Continuing generous fluids days into resuscitation to 'support' the kidney.
RIGHT De-resuscitating once perfusion is adequate and responsiveness has ended.
WHY Liberal late fluid gives no benefit and the resulting congestion harms.

Pitfall 4 — Early dialysis for severity

WRONG Starting RRT because the AKI is stage 3 and the patient is oliguric.
RIGHT Waiting for a conventional indication unless an emergency forces it.
WHY Accelerated initiation gives no survival benefit and more dialysis dependence.

Pitfall 5 — Cleaning the blood

WRONG Using high-volume haemofiltration or cytokine adsorption to treat the sepsis.
RIGHT Using RRT only as organ support for the failing kidney.
WHY Blood-purification has not improved outcomes and some trials are negative.
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)
Early appropriate antibiotics and source control reduce mortality in sepsis.ARCTs and consistent observational data
A higher MAP target does not benefit unselected patients but helps in chronic hypertension.BRCT with prespecified subgroup
Accelerated RRT initiation does not improve survival and increases dependence.ALarge RCTs (STARRT-AKI-type)
Restrictive and liberal fluid strategies perform similarly after resuscitation.BRCTs (CLASSIC/CLOVERS-type)
Balanced crystalloids are at least as good as, and probably better than, saline.BRCTs with some heterogeneity
Vasopressin spares catecholamines and may reduce RRT use.BRCT secondary outcomes
Blood-purification therapies do not improve septic-AKI outcomes.BRCTs, several negative
A KDIGO care bundle reduces moderate-severe AKI in high-risk patients.BRCT (PrevAKI-type)

Patient Decisions

Phase E Patient Decisions
14
Phase E · Level 14

Absolute Risk in Natural Frequency

Natural-frequency estimates for orientation, pooled from trials and cohorts; they vary with severity, comorbidity, and timing. They convey the size of the septic-AKI decisions, expressed per 100 comparable patients.

Per 100 patients…OutcomeRoughly how manySee
With septic AKI started on early vs standard RRTSurviveAbout the same — no benefitL13 row 3
Started on early RRTRemain dialysis-dependent laterMore than with standard timingL13 row 3
Chronically hypertensive, targeted MAP ~80–85 vs 65Need RRTFewer at the higher targetL13 row 2
High-risk, given the KDIGO bundle vs usual careDevelop moderate-severe AKIFewer with the bundleL13 row 8

How to read these

Read these as orientation, not promises; septic-AKI numbers swing with severity, comorbidity, and timing. The stable signals: early RRT adds dependence without survival, a higher MAP helps only the chronically hypertensive, and a disciplined care bundle prevents AKI. 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 sepsis-first priority and the de-resuscitation plan explicit.

Template 1 — ICU septic-AKI assessment and haemodynamic plan

  • AKI stage ___ ; sepsis source ___ ; antibiotics given at ___ ; source control: ☐ done ☐ planned.
  • ICU amplifiers present: ☐ mechanical ventilation ☐ intra-abdominal hypertension (bladder pressure ___ ) ☐ fluid overload ☐ nephrotoxins.
  • Fluids: balanced crystalloid given ___ ; responsiveness/tolerance assessed: ☐ yes; cumulative balance ___ .
  • MAP target: ☐ 65 ☐ 80–85 (chronic hypertension); vasopressor: ☐ noradrenaline ☐ + vasopressin ☐ + angiotensin II.
  • KDIGO bundle: ☐ nephrotoxins stopped ☐ perfusion optimised ☐ monitoring ☐ no hyperglycaemia ☐ contrast avoided.
  • Reassessment plan: de-resuscitation trigger ___ ; perfusion-adequate → stop escalating.

Template 2 — RRT-indication and de-resuscitation review

  • Conventional RRT indication: ☐ refractory hyperkalaemia ☐ severe acidosis ☐ diuretic-resistant overload ☐ uraemic complication ☐ none.
  • Decision: ☐ no RRT (no indication — do NOT start early) ☐ start RRT (indication present / emergency).
  • Blood-purification considered? ☐ no (unproven outside trials).
  • Volume state: ☐ still resuscitating ☐ adequate → de-resuscitate ☐ overloaded → active removal.
  • De-resuscitation method: ☐ diuretics ☐ ultrafiltration (if RRT indication); perfusion monitored during removal.
  • If perfusion adequate but kidney not recovering → continue sepsis treatment and support; avoid escalation.
18
Phase F · Level 18

Cheat Sheet

Sepsis = #1 cause of ICU AKI; AKI worsens sepsis.
Septic AKI = microcirculatory/inflammatory; flow often preserved.
ICU amplifiers: ventilation, intra-abdominal HTN, overload, nephrotoxins.
First hour = antibiotics + source control (most renal-protective).
Resuscitate (balanced crystalloid, ~30 mL/kg, titrated) → de-resuscitate.
After resuscitation: restrictive ≈ liberal; positive balance harms.
Noradrenaline first; MAP target 65.
Chronic HTN → target ~80–85 (right-shifted autoregulation).
Vasopressin = catecholamine-sparing adjunct (may ↓ RRT).
Angiotensin II for refractory vasodilatory shock.
Adequate perfusion reached → stop escalating; treat the sepsis.
RRT timing: no benefit to early; more dependence — wait for indications.
RRT indications: K, acid, volume, uraemia, or emergency.
Blood-purification (HVHF, adsorption): unproven — trials only.
KDIGO bundle for every high-risk kidney.
Measure intra-abdominal pressure in the tense abdomen.
19
Phase F · Level 19

Flashcards

CARD 1

Q. Why is septic AKI not simple hypoperfusion?

Show answer

A. Renal blood flow is often preserved or increased; the injury is microcirculatory shunting, inflammation, and tubular cell-cycle arrest.

DETAILED. This is the biology established in Chapter 7.

CLINICAL. Past adequate perfusion, treat the sepsis, not the flow.

CARD 2

Q. What are the ICU amplifiers of septic AKI?

Show answer

A. Mechanical ventilation and intra-abdominal hypertension (raising renal venous pressure), fluid overload (congestion), and nephrotoxins.

DETAILED. They add a congestive and toxic injury on top of the septic one.

CLINICAL. De-resuscitate, measure intra-abdominal pressure, and avoid stacked nephrotoxins.

CARD 3

Q. What is the most renal-protective intervention in sepsis?

Show answer

A. Early appropriate antibiotics and prompt source control — not a renal intervention.

DETAILED. Every hour of antibiotic delay raises mortality.

CLINICAL. Treat the infection first; the kidney follows the sepsis.

CARD 4

Q. What is the MAP target in septic shock, and when do you raise it?

Show answer

A. 65 mmHg by default; around 80–85 mmHg in chronic hypertension.

DETAILED. Chronic hypertension right-shifts renal autoregulation, so 65 may be on the falling limb.

CLINICAL. Individualise the target to the patient's usual pressure.

CARD 5

Q. How should fluids be managed across the course of septic AKI?

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A. Resuscitate with balanced crystalloid to adequacy, then de-resuscitate; restrictive and liberal perform similarly after resuscitation.

DETAILED. A persistent positive balance independently harms.

CLINICAL. Treat cumulative balance as a vital sign.

CARD 6

Q. What does the evidence say about RRT timing in septic AKI?

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A. Early/accelerated initiation gives no survival benefit and increases dialysis dependence.

DETAILED. Start for conventional indications — K, acid, volume, uraemia — or an emergency.

CLINICAL. Severe AKI alone is not a reason to dialyse.

CARD 7

Q. What is the role of 'blood-purification' in septic AKI?

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A. High-volume haemofiltration and cytokine/endotoxin adsorption are unproven, with several negative trials.

DETAILED. RRT is organ support, not a sepsis treatment.

CLINICAL. Keep blood-purification within trials.

CARD 8

Q. How do vasopressin and angiotensin II fit the vasopressor strategy?

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A. Vasopressin is a catecholamine-sparing adjunct that may reduce RRT; angiotensin II raises pressure in refractory vasodilatory shock.

DETAILED. Neither replaces noradrenaline as first-line.

CLINICAL. Add them rationally when noradrenaline is insufficient.

CARD 9

Q. What is the KDIGO high-risk AKI care bundle?

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A. Stop nephrotoxins, optimise volume and perfusion, monitor creatinine and urine output, avoid hyperglycaemia, and avoid contrast.

DETAILED. A biomarker-guided version reduced moderate-severe AKI after cardiac surgery.

CLINICAL. Disciplined supportive prevention protects the kidney, not a drug.

20
Phase F · Level 20

One-Minute Preceptor

SCENE 1
The intern starting early CRRT
GET A COMMITMENT“You want to start CRRT now for this septic AKI — what's the goal?”
PROBE FOR EVIDENCE“He's stage 3 and oliguric” — ask: “Does he have a conventional indication, and what do the timing trials show?”
TEACH A GENERAL RULESeverity and oliguria alone aren't indications; accelerated RRT adds dependence without survival benefit.
REINFORCE WHAT WAS RIGHTRecognising severe AKI and planning ahead was reasonable.
CORRECT A MISTAKEHold RRT, treat the sepsis, and start only for a conventional or emergency indication.
SCENE 2
The resident pushing the MAP for everyone
GET A COMMITMENT“You've set a MAP target of 85 for this septic patient — why?”
PROBE FOR EVIDENCE“Higher pressure protects the kidney” — ask: “What did the MAP-target trial show overall, and in which subgroup did the higher target help?”
TEACH A GENERAL RULEA higher MAP helps the chronically hypertensive, not unselected patients; default to 65 and individualise.
REINFORCE WHAT WAS RIGHTThinking about renal perfusion pressure was the right instinct.
CORRECT A MISTAKEUse 65 unless she's chronically hypertensive, where ~80–85 is justified.
21
Phase F · Level 21

Reflective Prompts

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

  • Early RRT, high MAP for all, liberal late fluids, and blood-purification all felt right and tested negative. How do you build a culture that resists plausible, active-feeling interventions until they are proven?
  • The chronic-hypertension MAP subgroup is a single trial's prespecified finding. How much should one subgroup change your bedside target, and what would confirm it?
  • Cumulative fluid balance independently predicts harm, yet de-resuscitation can compromise perfusion. How do you find the turning point between resuscitation and removal in an individual?
  • Blood-purification keeps being proposed despite negative trials, because cleaning the blood feels logical. What keeps a mechanistically appealing therapy alive after it has failed to help?
  • Septic AKI converges every chapter in this volume. How do you hold staging, perfusion, congestion, and sepsis biology in mind at once without anchoring on the one you know best?
22
Phase F · Level 22

Board-Style Questions

Q 01
In a patient with septic shock and AKI, which intervention is the most renal-protective?

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Q 02
A chronically hypertensive patient with septic AKI is failing at a MAP of 65 mmHg despite adequate antibiotics. The best step is to:

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Q 03
What does the trial evidence show about early (accelerated) RRT initiation in septic AKI without a conventional indication?

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Q 04
Several days into ICU care, a septic patient's creatinine rises as the cumulative balance climbs and the abdomen becomes tense. The best response is to:

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Q 05
Which statement about fluids in septic AKI is most accurate?

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Q 06
What is the role of high-volume haemofiltration and cytokine adsorption in septic AKI?

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Q 07
Across 100 chronically hypertensive septic patients targeted to a MAP of ~80–85 instead of 65, the effect on RRT is best described as:

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Q 08
Once perfusion is adequate in septic AKI but the kidney is still failing, escalating pressure and fluid will:

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Q 09
Which package of measures best protects the high-risk kidney in the ICU?

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