05

KIDNEY TRANSPLANTATION

Chapter 5

The Transplant Operation

& Immediate Post-op

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

This preamble records the dynamic decisions the master makes for this chapter.

Signals declared

  • Sig-P procedural (primary) — the chapter is the operation and the immediate post-operative course.
  • Sig-D diagnostic — it interprets early graft function and recognises early complications.

Levels populated and omitted

  • Sixteen levels are built — a procedural-and-recognition chapter focused on the operation and early management.
  • Omitted: L6 concept maps and L9 implications triads — no mechanistic-physiology signal. L14–L16 and L21 — this is technique and early management, not absolute-risk or preference-sensitive. Delayed graft function and the surgical complications have their own chapters.
Phase A Orientation & Knowledge
01
Phase A · Level 1

Learning Objectives

The contract between this chapter and the reader.

  1. 1. Describe the placement and anastomoses of the transplant operation.
  2. 2. Explain cold and warm ischemia times and their importance.
  3. 3. Describe reperfusion and the on-table assessment.
  4. 4. Manage immediate post-operative hemodynamics and perfusion.
  5. 5. Interpret early urine output and replace fluids appropriately.
  6. 6. Monitor early graft function, including Doppler ultrasound.
  7. 7. Anticipate the early vascular and urologic complications.
  8. 8. Assess the early non-functioning graft.
02
Phase A · Level 2

Executive Summary

A sixty-second reading. Each bullet stands alone.

  • The graft is placed heterotopically in the iliac fossa, extraperitoneally, with the native kidneys usually left in place.
  • The donor renal artery and vein are anastomosed to the recipient iliac vessels, and the ureter to the bladder, usually over a stent.
  • Cold ischemia time is minimised because a longer time increases delayed graft function.
  • On reperfusion a healthy graft pinks up and often makes urine on the table.
  • Immediate management maintains perfusion — adequate volume and blood pressure — because the graft depends on flow.
  • Brisk early diuresis is a good sign; oliguria suggests delayed graft function or a complication.
  • High early urine output is replaced to avoid hypovolemia, with attention to potassium and glucose.
  • Graft function is monitored by a falling creatinine and by Doppler ultrasound of perfusion.
  • A bladder catheter protects the ureteric anastomosis, and the ureteric stent is removed weeks later.
  • Induction and maintenance immunosuppression are started peri-operatively.
  • Early vascular complications include arterial or venous thrombosis and bleeding.
  • Early urologic complications include urine leak and obstruction.
  • Sudden anuria with graft pain suggests vascular thrombosis — a surgical emergency.
03
Phase A · Level 3

Main Narrative

The medical core. An expert should agree the transplant operation and immediate course are fully covered here.

Why it matters at the bedside

The transplant operation is brief and standardised, but the hours after it decide a great deal. A graft that is well perfused and making urine on the table is off to the best possible start; one that is hypoperfused, thrombosing, or leaking needs to be recognised in minutes, not days. The early course is mostly about protecting flow and reading the signals.

The operation

  • The kidney is placed heterotopically — not where the native kidneys sit, but in the iliac fossa, extraperitoneally — and the native kidneys are usually left in place. The donor renal artery is anastomosed to a recipient iliac artery, the donor renal vein to the external iliac vein, and the donor ureter is implanted into the bladder, usually over a temporary ureteric stent and with an antireflux tunnel.

Ischemia times

  • Two clocks matter. Cold ischemia time runs from cold perfusion and storage to implantation, and a longer cold time increases the risk of delayed graft function — so it is kept as short as possible. Warm ischemia includes the anastomosis time on the bench and, in DCD donors, the warm period around circulatory death. Living-donor kidneys, with minimal cold time, typically function immediately.

Reperfusion and the on-table assessment

  • When the clamps come off and blood enters the graft, a healthy kidney pinks up promptly, regains turgor, and often produces urine on the table — the best early sign. Poor or patchy reperfusion prompts an immediate check of the anastomoses and inflow before the patient leaves theatre.

Immediate hemodynamics and perfusion

  • The single most important early principle is perfusion: the new kidney depends entirely on blood flow, so hypotension and hypovolemia are avoided and an adequate volume status and blood pressure are maintained, often guided by central venous pressure. Nephrotoxins are avoided in these early, vulnerable hours.

Urine output and fluid replacement

  • Early urine output is read carefully. Brisk diuresis signals immediate function (typical of living-donor and low-cold-time grafts); oliguria signals delayed graft function or a complication. A high urine output is replaced — often volume-for-volume — to prevent hypovolemia, which would itself harm the graft, with close attention to potassium and glucose during early polyuria.

Monitoring graft function and Doppler

  • Function is tracked by a falling creatinine and by Doppler ultrasound, which confirms arterial and venous perfusion and excludes collections or obstruction. An early Doppler is the quickest way to distinguish a perfused but sluggish graft (delayed function) from a vascular catastrophe.

Lines, catheters, and the stent

  • A bladder catheter is kept to decompress the bladder and protect the fresh ureteric anastomosis, and is removed on schedule; the ureteric stent stays for some weeks and is removed cystoscopically later (it reduces leak and obstruction but must be removed to avoid encrustation and infection). Central access supports monitoring and fluids.

Starting immunosuppression

  • Immunosuppression begins peri-operatively: induction (often a lymphocyte-depleting or interleukin-2-receptor antibody) plus the maintenance regimen, set by the recipient's immunologic risk. The detail belongs to the immunosuppression chapters, but it starts here, in the operating room and the first hours after.

Early complications to anticipate

  • A handful of early problems must be on the radar from the first hour: vascular thrombosis (arterial or venous — sudden anuria and graft pain, a surgical emergency that usually loses the graft if not reversed), bleeding, urine leak, and obstruction. Delayed graft function (its own chapter) is common with long cold times and DCD grafts, and hyperacute rejection, though now rare because of the crossmatch, presents as immediate graft failure on the table.

Assessing the early non-functioning graft

  • When the graft does not work — oliguria or a rising creatinine — the response is systematic: confirm perfusion and exclude obstruction with Doppler ultrasound, check the catheter and volume status, and, once vascular and urologic causes are excluded, attribute oliguria to delayed graft function or, if suspected, biopsy for rejection. The order matters: the treatable emergencies (thrombosis, leak, obstruction) are excluded first.
04
Phase A · Level 4

Reference Tables

Five fully-built tables.

Table A — The operation

ComponentDetail
PlacementHeterotopic, iliac fossa, extraperitoneal; natives usually left
Arterial anastomosisDonor renal artery → recipient iliac artery
Venous anastomosisDonor renal vein → recipient external iliac vein
Ureteric anastomosisDonor ureter → bladder (over a stent; antireflux tunnel)
CatheterBladder catheter protects the anastomosis

Table B — Ischemia times

TermNote
Cold ischemia time (CIT)Cold storage to implantation; minimise (longer → more DGF)
Warm ischemiaAnastomosis time; plus donor warm ischemia in DCD
ReperfusionGraft pinks up; ideally urine on the table

Table C — Immediate post-operative priorities

PriorityAction
PerfusionMaintain volume and blood pressure; avoid nephrotoxins
Urine outputInterpret (brisk = good; oliguria = a problem)
FluidsReplace high urine output; watch potassium and glucose
MonitoringCreatinine trend; Doppler ultrasound
ImmunosuppressionInduction + maintenance started

Table D — Interpreting early urine output

PatternInterpretation
Brisk diuresisImmediate function (living / low CIT)
Oliguria / anuriaDGF, vascular, urologic, or rejection
Sudden anuria + graft painSuspect vascular thrombosis (emergency)
High output then hypotensionUnder-replacement / hypovolemia

Table E — Early complications

CategoryComplicationNote
VascularArterial/venous thrombosisSudden anuria/pain; graft loss
VascularBleedingHemodynamic instability
UrologicLeak / obstructionUrine leak; hydronephrosis
FunctionalDelayed graft functionLong CIT / DCD (Chapter 6)
ImmunologicHyperacute rejectionNow rare (crossmatch)

Visualise & Map

Phase B Visualise & Map
05
Phase B · Level 5

Imaging and Algorithm Flowcharts

Figure 5.1 — The transplant anatomy
Figure 5.1 — The transplant anatomy
Figure 5.2 — The early monitoring picture
Figure 5.2 — The early monitoring picture
Flowchart 5.A — Early oliguria
Flowchart 5.A — Early oliguria
Flowchart 5.B — Immediate fluid management
Flowchart 5.B — Immediate fluid management
07
Phase B · Level 7

Clinical Decision Pathways

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

R1
IF placing the graft, THEN site it heterotopically in the iliac fossa with iliac vascular and bladder anastomoses.
R2
IF minimising delayed graft function, THEN keep the cold ischemia time as short as possible.
R3
IF managing the immediate post-operative period, THEN maintain perfusion (volume and blood pressure) and avoid nephrotoxins.
R4
IF urine output is high, THEN replace it to prevent hypovolemia and monitor potassium and glucose.
R5
IF urine output is low, THEN assess for delayed graft function, perfusion, vascular, or urologic problems.
R6
IF assessing the graft, THEN follow the creatinine and use Doppler ultrasound.
R7
IF sudden anuria with graft pain occurs, THEN suspect vascular thrombosis — urgent Doppler and surgery.
R8
IF protecting the anastomoses, THEN keep the bladder catheter and remove the ureteric stent at the planned time.

Clinical Reasoning

Phase C Clinical Reasoning
08
Phase C · Level 8

Clinical Cases

Four cases. Each stops you at a decision before it answers it.

CASE 1STANDARD

Urine on the tableImmediate function

Presentation

A living-donor kidney with a short cold time pinks up at reperfusion and produces a brisk diuresis within minutes.

Pause and reflect

Before reading on: what does this signal, and what is the immediate fluid task?

Analysis

Brisk diuresis at reperfusion is the best early sign — immediate function, typical of a living-donor, low-cold-time graft. The immediate task is to replace the high urine output to prevent hypovolemia, watching potassium and glucose, while maintaining perfusion.

Management plan

  1. Recognise immediate function (R6).
  2. Replace the high urine output; monitor K and glucose (R4).
  3. Maintain perfusion; avoid nephrotoxins (R3).

Teaching points

  • Urine on the table is the best sign — now replace the output to protect the graft.

Cross-reference: exercises R3, R4, R6.

CASE 2COMPLEX

Sudden anuria and painVascular thrombosis

Presentation

Hours after a graft that was working, urine output abruptly stops and the patient develops pain over the graft.

Pause and reflect

Before reading on: what is this, and how fast must you act?

Analysis

Sudden anuria with graft pain in a previously working graft is vascular thrombosis (arterial or venous) until proven otherwise — a surgical emergency. An urgent Doppler confirms absent flow, and immediate surgical exploration offers the only chance of salvage; delay loses the graft.

Management plan

  1. Suspect vascular thrombosis immediately (R7).
  2. Urgent Doppler; emergency surgical exploration (R7).
  3. Do not wait — time is graft.

Teaching points

  • Sudden anuria + graft pain = thrombosis = emergency — Doppler and theatre now.

Cross-reference: exercises R7.

CASE 3COMPLEX

A sluggish deceased graftDelayed graft function

Presentation

A deceased-donor kidney with a long cold time is oliguric after surgery; Doppler shows perfusion and no obstruction.

Pause and reflect

Before reading on: with good Doppler, what is the likely cause — and what must you still exclude?

Analysis

Oliguria after a long-cold-time graft, with a perfused kidney and no obstruction on Doppler, is most likely delayed graft function — but vascular and urologic causes are excluded first (which the Doppler helps do). Management is supportive, with dialysis as needed, while function recovers (its own chapter).

Management plan

  1. Exclude vascular/urologic causes with Doppler first (R5, R6).
  2. Attribute oliguria to DGF; support (dialysis as needed) (Ch 6).
  3. Biopsy if rejection is suspected.

Teaching points

  • Oliguria with good Doppler after a long cold time is usually DGF — but exclude the emergencies first.

Cross-reference: exercises R5, R6; see Chapter 6.

CASE 4STANDARD

Polyuria, then a falling pressureUnder-replacement

Presentation

A graft with brisk early polyuria is followed by a falling blood pressure and tachycardia a few hours later.

Pause and reflect

Before reading on: what links the polyuria to the falling pressure?

Analysis

Brisk polyuria that is not matched by replacement leads to hypovolemia — the falling pressure and tachycardia — which then threatens the graft's perfusion. The fix is to match fluid replacement to the urine output and restore volume, not to let the diuresis run the patient dry.

Management plan

  1. Recognise hypovolemia from under-replaced polyuria (R4).
  2. Match replacement to urine output; restore volume (R4, R3).
  3. Protect graft perfusion.

Teaching points

  • Match replacement to a high urine output — unreplaced polyuria starves the graft of flow.

Cross-reference: exercises R3, R4.

10
Phase C · Level 10

Clinical Pearls

Exhaustive. Every rule in the chapter is here.

Graft sits heterotopically in the iliac fossa, extraperitoneal.
Artery + vein to iliac vessels; ureter to bladder over a stent.
Shorter cold ischemia time → less DGF.
Healthy graft pinks up and makes urine on the table.
Perfusion is everything — maintain volume and blood pressure.
Avoid nephrotoxins early.
Brisk diuresis = immediate function; oliguria = a problem.
Replace high urine output; watch K and glucose.
Follow creatinine; use Doppler for perfusion/obstruction.
Bladder catheter protects the anastomosis; remove the stent on schedule.
Induction + maintenance IS start peri-operatively.
Sudden anuria + graft pain = vascular thrombosis (emergency).
Early urologic: leak, obstruction.
Exclude vascular/urologic causes before calling oliguria DGF.

Safety & Evidence

Phase D Safety & Evidence
11
Phase D · Level 11

Red Flags and NEVER DO

Panel A — Red flags

Sudden anuria with graft pain — vascular thrombosis until proven otherwise.
Hypotension or hypovolemia — the graft is being starved of flow.
Absent or abnormal Doppler flow — a vascular emergency.
Urine leak or rising creatinine with hydronephrosis — a urologic complication.

Panel B — NEVER DO

NEVER — allow the graft to hypoperfuse through hypotension or hypovolemia.
NEVER — dismiss sudden anuria with graft pain — it is a thrombosis emergency.
NEVER — leave a high urine output unreplaced.
NEVER — give nephrotoxins to the graft in the early, vulnerable period.
NEVER — remove the bladder catheter or ureteric stent before the planned time.
12
Phase D · Level 12

Common Pitfalls

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

WRONG Running the patient dry or hypotensive.
RIGHT Maintain volume and blood pressure.
WHY The graft depends entirely on perfusion.
WRONG Watching and waiting on sudden anuria with pain.
RIGHT Urgent Doppler and surgical exploration.
WHY Vascular thrombosis loses the graft within hours.
WRONG Leaving brisk polyuria unreplaced.
RIGHT Match replacement to urine output.
WHY Unreplaced polyuria causes hypovolemia and hypoperfusion.
WRONG Giving nephrotoxins early.
RIGHT Avoid them in the vulnerable graft.
WHY The early graft is highly susceptible to injury.
WRONG Removing the stent or catheter early.
RIGHT Remove at the planned time.
WHY Premature removal risks an anastomotic leak.
WRONG Calling all early oliguria DGF.
RIGHT Exclude vascular and urologic causes first with Doppler.
WHY The treatable emergencies must not be missed.
13
Phase D · Level 13

Evidence Grading

The grade reflects strength of evidence, not importance.

GRADE

A

HIGH CONFIDENCE

The effect is real and the estimate is stable.

RCTs at low risk of bias; multiple concordant prospective cohorts; meta-analyses.

GRADE

B

MODERATE CONFIDENCE

The effect is likely real but may shift with new data.

Observational studies, registries, mechanistic human studies.

GRADE

C

LOW CONFIDENCE

Rests on physiology, reasoning, or consensus rather than outcomes.

Pathophysiological reasoning; extrapolation; consensus without outcomes.

StatementGradeRationale for the grade
A shorter cold ischemia time reduces delayed graft function.BRegistry and observational data.
Maintaining perfusion improves early graft function.Physiology / standard of care.
Doppler ultrasound detects vascular and perfusion problems early.BObservational data.
A ureteric stent reduces leak and obstruction.BRandomised and observational data.
Vascular thrombosis is a surgical emergency with poor salvage if delayed.Consensus / mechanism.
Early diuresis predicts immediate graft function.BObservational data.

Apply & Test

Phase F Apply & Test
17
Phase F · Level 17

Documentation Templates

Copy-paste chart notes that map to the early course.

Template 1 — Immediate post-operative transplant note

  • Donor type and ischemia: living/deceased (DBD/DCD); cold ischemia time ___.
  • Anastomoses: arterial/venous (iliac) and ureteric (stent placed); reperfusion appearance ___.
  • Urine on table: yes/no; early output ___; replacement plan ___.
  • Perfusion: volume/blood-pressure targets; nephrotoxins avoided.
  • Immunosuppression: induction ___ ; maintenance ___ . Catheter/stent: in situ, removal plan ___.

Template 2 — Early graft dysfunction assessment note

  • Pattern: oliguria / anuria / rising creatinine; onset and graft pain ___.
  • Catheter patency and volume status checked: ___.
  • Doppler: arterial/venous flow; obstruction/collection ___.
  • Working differential: thrombosis / leak / obstruction / DGF / rejection.
  • Action: urgent surgery / support / biopsy; and outcome ___.
18
Phase F · Level 18

High-Yield Cheat Sheet

Pre-rounds compression. Rules only.

Iliac-fossa, extraperitoneal placement.
Artery/vein → iliac; ureter → bladder + stent.
Short CIT → less DGF.
Healthy graft pinks up; urine on table.
Perfusion is everything — keep volume/BP up.
No nephrotoxins early.
Brisk diuresis good; oliguria = problem.
Replace high urine output (watch K, glucose).
Follow creatinine; Doppler for flow/obstruction.
Sudden anuria + pain = thrombosis (emergency).
Catheter/stent protect anastomoses — timed removal.
Exclude vascular/urologic before calling DGF.
19
Phase F · Level 19

Flashcards

Active recall. At least one card per objective.

CARD 1

Q. Where is the graft placed, and how is it connected?

Show answer

A. Heterotopically in the iliac fossa (extraperitoneal); the renal artery and vein to the iliac vessels and the ureter to the bladder over a stent.

DETAILED. Native kidneys are usually left in place.

CLINICAL. A bladder catheter protects the ureteric anastomosis.

CARD 2

Q. What are cold and warm ischemia times, and why do they matter?

Show answer

A. Cold ischemia runs from cold storage to implantation (longer → more DGF); warm ischemia is the anastomosis time plus donor warm ischemia in DCD.

DETAILED. Cold time is minimised.

CLINICAL. Living-donor kidneys have minimal cold time and usually function immediately.

CARD 3

Q. What is seen at reperfusion in a healthy graft?

Show answer

A. It pinks up, regains turgor, and often makes urine on the table — the best early sign.

DETAILED. Poor perfusion prompts a check of the anastomoses.

CLINICAL. Urine on the table predicts immediate function.

CARD 4

Q. What is the single most important early management principle?

Show answer

A. Maintaining perfusion — adequate volume and blood pressure — because the graft depends entirely on flow; nephrotoxins are avoided.

DETAILED. Hypotension and hypovolemia harm the graft.

CLINICAL. Perfusion is protected above all.

CARD 5

Q. How is early urine output interpreted and managed?

Show answer

A. Brisk diuresis signals immediate function; oliguria signals DGF or a complication. High output is replaced to prevent hypovolemia, watching potassium and glucose.

DETAILED. Unreplaced polyuria causes hypoperfusion.

CLINICAL. Sudden anuria with pain suggests thrombosis.

CARD 6

Q. How is early graft function monitored?

Show answer

A. By a falling creatinine and by Doppler ultrasound of arterial and venous perfusion, which also excludes obstruction and collections.

DETAILED. Doppler quickly distinguishes DGF from a vascular catastrophe.

CLINICAL. It guides the assessment of oliguria.

CARD 7

Q. What early complications must be anticipated?

Show answer

A. Vascular thrombosis (arterial/venous) and bleeding, urine leak and obstruction, delayed graft function, and — now rare — hyperacute rejection.

DETAILED. Thrombosis is a surgical emergency.

CLINICAL. DGF is common with long cold times and DCD.

CARD 8

Q. How is the early non-functioning graft assessed?

Show answer

A. Systematically: confirm perfusion and exclude obstruction with Doppler, check catheter and volume, then attribute oliguria to DGF or biopsy for rejection.

DETAILED. Treatable emergencies (thrombosis, leak, obstruction) are excluded first.

CLINICAL. The order of exclusion matters.

20
Phase F · Level 20

One-Minute Preceptor

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

SCENE 1
Anuria and graft pain
GET A COMMITMENTAsk: “He was making urine, now sudden anuria with graft pain — what's your first thought?”
PROBE“What happens to the graft if a vessel has thrombosed?”
TEACHIt's an emergency — urgent Doppler and theatre; thrombosis loses the graft within hours.
REINFORCE“Right — don't wait, image and explore now.”
CORRECT ERRORSIf they planned to observe, stress the time-critical salvage window.
SCENE 2
Polyuria and a falling pressure
GET A COMMITMENTAsk: “Brisk polyuria, now the pressure's dropping — what's going on?”
PROBE“What happens if we don't replace that urine output?”
TEACHHypovolemia — which starves the graft of perfusion; match replacement to output.
REINFORCE“Exactly — replace volume-for-volume and protect flow.”
CORRECT ERRORSIf they let the diuresis run, point to the falling perfusion.
22
Phase F · Level 22

Board-Style Q&A

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

Q 01
Where is a kidney transplant typically placed?

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

Q 02
Why is cold ischemia time minimised?

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

Q 03
The single most important early post-operative priority is:

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

Q 04
A graft with brisk early polyuria develops hypotension and tachycardia. The cause is most likely:

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

Q 05
Sudden anuria with graft pain in a previously working graft should prompt:

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

Q 06
Oliguria after a long-cold-time deceased graft, with perfusion and no obstruction on Doppler, is most likely:

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

Q 07
What is the role of the ureteric stent and bladder catheter early after transplant?

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

Q 08
In Flowchart 5.A, early anuria is sudden and accompanied by graft pain. The pathway directs you to:

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