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2 · Classification — RIFLE/AKIN/KDIGO
Patients who receive RRT are considered to have met stage 3 criteria, irrespective of the stage they are in at the time of RRT.
A patient's creatinine has risen and their urine output has fallen, and they are started on renal replacement therapy that same day, before repeat bloods come back. Walk me through how AKI is classified — the two measurements both systems grade on, the RIFLE stages, the AKIN stages, and what happens to the stage once a patient starts RRT.
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3 · Epidemiology
4 · Approaching AKI
5 · Pre-renal
6 · Pre-renal or renal?
It can be difficult to distinguish pre-renal and renal AKI. Prolonged renal hypoperfusion will lead to ATN — they are the same process at different durations.
7 · Management of pre-renal
8 · Post-renal
…once this is relieved (and if acute), renal function will return to baseline.
9 · Renal parenchymal
10 · Pathogenesis of ATN
11 · Clinical picture
12 · Emergency investigation
13 · Investigations
14 · Acute or chronic?
15 · Management
16 · RRT
17 · Rhabdomyolysis + contrast
18 · Tumour lysis + hyperuricaemic nephropathy
…and within hours their uric acid, potassium and phosphate begin climbing.
19 · Hepatorenal + Outcome
One last yap: connect the dots
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In SIADH, urine osmolality is despite a plasma osmolality of .
In SIADH, urine osmolality is inappropriately high (>100 mOsm/kg) despite a plasma osmolality of <275 mOsm/kg.
The mild volume expansion suppresses the renin–aldosterone axis and stimulates natriuretic peptides, so the patient ends up euvolemic rather than oedematous.
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SBAs
Question n of NA 60-year-old man is brought to the emergency department due to altered mental status. His wife says that he has a nagging cough that seemed to worsen over the past several months and that he also began experiencing occasional dizziness earlier this week. Over the last couple of days, the patient has become increasingly confused, and today he “does not make any sense at all.” He has no significant past medical history but has smoked a pack of cigarettes daily for the last 40 years. On physical examination, the patient is incoherent but has an otherwise normal neurologic examination. Chest x-ray reveals a mass in the right lung.
| Sodium | 120 mEq/L |
|---|---|
| Potassium | 4.0 mEq/L |
| Blood urea nitrogen | 12 mg/dL |
| Creatinine | 0.8 mg/dL |
| Calcium | 9.0 mg/dL |
| Glucose | 98 mg/dL |
| Plasma osmolality | 250 mOsm/kg |
| Urine drug screen | negative |
Which of the following additional findings is most likely to be present in this patient?
This patient’s combination of hyponatremia and a lung mass is suggestive of the syndrome of inappropriate antidiuretic hormone secretion (SIADH). Antidiuretic hormone (ADH) is normally produced in the hypothalamus and secreted from the posterior pituitary in response to changes in plasma osmolality and intravascular volume. However, small cell lung carcinomas, which are tumors of neuroendocrine origin, often release ADH independent of feedback inhibition (paraneoplastic effect). This inappropriate secretion of ADH leads to hyponatremia, decreased plasma osmolality, and elevated urine osmolality (which normally should be <100 mOsm/kg when hyponatremia is present).
Educational objective: The syndrome of inappropriate antidiuretic hormone secretion (SIADH) is characterized by low plasma sodium and osmolality, inappropriately concentrated urine, and clinically normal volume status (euvolemic hyponatremia).
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| Question | Your answer | Correct answer |
|---|
Nephro
Electrolyte Disorders
4 entriesHypernatraemia
- Serum Na > 145 mmol/L → water drawn out of cells → brain shrinks
- Predominantly neurological symptoms
- Acute (<48 h): symptomatic — confusion, headache, N/V, seizures, coma
- Chronic (>48 h): usually asymptomatic (brain adapts by osmotic uptake)
- Serum Na — confirm >145 mmol/L threshold
- Serum + urine osmolality — high serum osm identifies water-loss vs Na-gain
- Water-loss vs Na-gain workup — ADH status (CDI vs NDI), aldosterone/cortisol if Conn's/Cushing's suspected
- Water-loss predominant — 5% dextrose IV or oral water + treat cause (e.g. vasopressin for CDI)
- Na-gain predominant — diuretics (increase Na loss in urine) + 5% dextrose + treat cause
- Central DI — ↓ADH from posterior pituitary (idiopathic, trauma, neurosurgery, infection, tumour)
- Nephrogenic DI — normal ADH but tubules unresponsive (renal disease, sickle cell, lithium)
- Conn's — adrenal cortex tumour → ↑Na, ↑BP, ↓K, metabolic alkalosis
- Cushing's — cortisol mineralocorticoid effect (adrenal tumour or corticosteroid intake)
- Water-loss causes (beyond DI) — insensible loss (sweating, burns, fever, exercise), GI loss (vomiting, diarrhoea), osmotic diuresis (DKA, diuretics)
Hyponatraemia
- Serum Na < 136 mmol/L → water drawn into cells → brain swells
- Acute (<48 h): confusion, headache, N/V, seizures, coma
- Chronic (>48 h): usually asymptomatic (brain excretes intracellular osmoles)
- Severe (<120 mmol/L) — symptomatic regardless of acute or chronic
- Serum Na — confirm <136 mmol/L
- Serum osmolality — ↓ in true (hypo-osmolar) hyponatraemia
- Assess volume status first — hypovolaemic / euvolemic / hypervolemic drives the workup
- Urine Na + osmolality — helps localise SIADH vs renal loss
- TFTs / short synacthen — rule out hypothyroidism, Addison's
- Symptomatic → 3% hypertonic saline (regardless of volume)
- Asymptomatic hypovolaemic → 0.9% normal saline + treat cause
- Asymptomatic euvolemic / hypervolemic → water restriction + diuretics + treat cause
- Hypovolaemic — diuretics, Addison's (↓aldosterone → renal Na loss + hyperkalaemia + metabolic acidosis), vomiting/diarrhoea
- Euvolemic — SIADH (CNS/pulmonary disease, cancers, SSRIs/TCAs), hypothyroidism, psychogenic polydipsia (15–20 L/day)
- Hypervolemic — renal failure, heart failure, liver failure, nephrotic syndrome
Hypokalaemia
- Muscle — weakness; paralysis if severe
- Cardiac — arrhythmias
- Renal — nephrogenic DI (K required for ADH effect on tubule)
- Serum K — confirm hypokalaemia
- ECG — flat T wave, prominent U wave
- Serum Mg — often co-depleted; refractory K unless Mg replaced
- Aldosterone / renin — for Conn's, secondary hyperaldosteronism screen
- ECG — flat T wave, prominent U wave, ST depression, PR prolongation
- Oral K supplementation — mild/moderate deficit with normal ECG
- IV KCl — severe hypokalaemia, ECG changes, or unable to take orally; via central line if concentrated
- Correct Mg — hypomagnesaemia perpetuates renal K wasting
- Treat cause — stop offending diuretic, treat Conn's, replace GI losses
- Avoid dextrose-containing IV fluids — use isotonic 0.9% saline as diluent; dextrose triggers insulin release → drives K into cells → worsens hypokalaemia
- Classic ECG signature — flat T + prominent U wave (opposite of hyperkalaemia's peaked T)
- Causes — GI loss (vomiting, diarrhoea); transcellular shift into cells (insulin, β-agonists, alkalosis); renal loss (loop/thiazide diuretics, mineralocorticoid excess, tubular defects)
- Tubular-defect causes — Bartter (Na-K-2Cl defect, ascending loop of Henle, mimics loop diuretic), Gitelman (Na-Cl defect, DCT, mimics thiazide), liquorice
Hyperkalaemia
- Muscle — weakness
- Cardiac — abnormal conduction / heart block
- Serum K — confirm; rule out haemolysed sample
- ECG — peaked T wave
- Renal function (urea/Cr) — CKD/AKI is dominant cause
- Blood gas — associated metabolic acidosis
- Aldosterone/cortisol — screen Addison's if hyponatraemic + hypotensive
- Full ECG progression — peaked T → widening QRS → PR prolongation → low-amplitude P wave
- ECG — peaked T wave, widening of QRS, PR prolongation, low-amplitude (flattened) P wave
- Calcium gluconate IV — first line if ECG changes; membrane stabilisation, doesn't lower K
- Insulin + dextrose — shifts K into cells via Na-K pump; dextrose prevents hypoglycaemia
- Sodium bicarbonate — alkalosis drives K into cells in exchange with H+
- Beta-2 agonist (nebulised salbutamol) — activates Na-K pump
- Loop diuretics — increase urinary K excretion
- Cation exchange resin — absorbs K from GIT → excreted in stool
- Dialysis — last line if refractory; also for AEIOU indications in AKI
- Classic ECG signature — peaked T wave, then QRS widening (opposite of hypokalaemia's flat T + U)
- Extracellular shift causes — cell lysis (rhabdo, tumour lysis), acidosis, insulin deficiency, beta blockers, digoxin
- Decreased-excretion causes — drugs (K-sparing diuretics, ACE-i, ARBs → ↓aldosterone), decreased adrenal activity (Addison's), renal failure
Acute Renal Injury
6 entriesAcute Tubular Necrosis (ATN)
- Final common pathway for many insults — accounts for 80–90% of intrinsic AKI
- Ischaemic ATN — trauma, septicaemia, acute pancreatitis, hypotension/shock
- Nephrotoxic ATN — poisons, drugs (aminoglycosides, contrast agents), organic solvents, myoglobin (rhabdo)
- Four classical phases — onset (36 h) → oliguric (few days–3 weeks, marked oliguria + uraemia) → diuretic (polyuria >3 L/day) → recovery (weeks); usually partial residual impairment
- Urea/creatinine rising over days
- Urine — muddy brown granular casts, renal tubular epithelial cell casts
- Urine Na > 20, FENa >1%, urine osm <350 — distinguishes from pre-renal
- Ultrasound — normal or enlarged kidneys (rule out post-renal)
- Renal biopsy if persistent >4 weeks or unclear cause
- DO NOT give fluid in established ATN — supportive only
- Withhold nephrotoxins; adjust doses of renally cleared drugs
- Treat hyperkalaemia, acidosis, fluid overload, sepsis
- RRT — for AEIOU indications: refractory Acidosis, Electrolytes (K >6.5), Intoxications, Overload, Uraemic complications
- Recovery over 7–21 days; sepsis delays recovery
- Nephrotoxic ATN — basement membrane and regeneration? Nephrotoxic ATN — spares basement membrane, targets whole PCT → good regeneration
- Ischaemic ATN — basement membrane and regeneration? Ischaemic ATN — focal rupture of tubular basement membrane → incomplete regeneration in those areas
- What are the gross findings? Gross — enlarged kidney, pale necrotic cortex, congested medulla
- Two oliguria mechanisms — (1) tubular damage → renin-angiotensin → afferent VC → ↓GFR; (2) debris blocks lumen → ↑intratubular pressure → fluid leak to interstitium → collapsed tubules
- Non-oliguric AKI usually reflects a less severe renal insult (better prognosis); oliguria is the common early finding
Rhabdomyolysis
- Skeletal muscle injury releases myoglobin → nephrotoxic ATN ("crush syndrome")
- Causes — trauma, compartment syndrome, excessive exertion (marathon runners), status epilepticus
- Muscle toxins — statins, malaria/antimalarials, snake/insect venom
- Dark brown / tea-coloured urine + oliguria + AKI
- Urine dipstick — positive for blood, but no RBCs on microscopy (myoglobin cross-reactivity)
- Elevated markers — K↑, PO4↑, CPK↑↑ (creatine phosphokinase)
- Serum myoglobin
- Renal function — rising BUN/creatinine consistent with ATN
- Assess for compartment syndrome — surgical review
- Aggressive IV fluid resuscitation — crystalloids to maintain urine output and flush myoglobin
- Treat hyperkalaemia — insulin/dextrose, calcium gluconate for ECG changes
- Fasciotomy — if compartment syndrome
- Haemodialysis if severe AKI or refractory hyperkalaemia
- Tubular epithelium regenerates with supportive care
- Urine dipstick positive for blood but no RBCs on microscopy — pathognomonic for myoglobin/haemoglobin
- What is the classic AKI phase sequence? Classic AKI arc — oliguric maintenance phase → recovery phase polyuria (>3 L/day) as tubules recover before concentrating ability
Acute Kidney Injury (AKI)
- Abrupt deterioration in renal function over hours–days, usually reversible
- Acute symptoms — dyspnoea, N/V, diarrhoea
- Common — 1 in 5 hospitalised adults, 1 in 3 hospitalised children; ~5% UK community admissions; sepsis (25%) or septic shock (50%)
- 3 anatomical categories — pre-renal (hypoperfusion), renal parenchymal, post-renal (obstruction)
- Pre-renal causes — hypovolaemia (dehydration, haemorrhage), hypotension without hypovolaemia (cirrhosis, septic shock), low cardiac output (cardiac failure, cardiogenic shock)
- Intrinsic (renal parenchymal) — 4 subtypes: ATN (80–90%), glomerular (acute RPGN), acute tubulointerstitial, vascular (vasculitis, accelerated hypertension, cholesterol embolism, HUS)
- Post-renal — prostate disease (men) or bilateral ureteric obstruction (stones/tumours); hesitancy + frequency; palpable bladder + suprapubic dullness on exam
- Assess volume status — hypovolaemia signs: low BP, rapid pulse, sunken eyes, collapsed neck veins
- Serum urea + creatinine + eGFR — stage per RIFLE/AKIN/KDIGO
- Blood urea to creatinine ratio > 20:1 (urea:creatinine >40:1) — suggests pre-renal
- Urine chemistry — FENa <1%, urine Na <10, urine osm >500 in pre-renal; opposite in intrinsic
- Urinalysis — RBC casts (glomerulonephritis), free Hb/myoglobin, pigmenturia
- Early biomarkers — KIM-1, NGAL rise within hours
- Serum chemistry — U&E, Ca, PO4, albumin, ALP, urate; CBC, coagulation, blood cultures, nephrotoxic drug levels; immune profile if GN suspected
- Ultrasound of abdomen + pelvis — mandatory to exclude obstruction; check bladder
- Renal biopsy — indicated if unexplained urine abnormalities (proteinuria/haematuria), persistent ATN >4 weeks, unclear aetiology, suspected systemic disease
- Acute vs chronic — kidneys normal size on US in AKI vs small in CKD (except diabetes, where CKD kidneys stay normal/large); previous creatinine normal; anaemia, high PTH, hyperphosphataemia and hypocalcaemia less common than in CKD
- Fluid balance — daily weights, lying/standing BP, intake/output; withhold nephrotoxins
- Pre-renal — fluid challenge of 250 mL crystalloid; Plasmalyte or Ringer's lactate preferred over 0.9% saline (avoid hyperchloraemic acidosis)
- Post-renal — urethral catheter + upper tract imaging; nephrostomy for upper tract obstruction
- Intrinsic ATN — DO NOT give fluid once established; supportive
- Treat hyperkalaemia, acidosis, pulmonary oedema, sepsis
- Adjust drug doses daily; particular care with anticoagulants; salt + K restriction
- RRT indications (all 5) — symptomatic uraemia (encephalopathy/pericarditis/tamponade), refractory hyperkalaemia, refractory pulmonary oedema, severe acidosis, drug removal (gentamicin, lithium, severe aspirin overdose)
- Uncomplicated AKI mortality <5–10%; ITU + multi-organ failure 50–70%; sepsis-associated AKI much worse prognosis
- Autoregulation defence — prostaglandins on afferent arteriole (blocked by NSAIDs); angiotensin II on efferent arteriole (blocked by ACE-i)
Acute Tubular Necrosis (ATN)
- Final common pathway for many insults — accounts for 80–90% of intrinsic AKI
- Ischaemic ATN — trauma, septicaemia, acute pancreatitis, hypotension/shock
- Nephrotoxic ATN — poisons, drugs (aminoglycosides, contrast agents), organic solvents, myoglobin (rhabdo)
- Four classical phases — onset (36 h) → oliguric (few days–3 weeks, marked oliguria + uraemia) → diuretic (polyuria >3 L/day) → recovery (weeks); usually partial residual impairment
- Urea/creatinine rising over days
- Urine — muddy brown granular casts, renal tubular epithelial cell casts
- Urine Na > 20, FENa >1%, urine osm <350 — distinguishes from pre-renal
- Ultrasound — normal or enlarged kidneys (rule out post-renal)
- Renal biopsy if persistent >4 weeks or unclear cause
- DO NOT give fluid in established ATN — supportive only
- Withhold nephrotoxins; adjust doses of renally cleared drugs
- Treat hyperkalaemia, acidosis, fluid overload, sepsis
- RRT — for AEIOU indications: refractory Acidosis, Electrolytes (K >6.5), Intoxications, Overload, Uraemic complications
- Recovery over 7–21 days; sepsis delays recovery
- Nephrotoxic ATN — spares basement membrane, targets whole PCT → good regeneration
- Ischaemic ATN — focal rupture of tubular basement membrane → incomplete regeneration in those areas
- Gross — enlarged kidney, pale necrotic cortex, congested medulla
- Two oliguria mechanisms — (1) tubular damage → renin-angiotensin → afferent VC → ↓GFR; (2) debris blocks lumen → ↑intratubular pressure → fluid leak to interstitium → collapsed tubules
- Non-oliguric AKI usually reflects a less severe renal insult (better prognosis); oliguria is the common early finding
Rhabdomyolysis
- Skeletal muscle injury releases myoglobin → nephrotoxic ATN ("crush syndrome")
- Causes — trauma, compartment syndrome, excessive exertion (marathon runners), status epilepticus
- Muscle toxins — statins, malaria/antimalarials, snake/insect venom
- Dark brown / tea-coloured urine + oliguria + AKI
- Urine dipstick — positive for blood, but no RBCs on microscopy (myoglobin cross-reactivity)
- Elevated markers — K↑, PO4↑, CPK↑↑ (creatine phosphokinase)
- Serum myoglobin
- Renal function — rising BUN/creatinine consistent with ATN
- Assess for compartment syndrome — surgical review
- Aggressive IV fluid resuscitation — crystalloids to maintain urine output and flush myoglobin
- Treat hyperkalaemia — insulin/dextrose, calcium gluconate for ECG changes
- Fasciotomy — if compartment syndrome
- Haemodialysis if severe AKI or refractory hyperkalaemia
- Tubular epithelium regenerates with supportive care
- Urine dipstick positive for blood but no RBCs on microscopy — pathognomonic for myoglobin/haemoglobin
- Classic AKI arc — oliguric maintenance phase → recovery phase polyuria (>3 L/day) as tubules recover before concentrating ability
Acute Kidney Injury (AKI)
- Abrupt deterioration in renal function over hours–days, usually reversible
- Acute symptoms — dyspnoea, N/V, diarrhoea
- Common — 1 in 5 hospitalised adults, 1 in 3 hospitalised children; ~5% UK community admissions; sepsis (25%) or septic shock (50%)
- 3 anatomical categories — pre-renal (hypoperfusion), renal parenchymal, post-renal (obstruction)
- Pre-renal causes — hypovolaemia (dehydration, haemorrhage), hypotension without hypovolaemia (cirrhosis, septic shock), low cardiac output (cardiac failure, cardiogenic shock)
- Intrinsic (renal parenchymal) — 4 subtypes: ATN (80–90%), glomerular (acute RPGN), acute tubulointerstitial, vascular (vasculitis, accelerated hypertension, cholesterol embolism, HUS)
- Post-renal — prostate disease (men) or bilateral ureteric obstruction (stones/tumours); hesitancy + frequency; palpable bladder + suprapubic dullness on exam
- Assess volume status — hypovolaemia signs: low BP, rapid pulse, sunken eyes, collapsed neck veins
- Serum urea + creatinine + eGFR — stage per RIFLE/AKIN/KDIGO
- Blood urea to creatinine ratio > 20:1 (urea:creatinine >40:1) — suggests pre-renal
- Urine chemistry — FENa <1%, urine Na <10, urine osm >500 in pre-renal; opposite in intrinsic
- Urinalysis — RBC casts (glomerulonephritis), free Hb/myoglobin, pigmenturia
- Early biomarkers — KIM-1, NGAL rise within hours
- Serum chemistry — U&E, Ca, PO4, albumin, ALP, urate; CBC, coagulation, blood cultures, nephrotoxic drug levels; immune profile if GN suspected
- Ultrasound of abdomen + pelvis — mandatory to exclude obstruction; check bladder
- Renal biopsy — indicated if unexplained urine abnormalities (proteinuria/haematuria), persistent ATN >4 weeks, unclear aetiology, suspected systemic disease
- Acute vs chronic — kidneys normal size on US in AKI vs small in CKD (except diabetes, where CKD kidneys stay normal/large); previous creatinine normal; anaemia, high PTH, hyperphosphataemia and hypocalcaemia less common than in CKD
- Fluid balance — daily weights, lying/standing BP, intake/output; withhold nephrotoxins
- Pre-renal — fluid challenge of 250 mL crystalloid; Plasmalyte or Ringer's lactate preferred over 0.9% saline (avoid hyperchloraemic acidosis)
- Post-renal — urethral catheter + upper tract imaging; nephrostomy for upper tract obstruction
- Intrinsic ATN — DO NOT give fluid once established; supportive
- Treat hyperkalaemia, acidosis, pulmonary oedema, sepsis
- Adjust drug doses daily; particular care with anticoagulants; salt + K restriction
- RRT indications (all 5) — symptomatic uraemia (encephalopathy/pericarditis/tamponade), refractory hyperkalaemia, refractory pulmonary oedema, severe acidosis, drug removal (gentamicin, lithium, severe aspirin overdose)
- Uncomplicated AKI mortality <5–10%; ITU + multi-organ failure 50–70%; sepsis-associated AKI much worse prognosis
- Autoregulation defence — prostaglandins on afferent arteriole (blocked by NSAIDs); angiotensin II on efferent arteriole (blocked by ACE-i)
Rhabdomyolysis
- Skeletal muscle injury releases myoglobin → nephrotoxic ATN ("crush syndrome")
- Causes — trauma, compartment syndrome, excessive exertion (marathon runners), status epilepticus
- Muscle toxins — statins, malaria/antimalarials, snake/insect venom
- Dark brown / tea-coloured urine + oliguria + AKI
- Urine dipstick — positive for blood, but no RBCs on microscopy (myoglobin cross-reactivity)
- Elevated markers — K↑, PO4↑, CPK↑↑ (creatine phosphokinase)
- Serum myoglobin
- Renal function — rising BUN/creatinine consistent with ATN
- Assess for compartment syndrome — surgical review
- Aggressive IV fluid resuscitation — crystalloids to maintain urine output and flush myoglobin
- Treat hyperkalaemia — insulin/dextrose, calcium gluconate for ECG changes
- Fasciotomy — if compartment syndrome
- Haemodialysis if severe AKI or refractory hyperkalaemia
- Tubular epithelium regenerates with supportive care
- Urine dipstick positive for blood but no RBCs on microscopy — pathognomonic for myoglobin/haemoglobin
- Classic AKI arc — oliguric maintenance phase → recovery phase polyuria (>3 L/day) as tubules recover before concentrating ability
Tumour Lysis / Acute Hyperuricaemic Nephropathy
- Complication of first cytotoxic/steroid treatment of lymphoproliferative tumours
- Massive tumour cell lysis releases intracellular contents — URIC ACID, K, PO4
- Uric acid crystal deposition in collecting ducts, pelvis, ureters → intrarenal + extrarenal obstruction → AKI
- Serum uric acid, K, PO4, Ca (may be low), LDH
- Renal function — rising urea/creatinine
- Ultrasound — may show extrarenal obstruction due to urate stones, or be unremarkable
- Allopurinol — prior to and throughout cytotoxic/radiotherapy treatment (prophylaxis)
- Aggressive IV fluids — maintain high urine output
- Sodium bicarbonate — alkalinise urine to solubilise urate
- Febuxostat — if allopurinol not tolerated + eGFR >30
- Rasburicase — recombinant urate oxidase; converts urate to soluble allantoin
- Dialysis — severely oliguric/anuric patients
- URIC ACID — highlighted release; primary cause of obstruction
Acute Kidney Injury (AKI)
- Abrupt deterioration in renal function over hours–days, usually reversible
- Acute symptoms — dyspnoea, N/V, diarrhoea
- Common — 1 in 5 hospitalised adults, 1 in 3 hospitalised children; ~5% UK community admissions; sepsis (25%) or septic shock (50%)
- 3 anatomical categories — pre-renal (hypoperfusion), renal parenchymal, post-renal (obstruction)
- Pre-renal causes — hypovolaemia (dehydration, haemorrhage), hypotension without hypovolaemia (cirrhosis, septic shock), low cardiac output (cardiac failure, cardiogenic shock)
- Intrinsic (renal parenchymal) — 4 subtypes: ATN (80–90%), glomerular (acute RPGN), acute tubulointerstitial, vascular (vasculitis, accelerated hypertension, cholesterol embolism, HUS)
- Post-renal — prostate disease (men) or bilateral ureteric obstruction (stones/tumours); hesitancy + frequency; palpable bladder + suprapubic dullness on exam
- Assess volume status — hypovolaemia signs: low BP, rapid pulse, sunken eyes, collapsed neck veins
- Serum urea + creatinine + eGFR — stage per RIFLE/AKIN/KDIGO
- Blood urea to creatinine ratio > 20:1 (urea:creatinine >40:1) — suggests pre-renal
- Urine chemistry — FENa <1%, urine Na <10, urine osm >500 in pre-renal; opposite in intrinsic
- Urinalysis — RBC casts (glomerulonephritis), free Hb/myoglobin, pigmenturia
- Early biomarkers — KIM-1, NGAL rise within hours
- Serum chemistry — U&E, Ca, PO4, albumin, ALP, urate; CBC, coagulation, blood cultures, nephrotoxic drug levels; immune profile if GN suspected
- Ultrasound of abdomen + pelvis — mandatory to exclude obstruction; check bladder
- Renal biopsy — indicated if unexplained urine abnormalities (proteinuria/haematuria), persistent ATN >4 weeks, unclear aetiology, suspected systemic disease
- Acute vs chronic — kidneys normal size on US in AKI vs small in CKD (except diabetes, where CKD kidneys stay normal/large); previous creatinine normal; anaemia, high PTH, hyperphosphataemia and hypocalcaemia less common than in CKD
- Fluid balance — daily weights, lying/standing BP, intake/output; withhold nephrotoxins
- Pre-renal — fluid challenge of 250 mL crystalloid; Plasmalyte or Ringer's lactate preferred over 0.9% saline (avoid hyperchloraemic acidosis)
- Post-renal — urethral catheter + upper tract imaging; nephrostomy for upper tract obstruction
- Intrinsic ATN — DO NOT give fluid once established; supportive
- Treat hyperkalaemia, acidosis, pulmonary oedema, sepsis
- Adjust drug doses daily; particular care with anticoagulants; salt + K restriction
- RRT indications (all 5) — symptomatic uraemia (encephalopathy/pericarditis/tamponade), refractory hyperkalaemia, refractory pulmonary oedema, severe acidosis, drug removal (gentamicin, lithium, severe aspirin overdose)
- Uncomplicated AKI mortality <5–10%; ITU + multi-organ failure 50–70%; sepsis-associated AKI much worse prognosis
- Autoregulation defence — prostaglandins on afferent arteriole (blocked by NSAIDs); angiotensin II on efferent arteriole (blocked by ACE-i)
Acute Tubular Necrosis (ATN)
- Final common pathway for many insults — accounts for 80–90% of intrinsic AKI
- Ischaemic ATN — trauma, septicaemia, acute pancreatitis, hypotension/shock
- Nephrotoxic ATN — poisons, drugs (aminoglycosides, contrast agents), organic solvents, myoglobin (rhabdo)
- Four classical phases — onset (36 h) → oliguric (few days–3 weeks, marked oliguria + uraemia) → diuretic (polyuria >3 L/day) → recovery (weeks); usually partial residual impairment
- Urea/creatinine rising over days
- Urine — muddy brown granular casts, renal tubular epithelial cell casts
- Urine Na > 20, FENa >1%, urine osm <350 — distinguishes from pre-renal
- Ultrasound — normal or enlarged kidneys (rule out post-renal)
- Renal biopsy if persistent >4 weeks or unclear cause
- DO NOT give fluid in established ATN — supportive only
- Withhold nephrotoxins; adjust doses of renally cleared drugs
- Treat hyperkalaemia, acidosis, fluid overload, sepsis
- RRT — for AEIOU indications: refractory Acidosis, Electrolytes (K >6.5), Intoxications, Overload, Uraemic complications
- Recovery over 7–21 days; sepsis delays recovery
- Nephrotoxic ATN — spares basement membrane, targets whole PCT → good regeneration
- Ischaemic ATN — focal rupture of tubular basement membrane → incomplete regeneration in those areas
- Gross — enlarged kidney, pale necrotic cortex, congested medulla
- Two oliguria mechanisms — (1) tubular damage → renin-angiotensin → afferent VC → ↓GFR; (2) debris blocks lumen → ↑intratubular pressure → fluid leak to interstitium → collapsed tubules
- Non-oliguric AKI usually reflects a less severe renal insult (better prognosis); oliguria is the common early finding
Tumour Lysis / Acute Hyperuricaemic Nephropathy
- Complication of first cytotoxic/steroid treatment of lymphoproliferative tumours
- Massive tumour cell lysis releases intracellular contents — URIC ACID, K, PO4
- Uric acid crystal deposition in collecting ducts, pelvis, ureters → intrarenal + extrarenal obstruction → AKI
- Serum uric acid, K, PO4, Ca (may be low), LDH
- Renal function — rising urea/creatinine
- Ultrasound — may show extrarenal obstruction due to urate stones, or be unremarkable
- Allopurinol — prior to and throughout cytotoxic/radiotherapy treatment (prophylaxis)
- Aggressive IV fluids — maintain high urine output
- Sodium bicarbonate — alkalinise urine to solubilise urate
- Febuxostat — if allopurinol not tolerated + eGFR >30
- Rasburicase — recombinant urate oxidase; converts urate to soluble allantoin
- Dialysis — severely oliguric/anuric patients
- URIC ACID — highlighted release; primary cause of obstruction
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Timed, 60 seconds a question, drawn from every lecture you've done.
A 61-year-old man presents with reduced urine output three days after starting an ACE inhibitor and an NSAID together.
Which is the most likely mechanism?
Acute kidney injury
19 sections · 4 finished
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