Linked from
The 55 pages that link to Acute kidney injury, each with the reason it gives.
SepsisRelated: Kidney injury is a common form of organ dysfunction during severe infection.
DehydrationRelated: Marked dehydration can reduce kidney blood flow and trigger acute injury.
Nonsteroidal anti-inflammatory drugRelated: Lower renal prostaglandin production can reduce kidney blood flow in vulnerable people.
Serotonin syndromeRelated: It can follow dehydration, muscle breakdown, or circulatory instability in severe toxicity.
KidneyRelated: Sudden injury can disrupt filtration over hours or days.
RhabdomyolysisRelated: Myoglobin, dehydration, and renal vasoconstriction can combine to damage the kidneys.
HemodialysisRelated: Temporary hemodialysis may support patients while kidney function recovers.
Diabetic ketoacidosisRelated: Severe dehydration can reduce kidney perfusion and impair filtration.
Compartment syndromeRelated: Myoglobin released by damaged muscle can contribute to kidney injury.
Glomerular filtration rateRelated: Changing filtration can signal acute injury, although creatinine-based estimates lag behind rapid changes.
Metabolic acidosisRelated: Kidney injury can cause acidosis by reducing acid excretion and may also result from its underlying illness.
Glomerular filtrationRelated: Abrupt changes in glomerular blood flow or barrier function can lower filtration.
IbuprofenRelated: Reduced renal prostaglandins can impair kidney blood flow, especially during dehydration or pre-existing kidney disease.
Kidney biopsyRelated: Biopsy may uncover an unexpected tissue cause when clinical tests do not explain the injury.
HyperthermiaRelated: Dehydration, muscle breakdown, and heat-related tissue injury can impair the kidneys.
Nephrotic syndromeRelated: Low effective circulating volume, disease progression, or treatment complications can precipitate it.
Aortic dissectionRelated: Impaired renal artery flow during dissection can abruptly reduce kidney function.
CelecoxibRelated: Prostaglandin suppression can reduce kidney perfusion, particularly in vulnerable patients.
Multiple organ dysfunction syndromeRelated: It represents renal dysfunction that may develop alongside other failing organ systems.
Renal replacement therapyRelated: Severe acute injury can require temporary replacement therapy while kidney function recovers.
Intravenous immunoglobulinRelated: Renal injury is a recognized risk, influenced by patient factors and product formulation.
Kidney dialysisRelated: Severe cases may require dialysis temporarily while kidney function recovers.
Tumor lysis syndromeRelated: Uric acid and calcium-phosphate deposition, along with other stresses, can impair renal function.
Acute liver failureRelated: Renal dysfunction often accompanies acute liver failure and complicates fluid and drug management.
Fluid resuscitationRelated: Fluids help when low circulating volume is causal, but unnecessary fluid can worsen organ congestion.
Cardiopulmonary bypassRelated: Changes in perfusion, inflammation, and embolic load can contribute to kidney injury after bypass.
CreatinineRelated: A rising blood creatinine concentration is a standard indicator of this condition.
DiclofenacRelated: Diclofenac can reduce kidney blood flow, especially in people with dehydration or pre-existing kidney disease.
MannitolRelated: Mannitol has been used in kidney-related settings, but it does not reliably prevent or treat acute kidney injury.
DiureticsRelated: Excessive fluid loss can reduce kidney perfusion and contribute to acute injury.
GlomerulonephritisRelated: Severe glomerular inflammation can abruptly reduce filtration.
Heat strokeRelated: Dehydration, poor circulation, and muscle breakdown can damage the kidneys during heat stroke.
Thrombotic microangiopathyRelated: Small-vessel injury can impair renal filtration and cause abrupt kidney dysfunction.
CaptoprilRelated: Captopril can precipitate kidney injury when filtration depends on angiotensin-mediated pressure, such as in renal artery stenosis.
NephrologyRelated: Its causes and severity guide urgent nephrology evaluation and treatment.
UremiaRelated: An abrupt loss of filtration can cause uremia, although acute kidney injury does not always do so.
Atypical hemolytic uremic syndromeRelated: Renal microvascular injury commonly produces the syndrome’s acute kidney dysfunction.
EnalaprilRelated: Enalapril can impair filtration in susceptible patients, particularly with dehydration or renal artery stenosis.
Rapidly progressive glomerulonephritisRelated: The syndrome is a glomerular cause of acute kidney injury.
ValsartanRelated: Valsartan can lower filtration pressure in kidneys, especially during dehydration or renal artery narrowing.
MeloxicamRelated: NSAID suppression of kidney prostaglandins can impair renal blood flow and trigger injury.
Perinatal asphyxiaRelated: Reduced oxygen delivery can injure the kidneys during a severe asphyxial episode.
Pre-eclampsiaRelated: Pre-eclampsia can impair kidney function, sometimes severely.
2,4-DinitrophenolRelated: Rhabdomyolysis and circulatory complications can cause kidney injury in severe poisoning.
AciclovirRelated: High exposure, dehydration, or intravenous administration can increase aciclovir crystal-related kidney injury risk.