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Updated: Jan 22, 2026

Generation of Human Kidney Tubuloids from Tissue and Urine
Published on: April 16, 2021
Urine complement activation fragments are increased in patients with kidney injury after cardiac surgery
Jennifer Laskowski1, Heather Thiessen Philbrook1, Chirag R Parikh2
1Division of Nephrology, University of Colorado School of Medicine, Aurora, Colorado.
Abstract:
Experiments in mouse models have shown that the complement cascade is activated within the kidney after ischemia-reperfusion and that complement activation contributes to tubular injury in this setting. Less is known, however, about complement activation in human kidneys after ischemia or whether complement activation in the tubulointerstitium can be detected by measurement of complement fragments in the urine. We hypothesized that urine biomarkers of complement activation would rapidly increase in patients who develop ischemic acute kidney injury, signaling complement activation within the kidney. We confirmed that the alternative pathway of complement is activated in the kidneys of mice after ischemia-reperfusion, and we found that levels of factor B fragments (generated during alternative pathway activation) rapidly increase in the urine. We next performed a case-control study in which we measured complement fragments in human urine samples from patients undergoing cardiac surgery using ELISAs. The level of Ba increased after cardiac surgery and was significantly higher in patients who developed acute kidney injury. The increase in Ba also correlated with magnitude of the subsequent rise in serum creatinine and with the need for hemodialysis during the hospitalization. These findings demonstrate that the alternative pathway of complement is activated in patients who develop acute kidney injury after cardiac surgery and that increases in the level of urine Ba may be a predictive and functional biomarker of severe kidney injury.
Insights
Urine biomarkers for complement activation, specifically factor B fragments (Ba), rapidly increase in patients with acute kidney injury after cardiac surgery. This finding suggests Ba is a potential predictive marker for severe kidney damage.
Area of Science:
- Nephrology
- Immunology
- Biochemistry
Background:
- Complement cascade activation occurs in mouse kidneys post-ischemia-reperfusion, contributing to tubular injury.
- The role and detection of complement activation in human kidneys following ischemia remain less understood.
- Investigating urine complement fragments could offer insights into kidney injury.
Purpose of the Study:
- To investigate if urine biomarkers of complement activation increase in patients developing ischemic acute kidney injury.
- To determine if complement activation in the tubulointerstitium can be detected via urine analysis.
- To explore the predictive value of urine complement fragments in acute kidney injury.
Main Methods:
- Confirmed alternative pathway complement activation in mouse kidneys after ischemia-reperfusion.
- Measured urine levels of factor B fragments (Ba) in mice.
- Conducted a case-control study measuring urine Ba in human patients undergoing cardiac surgery using ELISAs.
Main Results:
- Urine Ba levels increased post-cardiac surgery in humans.
- Significantly higher urine Ba levels were observed in patients who developed acute kidney injury.
- Increased urine Ba correlated with serum creatinine rise and need for hemodialysis.
Conclusions:
- The alternative pathway of complement is activated in patients with acute kidney injury post-cardiac surgery.
- Elevated urine Ba levels may serve as a predictive and functional biomarker for severe kidney injury.
- Urine Ba measurement offers a non-invasive method to assess complement activation in the kidney.
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