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Updated: Apr 28, 2026

Development of Human Renal Tubular Epithelial Cell Primary Cultures in Monolayers and Three-Dimensional Conditions
Published on: June 13, 2025
Direct acute tubular damage contributes to Shigatoxin-mediated kidney failure
Stefan Porubsky1, Giuseppina Federico, Johannes Müthing
1Department of Cellular and Molecular Pathology, German Cancer Research Centre, Heidelberg, Germany; Institute of Pathology, University Medical Centre Mannheim, University of Heidelberg, Mannheim, Germany.
Abstract:
The pathogenesis and therapy of Shigatoxin 2 (Stx2)-mediated kidney failure remain controversial. Our aim was to test whether, during an infection with Stx2-producing E. coli (STEC), Stx2 exerts direct effects on renal tubular epithelium and thereby possibly contributes to acute renal failure. Mice represent a suitable model because they, like humans, express the Stx2-receptor Gb3 in the tubular epithelium but, in contrast to humans, not in glomerular endothelia, and are thus free of glomerular thrombotic microangiopathy (TMA). In wild-type mice, Stx2 caused acute tubular dysfunction with consequent electrolyte disturbance, which was most likely the cause of death. Tubule-specific depletion of Gb3 protected the mice from acute renal failure. In vitro, Stx2 induced secretion of proinflammatory cytokines and apoptosis in human tubular epithelial cells, thus implicating a direct effect of Stx2 on the tubular epithelium. To correlate these results to human disease, kidney biopsies and outcome were analysed in patients with Stx2-associated kidney failure (n = 11, aged 22-44 years). The majority of kidney biopsies showed different stages of an ongoing TMA; however, no glomerular complement activation could be demonstrated. All biopsies, including those without TMA, showed severe acute tubular damage. Due to these findings, patients were treated with supportive therapy without complement-inhibiting antibodies (eculizumab) or immunoadsorption. Despite the severity of the initial disease [creatinine 6.34 (1.31-17.60) mg/dl, lactate dehydrogenase 1944 (753-2792) U/l, platelets 33 (19-124)/nl and haemoglobin 6.2 (5.2-7.8) g/dl; median (range)], all patients were discharged after 33 (range 19-43) days with no neurological symptoms and no dialysis requirement [creatinine 1.39 (range 0.84-2.86) mg/dl]. The creatinine decreased further to 0.90 (range 0.66-1.27) mg/dl after 24 months. Based on these data, one may surmise that acute tubular damage represents a separate pathophysiological mechanism, importantly contributing to Stx2-mediated acute kidney failure. Specifically in young adults, an excellent outcome can be achieved by supportive therapy only.
Insights
Shigatoxin 2 (Stx2) directly damages kidney tubules, causing acute kidney failure in mice and humans. Supportive care alone effectively treats Stx2-induced kidney injury in young adults, avoiding dialysis.
Area of Science:
- Nephrology
- Toxicology
- Infectious Diseases
Background:
- The exact mechanisms of Shigatoxin 2 (Stx2)-mediated kidney failure are debated.
- Stx2-producing E. coli (STEC) infections can lead to severe renal complications.
- Understanding Stx2's direct impact on renal tubules is crucial for effective treatment strategies.
Purpose of the Study:
- To investigate whether Stx2 directly affects renal tubular epithelium during STEC infections.
- To determine the role of Stx2-receptor Gb3 in the tubular epithelium's susceptibility to Stx2.
- To correlate findings in a mouse model with human cases of Stx2-associated kidney failure.
Main Methods:
- Utilized a mouse model expressing Gb3 in tubular epithelium but not glomerular endothelia.
- Administered Stx2 to wild-type and Gb3-depleted mice to assess tubular damage and survival.
- Conducted in vitro experiments on human tubular epithelial cells exposed to Stx2.
- Analyzed kidney biopsies and clinical outcomes of 11 young adult patients with Stx2-associated kidney failure.
Main Results:
- In mice, Stx2 caused acute tubular dysfunction and death, which was prevented by tubule-specific Gb3 depletion.
- In vitro, Stx2 induced cytokine secretion and apoptosis in human tubular epithelial cells.
- Human patients exhibited severe acute tubular damage, with or without thrombotic microangiopathy (TMA).
- Supportive therapy alone led to recovery without dialysis or neurological complications in all patients.
Conclusions:
- Acute tubular damage is a significant pathophysiological mechanism in Stx2-mediated acute kidney failure.
- Stx2 exerts direct toxic effects on renal tubular epithelial cells.
- Supportive therapy is highly effective for Stx2-induced kidney injury in young adults, yielding excellent outcomes.
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