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Updated: Nov 7, 2025

Assessment of Kidney Function in Mouse Models of Glomerular Disease
Published on: June 30, 2018
Molecular Analysis of the Kidney From a Patient With COVID-19-Associated Collapsing Glomerulopathy
Kristin Meliambro1, Xuezhu Li1,2, Fadi Salem3
1Division of Nephrology, Department of Medicine, Icahn School of Medicine at Mount Sinai, New York, NY.
Insights
COVID-19 can cause collapsing glomerulopathy in individuals with APOL1 risk alleles. This kidney injury may involve inflammation and STAT3 activation, similar to HIV-associated nephropathy.
Area of Science:
- Nephrology
- Genetics
- Virology
Background:
- Case reports link COVID-19 to collapsing glomerulopathy in African Americans with APOL1 risk alleles.
- The pathogenesis compared to HIV-associated nephropathy remains unclear.
Observation:
- RNA sequencing showed similar APOL1 and ACE2 mRNA levels in COVID-19 glomerulopathy and controls.
- No direct SARS-CoV-2 infection evidence in kidney cells was found.
- Increased phospho-STAT3 expression was observed in COVID-19 and HIV-associated nephropathy kidney tissues.
Findings:
- Molecular profiling revealed activated inflammation and coagulation pathways in COVID-19-associated collapsing glomerulopathy.
- Whole-genome sequencing identified novel indel gene variants of unknown significance.
- Interleukin-6 induced STAT3 activation may drive kidney injury.
Implications:
- STAT3 activation presents a potential therapeutic target for COVID-19-associated acute kidney injury.
- Understanding shared pathways could inform treatment strategies for APOL1-mediated kidney diseases.
Abstract:
Recent case reports suggest that coronavirus disease 2019 (COVID-19) is associated with collapsing glomerulopathy in African Americans with apolipoprotein L1 gene (APOL1) risk alleles; however, it is unclear whether disease pathogenesis is similar to HIV-associated nephropathy. RNA sequencing analysis of a kidney biopsy specimen from a patient with COVID-19-associated collapsing glomerulopathy and APOL1 risk alleles (G1/G1) revealed similar levels of APOL1 and angiotensin-converting enzyme 2 (ACE2) messenger RNA transcripts as compared with 12 control kidney samples downloaded from the GTEx (Genotype-Tissue Expression) Portal. Whole-genome sequencing of the COVID-19-associated collapsing glomerulopathy kidney sample identified 4 indel gene variants, 3 of which are of unknown significance with respect to chronic kidney disease and/or focal segmental glomerulosclerosis. Molecular profiling of the kidney demonstrated activation of COVID-19-associated cell injury pathways such as inflammation and coagulation. Evidence for direct severe acute respiratory syndrome coronavirus 2 infection of kidney cells was lacking, which is consistent with the findings of several recent studies. Interestingly, immunostaining of kidney biopsy sections revealed increased expression of phospho-STAT3 (signal transducer and activator of transcription 3) in both COVID-19-associated collapsing glomerulopathy and HIV-associated nephropathy as compared with control kidney tissue. Importantly, interleukin 6-induced activation of STAT3 may be a targetable mechanism driving COVID-19-associated acute kidney injury.
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