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February 13, 2026Journal of Clinical Investigation1 citationsOpen Access

Metabolic surgery mitigates early kidney injury in obese youth with diabetes by suppressing mTORC1/JAK–STAT signaling

ANAbhijit NaikFAFADHL ALAKWAAVNViji Nair

Key Points

  • This research investigates how metabolic bariatric surgery affects kidney health in obese youth with type 2 diabetes.
  • Conducted paired analyses of kidney biopsies pre- and post-surgery
  • Performed metabolic profiling and histological evaluations
  • Utilized single-cell RNA sequencing to assess molecular changes
  • Linked kidney transcriptomics with circulating proteomics data from a larger cohort
  • Participants lost weight and improved insulin sensitivity after surgery
  • Reduced kidney hyperfiltration and total kidney volume observed
  • Lowered mesangial matrix area and microalbuminuria levels
  • Repression of key metabolic pathways noted in kidney cells via scRNAseq
  • Diminished activation of the JAK-STAT pathway correlating with reduced circulating ligands

Abstract

Background Youth with type 2 diabetes (T2D) and severe obesity face high risk of diabetic kidney disease, which metabolic bariatric surgery (MBS) can mitigate. This study explores structural and molecular changes in kidneys after vertical sleeve gastrectomy (VSG), a form of MBS. Methods Paired analyses, including metabolic profiling, kidney volume assessment, histological evaluation, and single-cell RNA sequencing (scRNAseq) on kidney biopsies from five youth with T2D and obesity pre- and 12 months post-VSG in the IMPROVE-T2D (Impact of Metabolic surgery on Pancreatic, Renal and cardiOVascular hEalth in youth with T2D) cohort. Circulating proteomics with kidney transcriptomics, were linked using data from an independent cohort of youth with obesity, with or without T2D, undergoing MBS in Teen-Longitudinal Assessment of Bariatric Surgery (Teen-LABS, n=64). Results Post-VSG, participants lost weight and had improvements in insulin sensitivity and metabolic parameters. Kidney changes included reduced renal hyperfiltration, total kidney volume, mesangial matrix area, and microalbuminuria. scRNAseq in proximal tubule (PT) and thick ascending limb cells indicated repression of glycolysis, gluconeogenesis, and tricarboxylic acid cycle genes, with upregulation of AMP-activated protein kinase (AMPK) and Forkhead box O3 (FOXO3). Decreased metabolic signaling aligned with reduced ribosomal phosphorylated S6K (pS6K), suggesting attenuated mTORC1 activity. JAK-STAT pathway activation in PT was diminished, correlating with lower circulating ligands from Teen-LABS proteomic data. Conclusion MBS/VSG prompts kidney molecular adaptations, providing potential targets for non-surgical interventions against obesity- and diabetes-associated kidney disease.

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Cite This Study

Naik et al. (2026) studied this question.

synapsesocial.com/papers/698ebedd85a1ff6a93016242https://doi.org/10.1172/jci198545
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