Gut microbiota‐derived tryptophan metabolite attenuates calcium oxalate nephropathy by suppressing renal tubular cell apoptosis through the AhR – SOCS3 – STAT1 axis

Calcium oxalate (CaOx) nephropathy is a highly prevalent urological disease worldwide. Gut microbiota dysbiosis and host metabolic dysregulation are recognized as pivotal drivers in disease pathogenesis, yet the underlying mechanisms remain incompletely understood. In this study, by integrating metagenomics and metabolomics, we identified dysregulation of tryptophan metabolites in patients with CaOx nephrolithiasis, with microbiota-derived indole-3-propionic acid (IPA) as the most discriminatory differential metabolite. Oral IPA supplementation markedly reduced renal CaOx crystal deposition and tubular injury in a CaOx nephropathy murine model. Mechanistically, IPA activated the aryl hydrocarbon receptor (AhR), which translocated to the nucleus and transcriptionally upregulated suppressor of cytokine signaling 3 (SOCS3)-a negative regulator of signal transducer and activator of transcription 1 (STAT1)-thereby suppressing STAT1 phosphorylation, alleviating oxalate-induced tubular cell injury and apoptosis, and inhibiting CaOx crystal deposition. Our findings identify tryptophan metabolite alteration as a critical metabolic signature of CaOx nephropathy and demonstrate that microbiota-derived IPA attenuates oxalate-induced renal tubular cell injury and apoptosis via the AhR-SOCS3-STAT1 axis. © 2026 The Pathological Society of Great Britain and Ireland.

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Publication Details

Journal
The Journal of Pathology
Published
2026-10-09
DOI
https://doi.org/10.1002/path.70135
Citations
1
Primary Topic
Kidney Stones and Urolithiasis Treatments
Type
article
Field-Weighted Citation Impact
4.58
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article

Gut microbiota‐derived tryptophan metabolite attenuates calcium oxalate nephropathy by suppressing renal tubular cell apoptosis through the AhR – SOCS3 – STAT1 axis

Kunjie Wang, Ya Li, Linhu Liu, Zhongyu Jian et al.
1 citations
The Journal of Pathology
Kidney Stones and Urolithiasis Treatments
4.58
article

Gut microbiota‐derived tryptophan metabolite attenuates calcium oxalate nephropathy by suppressing renal tubular cell apoptosis through the AhR – SOCS3 – STAT1 axis

Kunjie Wang, Ya Li, Linhu Liu, Zhongyu Jian, Jingwen Wei, 乐德 林, Xi Jin, Tianyue Li, Menghua Wang, Liao Banghua, Jiawei Chen, Liyuan Xiang, Xiaoting Chen, Mengzhu Yang
article en
1 citations

Abstract

Calcium oxalate (CaOx) nephropathy is a highly prevalent urological disease worldwide. Gut microbiota dysbiosis and host metabolic dysregulation are recognized as pivotal drivers in disease pathogenesis, yet the underlying mechanisms remain incompletely understood. In this study, by integrating metagenomics and metabolomics, we identified dysregulation of tryptophan metabolites in patients with CaOx nephrolithiasis, with microbiota-derived indole-3-propionic acid (IPA) as the most discriminatory differential metabolite. Oral IPA supplementation markedly reduced renal CaOx crystal deposition and tubular injury in a CaOx nephropathy murine model. Mechanistically, IPA activated the aryl hydrocarbon receptor (AhR), which translocated to the nucleus and transcriptionally upregulated suppressor of cytokine signaling 3 (SOCS3)-a negative regulator of signal transducer and activator of transcription 1 (STAT1)-thereby suppressing STAT1 phosphorylation, alleviating oxalate-induced tubular cell injury and apoptosis, and inhibiting CaOx crystal deposition. Our findings identify tryptophan metabolite alteration as a critical metabolic signature of CaOx nephropathy and demonstrate that microbiota-derived IPA attenuates oxalate-induced renal tubular cell injury and apoptosis via the AhR-SOCS3-STAT1 axis. © 2026 The Pathological Society of Great Britain and Ireland.

The Journal of Pathology
Sichuan University (CN), West China Hospital of Sichuan University (CN), Qilu Hospital of Shandong University (CN)
Openalex Percentile: Top 4%
Kidney Stones and Urolithiasis Treatments
4.58
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