ArticleRedox report : communications in free radical research2025
Sodium-glucose cotransporter 2 inhibitors ameliorate glutathione cysteine ligase modifier-mediated oxidative stress and subsequent ferroptosis in proximal tubules of diabetic kidney disease.
Article in Redox report : communications in free radical research, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- miR-145-5p Targets KLF4 to Regulate the SIRT3/GPX4 Axis, Mediating Ferroptosis and Exacerbating Tubular Epithelial Cell Injury in Diabetic Nephropathy.Nephrology (Carlton, Vic.) · 2026Article
- Targeting SAT1 alleviates high glucose-induced tubular ferroptosis and fibrosis: implications for diabetic kidney disease.Histochemistry and cell biology · 2026Article
- The AMPK/NRF2/FOXO Axis in CKD-Molecular and Clinical Perspectives.Antioxidants (Basel, Switzerland) · 2026Review
- Lactylation: a metabolic-epigenetic bridge in diabetic kidney disease and a therapeutic target for TCM.Chinese medicine · 2026Review
- Formononetin alleviated cisplatin-induced acute kidney injury by orchestrating renal tubular cell ferroptosis via PI3K/AKT/NRF2 pathway.Frontiers in pharmacology · 2026Article
- SIRT2 in Diabetic Kidney Disease: Multifaceted Regulatory Roles and Therapeutic Challenges.Journal of inflammation research · 2026Review
- Ferroptosis regulation by SGLT2 inhibitors: mechanisms and clinical benefits in diabetic kidney disease.Frontiers in pharmacology · 2026Review
- Molecular Mechanisms Underlying the Anti-Diabetic Effects of Astragaloside IV: A Focus on Signaling Pathways.Drug design, development and therapy · 2026Review
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Authors and funding
8 authors.
Funding
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Abstract
objectivesDiabetic kidney disease (DKD) is a major cause of end-stage kidney disease. The precise molecular mechanism of ferroptosis, an iron-dependent and non-apoptotic form of regulated cell death, remains poorly understood in DKD, as does the impact of sodium-glucose cotransporter 2 inhibitors (SGLT2i) on ferroptosis-mediated DKD.
methodsThis study used bulk RNA sequencing, in vitro and in vivo models, and human kidney samples to explore the molecular mechanisms involved in oxidative stress and ferroptosis in the proximal tubule (PT) of DKD.
resultsHigh glucose (HG) induced features of ferroptosis in HK-2 cells. Transcriptome analysis of primary PT cells from diabetic patients indicated that glutathione cysteine ligase modifier (GCLM) subunit is involved in ferroptosis. Immunohistochemical staining revealed that db/db mice and diabetic patients had lower glutathione peroxidase 4 and GCLM expression in the PT. Suppression of GCLM enhanced ferroptosis, whereas GCLM overexpression mitigated HG-induced ferroptosis in HK-2 cells. Antioxidants reduced oxidative stress and ferroptosis in both in vitro and in vivo models of DKD. Furthermore, SGLT2i attenuated PT ferroptosis in these models and improved DKD by increasing GCLM expression.
conclusionSGLT2i reduced ferroptosis in PT by boosting GCLM expression, thereby slowing DKD progression, revealing that GCLM has the potential against DKD.
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