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Published on: May 2, 2025
Approach to Studies on Podocyte Lesions Mediated by Hyperglycemia: A Systematic Review
Jordana Souza Silva1, Camila Botelho Miguel2, Alberto Gabriel Borges Felipe1
1Postgraduate Course in Health Sciences, Federal University of Triangulo Mineiro, Uberaba 38025-180, MG, Brazil.
Abstract:
Podocyte injury is a central event in the pathogenesis of diabetic nephropathy (DN). We conducted a systematic review across four major databases, identifying 7769 records and including 130 studies that met predefined eligibility criteria. Methodological quality was assessed with Joanna Briggs Institute tools, yielding a mean score of 81.3%, indicating overall moderate-to-high rigor despite design-contingent limitations. Publication activity was sparse until 2018 but increased markedly thereafter, with more than 80% of studies published between 2019 and 2025. Temporal analyses confirmed a strong positive trend (p = 0.86, p < 0.0001), reflecting the rapid expansion of this field. Study designs evolved from early human-only descriptions to integrated multi-model approaches combining human tissue, animal experiments, and in vitro systems, thus balancing clinical relevance with mechanistic exploration. Geographically, Asia emerged as the leading contributor, complemented by increasing multinational collaborations. Mechanistic synthesis highlighted five reproducible pillars of podocyte injury: slit-diaphragm and adhesion failure, mTOR-autophagy-ER stress disequilibrium, mitochondrial and lipid-driven oxidative injury, immune, complement, and inflammasome activation, and epigenetic and transcriptomic reprogramming. Collectively, these findings underscore a convergent mechanistic cascade driving podocyte dysfunction, while also providing a framework for therapeutic interventions aimed at restoring barrier integrity, metabolic balance, and immune regulation in DN.
Insights
Diabetic nephropathy (DN) involves podocyte injury. Research shows five key mechanisms driving this injury, offering a framework for new therapeutic strategies to protect kidney function.
Area of Science:
- Nephrology
- Diabetology
- Cell Biology
Background:
- Podocyte injury is central to diabetic nephropathy (DN) pathogenesis.
- Understanding the mechanisms driving podocyte dysfunction is crucial for developing effective treatments.
Purpose of the Study:
- To systematically review and synthesize the literature on podocyte injury in DN.
- To identify and consolidate the key mechanistic pathways involved in podocyte damage.
Main Methods:
- Systematic review of 7769 records across four databases, including 130 studies.
- Methodological quality assessed using Joanna Briggs Institute tools (mean score 81.3%).
- Temporal and geographical analysis of publication trends and study designs.
Main Results:
- Significant increase in research activity since 2018, with evolving multi-model study designs.
- Asia leading in contributions, with growing international collaborations.
- Five reproducible pillars of podocyte injury identified: adhesion failure, mTOR-autophagy-ER stress, oxidative injury, immune activation, and epigenetic reprogramming.
Conclusions:
- Podocyte injury in DN results from a convergent mechanistic cascade.
- Findings provide a framework for therapeutic interventions targeting barrier integrity, metabolic balance, and immune regulation.
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