ArticleScientific reports2024
High glucose- or AGE-induced oxidative stress inhibits hippocampal neuronal mitophagy through the Keap1-Nrf2-PHB2 pathway in diabetic encephalopathy.
Article in Scientific reports, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 9 papers.
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Who cites it
9 citing papers in PubMed.
- Protein glycoxidation in neuropsychiatric disorders-from basic research to clinical practice.Redox biology · 2026Review
- The Interaction Between Insulin Resistance and Neuroinflammation in the Brain and Its Impact on Diabetic Encephalopathy.Biology · 2026Review
- Modified Shenqi compound alleviated constipation and inflammation in diabetic mice by regulating the miR-23a-3p/Nrf2 axis.Journal of molecular histology · 2026Article
- A Novel YTHDF2/SIGMAR1 Axis in Astrocytes Regulates Neuroinflammation and Cognitive Impairment in Diabetic Encephalopathy.Inflammation · 2026Article
- Research Progress on Pathology, Molecular Mechanisms, and Intervention Strategies of Cognitive Dysfunction Associated with Type 2 Diabetes.International journal of general medicine · 2026Review
- Association between hemoglobin glycation index and cognitive function: Evidence in the elderly.PloS one · 2026Article
- Mitochondrial quality control in diabetes mellitus and complications: molecular mechanisms and therapeutic strategies.Cell death & disease · 2025Review
- Advanced glycation end products promote the release of endothelial cell-derived mitocytosis.FEBS open bio · 2025Article
- Glucose Extremes and Cognitive Function: A Review of the Neurological Impacts of Hypoglycemia and Hyperglycemia in Type 1 Diabetes.Diabetes spectrum : a publication of the American Diabetes Association · 2025Article
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Authors and funding
11 authors.
Funding
Abstract
Diabetic encephalopathy (DE) is a severe complication of diabetes, but its pathogenesis remains unclear. This study aimed to investigate the roles and underlying mechanisms of high glucose (HG)- and advanced glycosylation end product (AGE)-induced oxidative stress (OS) in the cognitive decline in DE. The DE mouse model was established using a high-fat diet and streptozotocin, and its cognitive functions were evaluated using the Morris Water Maze, novel object recognition, and Y-maze test. The results revealed increased reactive oxygen species (ROS) generation, mitophagy inhibition, and decreased prohibitin 2 (PHB2) expression in the hippocampal neurons of DE mice and HG- or AGE-treated HT-22 cells. However, overexpression of PHB2 reduced ROS generation, reversed mitophagy inhibition, and improved mitochondrial function in the HG- or AGE-treated HT-22 cells and ameliorated cognitive decline, improved mitochondrial structural damage, and reversed mitophagy inhibition of hippocampal neurons in DE mice. Further analysis revealed that the Kelch-like ECH-associated protein 1 (Keap1)-nuclear factor erythroid 2-related factor 2 (Nrf2) pathway was involved in the HG- or AGE-mediated downregulation of PHB2 in HT-22 cells. These results demonstrate that HG- or AGE-induced OS inhibits the mitophagy of hippocampal neurons via the Keap1-Nrf2-PHB2 pathway, thereby contributing to the cognitive decline in DE.
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