ArticleRespiratory research2024
Activated DRP1 promotes mitochondrial fission and induces glycolysis in ATII cells under hyperoxia.
Article in Respiratory research, 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.
- Parathyroid Hormone Modulates Alveolar Bone Metabolism via Inducing Periodontal Ligament Stem Cells Aerobic Glycolysis.International dental journal · 2026Article
- Predictors of Recurrence Following Bronchial Artery Embolisation (BAE) for Haemoptysis: A Systematic Review and Evidence Synthesis Analyses Using SWiM Guidelines.Cardiovascular and interventional radiology · 2026Review
- Disease-causing MFN2 mutants impair mitochondrial fission dynamics by distinct DRP1 dysregulation.Cell death & disease · 2026Article
- Endothelial SP1 lactylation promotes bronchopulmonary dysplasia via regulation of Cdkn1a expression.Scientific reports · 2026Article
- PKM2 Promotes Glycolysis in Alveolar Macrophages and Induces Inflammation in Bronchopulmonary Dysplasia.Inflammation · 2026Article
- Mitochondrial programmed cell death in bronchopulmonary dysplasia: mechanisms and therapeutic targets.Frontiers in physiology · 2026Review
- Hyperoxia-induced senescence in fetal airway smooth muscle cells: role of mitochondrial reactive oxygen species and endoplasmic reticulum stress.American journal of physiology. Lung cellular and molecular physiology · 2025Article
- Energy Metabolism and Brain Aging: Strategies to Delay Neuronal Degeneration.Cellular and molecular neurobiology · 2025Review
- Mitochondrial bioenergetics dysfunction in T2DM: linking oxidative stress to insulin resistance.Frontiers in endocrinology · 2025Review
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5 authors.
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Abstract
backgroudRecent studies have reported mitochondrial damage and metabolic dysregulation in BPD, but the changes in mitochondrial dynamics and glucose metabolic reprogramming in ATII cells and their regulatory relationship have not been reported.
methodsNeonatal rats in this study were divided into model (FIO2:85%) and control (FIO2: 21%) groups. Lung tissues were extracted at 3, 7, 10 and 14 postnatal days and then conducted HE staining for histopathological observation. We assessed the expression of mitochondria dynamic associated proteins and glycolysis associated enzymes in lung tissues, primary ATII cells and RLE-6TN cells. Double immunofluorescence staining was used to confirm the co-localization of DRP1 and ATII cells. Real-time analyses of ECAR and OCR were performed with primary ATII cells using Seahorse XF96. ATP concentration was measured using an ATP kit. We treated RLE-6TN cells at 85% hyperoxia for 48 h with mitochondrial fission inhibitor Mdivi-1 to verify the role of DRP1 in regulating glucose metabolic reprogramming.
findingsWe found that hyperoxia causes ATII cells' mitochondrial morphological change. The expression of DRP1 and p-DRP1 increased in lung tissue and primary ATII cells of neonatal rats exposed to hyperoxia. Glycolysis related enzymes including PFKM, HK2, and LDHA were also increased. Hyperoxia inhibited ATP production in ATII cells. In RLE-6TN cells, we verified that the administration of Mdivi-1 could alleviate the enhancement of aerobic glycolysis and fragmentation of mitochondria caused by hyperoxia. INTERPRETATIONS: Hyperoxia exposure leads to increased mitochondrial fission in ATII cells and mediates the reprogramming of glucose metabolism via the DRP1 signaling pathway. Inhibiting the activation of DRP1 signaling pathway may be a promising therapeutic target for BPD.
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