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◆ Redox biology2026-09-17

Spermidine attenuates monocrotaline-induced pulmonary arterial hypertension with HADHA-associated improvements in fatty acid oxidation and mitochondrial redox homeostasis.

Xinyu Bai, Keke Tian, Shiyuan Song, Xiuming Rao, Gang Xu, Erlong Zhang, Bao Liu, Yan Wang, Yuqi Gao

原始摘要(英文原文)· Original abstract
Metabolic reprogramming, impaired mitochondrial quality control, and mitochondrial redox imbalance are increasingly recognized as central drivers of pulmonary arterial hypertension (PAH). Spermidine (SPD) has been reported to exert cardiovascular protective effects; however, its effects on endothelial metabolism and redox homeostasis in PAH remain incompletely characterized. HADHA, the α-subunit of mitochondrial trifunctional protein, participates in long-chain fatty acid β-oxidation (FAO) and provides a potential link between fatty acid utilization, mitochondrial respiration, mitophagy-related quality control, and redox homeostasis. Here, using integrated metabolomics, lipidomics, and molecular biology approaches in monocrotaline (MCT)-induced PAH rats and palmitic acid-stimulated pulmonary microvascular endothelial cells (PMVECs), we examined the contribution of HADHA to the effects of SPD on endothelial FAO and mitochondrial redox homeostasis. SPD treatment markedly attenuated pulmonary hypertension and vascular remodeling, accompanied by reduced inflammatory activation and endothelial injury. Metabolomic and lipidomic profiling indicated that SPD partially corrected pathological lipid-metabolic remodeling, including phosphatidylethanolamine-associated lipid alterations, and improved FAO-related mitochondrial function under lipotoxic stress. SPD reduced lipid accumulation and lipotoxic mitochondrial injury, inhibited PLIN2-vimentin-associated endothelial-to-mesenchymal transition (EndMT) marker changes, and increased PINK1/Parkin-related mitophagy markers together with TOM20/LC3B/LAMP2 colocalization, consistent with improved mitophagy-related mitochondrial quality control. Molecular dynamics simulation, cellular thermal shift assay, and microscale thermophoresis supported SPD-HADHA binding and SPD-associated HADHA stabilization. Importantly, HADHA knockdown markedly attenuated several effects of SPD on FAO-related function, mitochondrial redox balance, and lipotoxic phenotypes in PMVECs. These findings suggest that HADHA may contribute to the effects of SPD on fatty acid oxidation, redox homeostasis, and endothelial protection in PAH.
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Spermidine attenuates monocrotaline-induced pulmonary arterial hypertension with HADHA-associated improvements in fatty acid oxidation and mitochondrial redox homeostasis. — 科研速览 Science Skim