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有缺陷的脂滴生物合成会加剧油酸诱导的小鼠心脏内皮细胞的细胞内稳态破坏和铁死亡。

Defective lipid droplet biogenesis exacerbates oleic acid-induced cellular homeostasis disruption and ferroptosis in mouse cardiac endothelial cells.

作者信息

Wang Yun-Ting, Moura Alexandra K, Zuo Rui, Wang Zhengchao, Roudbari Kiana, Hu Jenny Z, Wang Mi, Li Pin-Lan, Zhang Yang, Li Xiang

机构信息

Department of Pharmacological and Pharmaceutical Sciences, College of Pharmacy, University of Houston, Houston, TX, USA.

Provincial Key Laboratory for Developmental Biology and Neurosciences, College of Life Sciences, Fujian Normal University, Fuzhou, China.

出版信息

Cell Death Discov. 2025 Aug 9;11(1):374. doi: 10.1038/s41420-025-02669-5.

Abstract

Endothelial dysfunction is a hallmark of various metabolic disorders and plays a pivotal role in the progression of cardiovascular diseases, including coronary microvascular dysfunction and myocardial ischemia. Lipid droplets (LDs) have emerged as key regulators of fatty acid metabolism in endothelial cells (ECs), but their functional role in lipotoxicity-induced EC damage in the context of coronary microvascular dysfunction remains unclear. Here, we examined the contribution of LD biogenesis to oleic acid-induced lipotoxic effects in mouse cardiac ECs (MCECs). Our findings reveal that oleic acid markedly increases LD biogenesis in MCECs via a diacylglycerol O-acyltransferase 1 (DGAT1)-dependent pathway. This process is accompanied by substantial disruptions in cellular homeostasis, including elevated endoplasmic reticulum (ER) stress, impaired mitochondrial respiration, reduced ATP production, and heightened hypoxic responses. Furthermore, oleic acid-induced lipotoxicity is primarily mediated by ferroptosis-a form of lipid peroxide-dependent, caspase-independent cell death. Notably, pharmacological inhibition or genetic knockdown of DGAT1, which diminishes LD biogenesis, exacerbates oleic acid-induced cellular stress, mitochondrial dysfunction, and ferroptosis in MCECs. These results suggest that LD biogenesis plays a protective role in mitigating lipotoxicity, preserving mitochondrial function, and preventing lipid peroxide accumulation and ferroptosis, thereby safeguarding cardiac microvascular endothelial function in the context of metabolic disorders.

摘要

内皮功能障碍是各种代谢紊乱的标志,在心血管疾病的进展中起关键作用,包括冠状动脉微血管功能障碍和心肌缺血。脂滴(LDs)已成为内皮细胞(ECs)中脂肪酸代谢的关键调节因子,但其在冠状动脉微血管功能障碍背景下对脂毒性诱导的EC损伤中的功能作用仍不清楚。在这里,我们研究了脂滴生物合成对油酸诱导的小鼠心脏内皮细胞(MCECs)脂毒性作用的贡献。我们的研究结果表明,油酸通过二酰甘油O-酰基转移酶1(DGAT1)依赖性途径显著增加MCECs中的脂滴生物合成。这一过程伴随着细胞稳态的实质性破坏,包括内质网(ER)应激升高、线粒体呼吸受损、ATP生成减少和缺氧反应增强。此外,油酸诱导的脂毒性主要由铁死亡介导 —— 一种脂质过氧化物依赖性、半胱天冬酶非依赖性的细胞死亡形式。值得注意的是,DGAT1的药理学抑制或基因敲低会减少脂滴生物合成,加剧油酸诱导的MCECs细胞应激、线粒体功能障碍和铁死亡。这些结果表明,脂滴生物合成在减轻脂毒性、维持线粒体功能以及防止脂质过氧化物积累和铁死亡方面发挥保护作用,从而在代谢紊乱的背景下保护心脏微血管内皮功能。

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