卵母细胞
细胞生物学
卵子发生
细胞内
生物
细胞骨架
卵母细胞激活
细胞质
热休克蛋白70
线粒体
热应力
DNA损伤
热冲击
极体
男科
肌动蛋白
化学
线粒体DNA
热休克蛋白
细胞凋亡
肌原纤维
繁殖
压力(语言学)
氧化应激
热休克蛋白90
生物化学
糖酵解
作者
Wen-Xiu Feng,Qin Zhao,Han Zhang,Hao‐Lin Zhang,Yuxuan Hou,Jia-Yu Que,Lin-Lin Hu,Shao-Chen Sun
标识
DOI:10.1016/j.ecoenv.2025.119517
摘要
Heat stress (HS) triggered by elevated summer temperatures has emerged as a critical threat to the reproduction in animal husbandry. Alpha-lipoic acid (ALA), a renowned antioxidant, has been shown to modulate cellular stress responses and maintain energy homeostasis. However, whether ALA can alleviate heat stress–induced decline in porcine oocyte maturation quality remains unclear. In present study we reported that ALA supplementation could rescue porcine oocyte maturation capacity under heat stress condition. We showed that ALA significantly increased the first polar body extrusion rate of oocytes under heat stress, indicating the enhancement of nuclear maturation, which could be confirmed by cytoskeletal integrity, since spindle organization, chromosome alignment and actin filament distribution were protected by ALA treatment. Besides, ALA mitigated heat stress-induced mitochondrial dysfunction by normalizing membrane potential and distribution, and by restraining aberrant DRP1 activation. This further reduced ROS level and positive Annexin-V and alleviated DNA damage signals. We also showed that ALA normalized the expression of proteins related to post-translational modification and intracellular transport. Taken together, our results suggested that ALA alleviated the damage of heat stress on oocyte quality and developmental potential from both nuclear maturation and cytoplasmic maturation, which is a potential heat stress protective agent for animal reproduction. • ALA increases polar body extrusion during oocyte maturation under heat stress • ALA maintains cytoskeletal integrity of oocytes under heat stress • ALA mitigated heat stress-induced mitochondrial dysfunction in oocytes • ALA reduced ROS level and alleviated DNA damage in oocytes under heat stress
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