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Resveratrol Alleviates 27‐Hydroxycholesterol‐Induced Senescence in Nerve Cells and Affects Zebrafish Locomotor Behavior via Activation of SIRT1‐Mediated STAT3 Signaling

衰老 细胞生物学 斑马鱼 西妥因1 车站3 白藜芦醇 雌激素受体 生物 化学 信号转导 下调和上调 生物化学 癌症 遗传学 基因 乳腺癌
作者
Jiao Liu,Kai Jiao,Qian Zhou,Jun Yang,Keke Yang,Chunyan Hu,Ming Zhou,Zhong Li
出处
期刊:Oxidative Medicine and Cellular Longevity [Hindawi Publishing Corporation]
卷期号:2021 (1): 6673343-6673343 被引量:25
标识
DOI:10.1155/2021/6673343
摘要

The oxysterol 27‐hydroxycholesterol (27HC) is the first identified endogenous selective estrogen receptor modulator (SERM), which like endogenous estrogen 17 β ‐estradiol (E 2 ) induces the proliferation of estrogen receptor‐ (ER‐) positive breast cancer cells in vitro . However, 27HC differs from E 2 in that it shows adverse effects in the nervous system. Our previous study confirmed that 27HC could induce neural senescence by activating phosphorylated signal transducer and activator of transcription, which E 2 could not. The purpose of the present study is to investigate whether STAT3 acetylation was involved in 27HC‐induced neural senescence. Microglia (BV2 cells) and rat pheochromocytoma cells (PC12 cells) were used in vitro to explore the effect of resveratrol (REV) on 27HC‐induced neural senescence. Senescence‐associated β ‐galactosidase (SA‐ β ‐Gal) staining was performed using an SA‐ β ‐Gal Staining Kit in cells and zebrafish larvae. Zebrafish were used in vivo to assess the effect of 27HC on locomotor behavior and aging. We found that 27HC could induce senescence in neural cells, and REV, which has been employed as a Sirtuin‐1 (SIRT1) agonist, could attenuate 27HC‐induced senescence by inhibiting STAT3 signaling via SIRT1. Moreover, in the zebrafish model, REV attenuated 27HC‐induced locomotor behavior disorder and aging in the spinal cord of zebrafish larvae, which was also associated with the activation of SIRT1‐mediated STAT3 signaling. Our findings unveiled a novel mechanism by which REV alleviates 27HC‐induced senescence in neural cells and affects zebrafish locomotor behavior by activating SIRT1‐mediated STAT3 signaling.
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