隔日禁食通过抑制载脂蛋白-/-小鼠肝脏 ATF3 使动脉粥样硬化恶化

Yajuan Deng, Xiaoyu Yang, Xueru Ye, Youwen Yuan, Yanan Zhang, Fei Teng, Danming You, Xuan Zhou, Wenhui Liu, Kangli Li, Shenjian Luo, Zhi Yang, Ruxin Chen, Guojun Shi, Jin Li, Huijie Zhang
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引用次数: 0

摘要

动脉粥样硬化是导致全球心血管疾病死亡的主要原因。隔日禁食(ADF)因其对新陈代谢的益处而受到越来越多的关注。然而,在动脉粥样硬化动物模型中,ADF对动脉粥样硬化斑块形成的影响仍不一致且存在争议。本研究旨在探讨 ADF 对载脂蛋白 E 缺失(Apoe-/-)小鼠动脉粥样硬化的影响。将11周龄雄性载脂蛋白E缺失(Apoe-/-)小鼠随机分为自由饮食组(AL)和ADF组,ADF加重了早期和晚期动脉粥样硬化病变的形成,这可能是由于ADF干预导致胆固醇谱紊乱所致。ADF明显改变了胆固醇代谢途径,并下调了肝脏的综合应激反应(ISR)。肝细胞特异性过表达ATF3可减轻ADF对载脂蛋白/-小鼠动脉粥样硬化斑块形成的影响。此外,ATF3的表达受Krüppel样因子6(KLF6)的调控,ATF3和KLF6的表达均受肝细胞ISR通路的调控。总之,ADF会加重以WD喂养的载脂蛋白/-小鼠的动脉粥样硬化进展。ADF 可抑制肝细胞 ISR 信号通路,降低 KLF6 的表达,进而抑制 ATF3 的表达。ATF3在肝脏中的表达受到抑制,从而加剧了ADF对载脂蛋白/-小鼠动脉粥样硬化的影响。研究结果表明,对动脉粥样硬化高危人群进行 ADF 干预可能会产生有害影响。
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Alternate day fasting aggravates atherosclerosis through the suppression of hepatic ATF3 in Apoe −/− mice
Atherosclerosis is the major contributor to cardiovascular mortality worldwide. Alternate day fasting (ADF) has gained growing attention due to its metabolic benefits. However, the effects of ADF on atherosclerotic plaque formation remain inconsistent and controversial in atherosclerotic animal models. The present study was designed to investigate the effect of ADF on atherosclerosis in apolipoprotein E-deficient (Apoe−/−) mice. Eleven-week-old male Apoe−/− mice fed with Western diet (WD) were randomly grouped into ad libitum (AL) group and ADF group, and ADF aggravated both the early and advanced atherosclerotic lesion formation, which might be due to the disturbed cholesterol profiles caused by ADF intervention. ADF significantly altered cholesterol metabolism pathways and down-regulated integrated stress response (ISR) in the liver. The hepatic expression of activating transcription factor 3 (ATF3) was suppressed in mice treated with ADF and hepatocyte-specific overexpression of ATF3 attenuated the effects of ADF on atherosclerotic plaque formation in Apoe−/− mice. Moreover, the expression of ATF3 could be regulated by Krüppel-like factor 6 (KLF6) and both the expressions of ATF3 and KLF6 were regulated by hepatic cellular ISR pathway. In conclusion, ADF aggravates atherosclerosis progression in Apoe−/− mice fed on WD. ADF inhibits the hepatic ISR signaling pathway and decreases the expression of KLF6, subsequently inhibiting ATF3 expression. The suppressed ATF3 expression in the liver mediates the deteriorated effects of ADF on atherosclerosis in Apoe−/− mice. The findings suggest the potentially harmful effects when ADF intervention is applied to the population at high risk of atherosclerosis.
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