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辛伐他汀通过抑制肝 mTOR 信号通路改善奥氮平诱导的大鼠血脂异常。

Simvastatin improves olanzapine-induced dyslipidemia in rats through inhibiting hepatic mTOR signaling pathway.

机构信息

School of Pharmaceutical Sciences, Southwest University, Chongqing 400715, China.

Engineer Research Center of Chongqing Pharmaceutical Process and Quality Control, Chongqing 400715, China.

出版信息

Acta Pharmacol Sin. 2019 Aug;40(8):1049-1057. doi: 10.1038/s41401-019-0212-1. Epub 2019 Feb 6.

Abstract

Second-generation antipsychotic drug (SGA)-induced metabolic abnormalities, such as dyslipidemia, are a major clinical problem for antipsychotic therapy. Accumulated evidences have shown the efficacy of statins in reducing SGA-induced dyslipidemia, but the underlying mechanisms are unclear. In this study, we explored whether mTOR signaling was involved in olanzapine (OLZ)-induced dyslipidemia as well as the lipid-lowering effects of cotreatment of simvastatin (Sim) in rats. Model rats received OLZ (1.0 mg/kg, t.i.d.) for 7 weeks; from the third week a group of model rats were cotreatment of Sim (3.0 mg/kg, t.i.d.) for 5 weeks. We found that OLZ treatment significantly increased the plasma triglyceride (TG) and total cholesterol (TC) levels, and promoted lipid accumulation in the liver, whereas cotreatment of Sim reversed OLZ-induced dyslipidemia. Hepatic mTORC1 and p-mTORC1 expression was accelerated in the OLZ treatment group, with upregulation of mRNA expression of sterol regulatory element-binding protein 1c (SREBP1c) and its target genes, whereas these alterations were ameliorated by Sim cotreatment. In HepG2 cells, rapamycin (a mTOR inhibitor) significantly reduced the OLZ-stimulated hepatocellular lipid contents and weakened the ability of Sim to lower lipids via a mechanism associated with the upregulation of SREBP1c-mediated de novo lipogenesis. Our data suggest that OLZ induces lipid accumulation in both plasma and liver, and Sim ameliorates OLZ-induced lipid metabolic dysfunction through its effects on mTOR signaling via reducing SREBP1c activation and the downregulation of gene expression involved in lipogenesis. These data provide a new insight into the prevention of metabolic side effects induced by antipsychotic drugs.

摘要

第二代抗精神病药物(SGA)引起的代谢异常,如血脂异常,是抗精神病药物治疗的一个主要临床问题。大量证据表明,他汀类药物在降低 SGA 引起的血脂异常方面是有效的,但潜在的机制尚不清楚。在这项研究中,我们探讨了雷帕霉素靶蛋白(mTOR)信号是否参与了奥氮平(OLZ)诱导的血脂异常,以及辛伐他汀(Sim)联合治疗在大鼠中的降脂作用。模型大鼠接受 OLZ(1.0mg/kg,每日 3 次)治疗 7 周;从第 3 周开始,一部分模型大鼠接受 Sim(3.0mg/kg,每日 3 次)联合治疗 5 周。我们发现,OLZ 处理显著增加了血浆甘油三酯(TG)和总胆固醇(TC)水平,并促进了肝脏中的脂质积累,而 Sim 的联合治疗则逆转了 OLZ 诱导的血脂异常。OLZ 处理组肝 mTORC1 和 p-mTORC1 表达加速,固醇调节元件结合蛋白 1c(SREBP1c)及其靶基因的 mRNA 表达上调,而 Sim 联合治疗则改善了这些变化。在 HepG2 细胞中,雷帕霉素(mTOR 抑制剂)显著降低了 OLZ 刺激的肝细胞脂质含量,并通过一种与上调 SREBP1c 介导的从头合成脂相关的机制减弱了 Sim 降低脂质的能力。我们的数据表明,OLZ 诱导血浆和肝脏中的脂质积累,而 Sim 通过降低 SREBP1c 激活和下调与脂肪生成相关的基因表达来改善 OLZ 诱导的脂质代谢功能障碍,从而改善脂质代谢功能障碍。这些数据为预防抗精神病药物引起的代谢副作用提供了新的见解。

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