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丹参醇 A 通过调节血脂氧化损伤基因的 mRNA 表达改善 Triton-1339W 诱导的 C57BL/6J 小鼠高脂血症和肝损伤。

Tanshinol A Ameliorates Triton-1339W-Induced Hyperlipidemia and Liver Injury in C57BL/6J Mice by Regulating mRNA Expression of Lipemic-Oxidative Injury Genes.

机构信息

Department of Pharmacology of Traditional Chinese Medicine, The Fifth Clinical Medical College, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong, 510095, China.

Guangdong Province Engineering Technology Research Institute of Traditional Chinese Medicine, Guangzhou, Guangdong, 510095, China.

出版信息

Lipids. 2020 Mar;55(2):127-140. doi: 10.1002/lipd.12217. Epub 2020 Feb 14.

Abstract

Tanshinol A, which is derived from a traditional Chinese herbal Radix Salviae Miltiorrhizae is indicative of a hypolipidemic candidate. Therefore, we aim to validate its hypolipidemic activity of tanshinol A and explore its mechanism in triton-1339W-induced hyperlipidemic mice model, which possess multiply pathogenesis for endogenous lipid metabolism disorder. Experimental hyperlipidemia mice are treated with or without tanshinol A (i.g. 40, 20, 10 mg/kg), and blood and liver tissue were collected for validating its hypolipidemic and hepatic protective effect, and hepatic mRNA expression profile, which was associated with lipid metabolism dysfunction and liver injury, was detected by RT-qPCR. As results show, triton-1339W-induced abnormal of serum TC, TAG, HDL-C, LDL-C, SOD, MDA, GOT, and GPT is remarkably attenuated by tanshinol A. In pathological experiment, triton-1339W-induced hepatocellular ballooning degeneration, irregular central vein congestion, and inflammation infiltration are alleviated by tanshinol A. Correspondingly, hepatic mRNA expression of Atf4, Fgf21, Vldlr, Nqo1, Pdk4, and Angptl4, which are genes regulating lipemic-oxidative injury, are significantly increased by tanshinol A by 2~6 fold. Abcg5, Cd36, and Apob, which are responsible for cholesterol metabolism, are mildly upregulated. Noticeably, triton-1339W-suppressed expressions of Ptgs2/Il10, which are genes responsible for acute inflammation resolution in liver injury, are remarkably increased by tanshinol A. Conclusively, tanshinol A exerted hypolipidemic effect and hepatoprotective effect through restoring triton-1339W-suppressed mRNA expression, which may be involved in Atf4/Fgf21/Vldlr and Ptgs2/Il-10 signaling pathways.

摘要

丹酚酸 A 来源于传统中药丹参,是一种有降血脂作用的候选药物。因此,我们旨在验证丹酚酸 A 的降血脂活性,并在具有多种内源性脂质代谢紊乱发病机制的 Triton-1339W 诱导的高脂血症小鼠模型中探索其机制。实验性高脂血症小鼠用或不用丹酚酸 A(如 40、20、10mg/kg)治疗,采集血液和肝脏组织,验证其降血脂和肝保护作用,并通过 RT-qPCR 检测与脂质代谢功能障碍和肝损伤相关的肝 mRNA 表达谱。结果表明,丹酚酸 A 显著减弱了 Triton-1339W 诱导的血清 TC、TAG、HDL-C、LDL-C、SOD、MDA、GOT 和 GPT 异常。在病理实验中,丹酚酸 A 减轻了 Triton-1339W 诱导的肝细胞气球样变性、中央静脉不规则充血和炎症浸润。相应地,丹酚酸 A 使 Atf4、Fgf21、Vldlr、Nqo1、Pdk4 和 Angptl4 等调节脂毒性氧化损伤的基因的肝 mRNA 表达显著增加 2~6 倍。负责胆固醇代谢的 Abcg5、Cd36 和 Apob 也被轻度上调。值得注意的是,丹酚酸 A 显著增加了 Triton-1339W 抑制的 Ptgs2/Il10 基因的表达,该基因负责肝脏损伤中急性炎症的消退。综上所述,丹酚酸 A 通过恢复 Triton-1339W 抑制的 mRNA 表达发挥降血脂和肝保护作用,可能涉及 Atf4/Fgf21/Vldlr 和 Ptgs2/Il-10 信号通路。

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