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PPARα/γ双重激动剂——拉格列净对胰岛素增敏、脂质调节及抗动脉粥样硬化作用的生化机制

Biochemical mechanism of insulin sensitization, lipid modulation and anti-atherogenic potential of PPAR alpha/gamma dual agonist: Ragaglitazar.

作者信息

Sharma Sudhir, Sowjanya Angaru, Kumari Manju, Suryaprakash Raichur, Cynthia Gershome, Suresh Juluri, Chakrabarti Ranjan

机构信息

Metabolic Disorder Group, Discovery Biology, Dr. Reddy's Laboratories Limited-Discovery Research, Bollaram Road, Miyapur, Hyderabad-500 049, India.

出版信息

Life Sci. 2006 Dec 23;80(3):235-44. doi: 10.1016/j.lfs.2006.09.009. Epub 2006 Sep 16.

Abstract

The current goal in the treatment of diabetes is not only to enhance the glycemic control but also to improve the associated cardiovascular risk factors. Among many of the strategies available, a co-ligand of PPARalpha and gamma in a single molecule which combines the insulin sensitizing potential of PPARgamma and the beneficial lipid modulating properties of PPARalpha agonism, has gained attention in the recent past. Here we report the biochemical mechanism by which a dual PPAR alpha/gamma agonist Ragaglitazar (Raga) achieves this goal. The PPARalpha component of Raga appears to contribute to a significant increase in beta oxidation, ApoA1 secretion and inhibition of TG biosynthesis in HepG2 cells. These effects of Raga at 60 microM were similar to that shown by Fenofibrate (Feno) at 250 microM. The PPARgamma component of Raga showed significant G3PDH activity and TG accumulation with a corresponding increase in aP2 expression in 3T3L1 cells. Significantly reduced levels of IL-6 and TNFalpha were observed in the culture supernatants of Raga treated 3T3L1 cells. Raga resulted in significant insulin dependent glucose uptake in 3T3L1 with a corresponding increase in GLUT4 expression. Further, Raga showed a significant cholesterol efflux with a corresponding increase in ABCA1 protein expression in THP-1 macrophages. In conclusion, Raga activates both PPARalpha and gamma regulated pathway in adipocytes as well as in hepatocytes which together contributes for its insulin sensitizing and lipid lowering activity. In addition the dual activation of PPAR alpha/gamma also shows an athero-protective potential by inducing reverse cholesterol efflux and inhibiting the pro-inflammatory cytokines.

摘要

目前糖尿病治疗的目标不仅是加强血糖控制,还要改善相关的心血管危险因素。在众多可用策略中,一种将PPARγ的胰岛素增敏潜力与PPARα激动剂有益的脂质调节特性相结合的单分子PPARα和γ共配体,最近受到了关注。在此我们报告双PPARα/γ激动剂拉格列扎(Raga)实现这一目标的生化机制。Raga的PPARα成分似乎有助于显著增加HepG2细胞中的β氧化、载脂蛋白A1分泌并抑制甘油三酯生物合成。Raga在60微摩尔时的这些作用与非诺贝特(Feno)在250微摩尔时所显示的作用相似。Raga的PPARγ成分在3T3L1细胞中显示出显著的甘油醛-3-磷酸脱氢酶(G3PDH)活性和甘油三酯积累,同时aP2表达相应增加。在Raga处理的3T3L1细胞的培养上清液中观察到白细胞介素-6(IL-6)和肿瘤坏死因子α(TNFα)水平显著降低。Raga导致3T3L1细胞中显著的胰岛素依赖性葡萄糖摄取,同时葡萄糖转运蛋白4(GLUT4)表达相应增加。此外,Raga在THP-1巨噬细胞中显示出显著的胆固醇流出,同时ATP结合盒转运体A1(ABCA1)蛋白表达相应增加。总之,Raga激活脂肪细胞和肝细胞中由PPARα和γ调节的途径,这共同促成其胰岛素增敏和降脂活性。此外,PPARα/γ的双重激活还通过诱导胆固醇逆向流出和抑制促炎细胞因子显示出抗动脉粥样硬化潜力。

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