5,6 -二氢- 8h -异喹啉[1,2 -b]喹唑啉-8- 1衍生物作为抑制巨噬细胞源性泡沫细胞形成的新型非脂源性ABCA1上调调节剂的合成和评价。

IF 5.4 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Changhuan Yang, Lin Chen, Yanmei Jiang, Demeng Sun, Yun Hu
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引用次数: 0

摘要

增加atp结合盒转运蛋白A1 (ABCA1)的表达可以降低细胞胆固醇水平,防止泡沫细胞的形成。本研究合成了一系列5,6 -二氢- 8h -异喹啉[1,2 -b]喹唑啉-8- 1衍生物,并对其上调ABCA1表达的能力进行了评估。并对构效关系进行了探讨和总结。在28个衍生物中,化合物3对ABCA1启动子的激活活性最强(2.5倍),显著上调RAW264.7巨噬细胞中ABCA1 mRNA和蛋白水平。机制研究表明,化合物3是通过靶向lxr相关通路起作用的。在泡沫细胞模型中,化合物3减少ox- ldl诱导的脂质积累,从而抑制泡沫细胞的形成。此外,与LXR激动剂T0901317相比,化合物3导致HepG2细胞中不需要的脂质和甘油三酯的积累最少。化合物3对所有测试细胞系的细胞毒性很小,有望成为一种新的潜在抗动脉粥样硬化药物,有待进一步探索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis and evaluation of 5, 6-dihydro-8H-isoquinolino[1, 2-b]quinazolin-8-one derivatives as novel non-lipogenic ABCA1 up-regulators with inhibitory effects on macrophage-derived foam cell formation.

Increasing the expression of ATP-binding cassette transporter A1 (ABCA1) can lower cellular cholesterol levels and prevent foam cell formation. In this study, a series of 5, 6-dihydro-8H-isoquinolino[1, 2-b]quinazolin-8-one derivatives were synthesised and assessed for their ability to up-regulate ABCA1 expression. The structure-activity relationship was explored and summarised. Among the 28 derivatives, compound 3 exhibited the most potent activity in activating the ABCA1 promoter (2.50-fold), significantly up-regulating both ABCA1 mRNA and protein levels in RAW264.7 macrophage cells. Mechanism studies revealed that compound 3 acted by targeting the LXR-involved pathway. In a foam cell model, compound 3 reduced ox-LDL-induced lipid accumulation and thereby inhibited foam cell formation. Moreover, compared to the LXR agonist T0901317, compound 3 led to minimal accumulation of unwanted lipids and triglycerides in HepG2 cells. With little cytotoxicity towards all the tested cell lines, compound 3 holds promise as a novel potential anti-atherogenic agent for further exploration.

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来源期刊
CiteScore
10.30
自引率
10.70%
发文量
195
审稿时长
4-8 weeks
期刊介绍: Journal of Enzyme Inhibition and Medicinal Chemistry publishes open access research on enzyme inhibitors, inhibitory processes, and agonist/antagonist receptor interactions in the development of medicinal and anti-cancer agents. Journal of Enzyme Inhibition and Medicinal Chemistry aims to provide an international and interdisciplinary platform for the latest findings in enzyme inhibition research. The journal’s focus includes current developments in: Enzymology; Cell biology; Chemical biology; Microbiology; Physiology; Pharmacology leading to drug design; Molecular recognition processes; Distribution and metabolism of biologically active compounds.
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