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首页> 外文期刊>Current proteomics >Effective Inhibition of Foam Cells Formation by Tanshinone IIA in RAW264.7 Macrophages Induced with LDL Isolated from Hypercholes-terolemia Patients: A Proteomic Analysis
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Effective Inhibition of Foam Cells Formation by Tanshinone IIA in RAW264.7 Macrophages Induced with LDL Isolated from Hypercholes-terolemia Patients: A Proteomic Analysis

机译:丹参酮IIA对高胆固醇血症患者LDL诱导的RAW264.7巨噬细胞中泡沫细胞形成的有效抑制:蛋白质组学分析

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Tanshinone IIA is the major active ingredient of Salviae miltiorrhizae extract, and has been widely used in China for the treatment of cardiovascular and cerebrovascular diseases. We have identified proteins modulated by Tanshi-none IIA during the formation of macrophage-derived foam cells to uncover its anti-atherosclerotic mechanism. Low density lipoprotein (LDL) isolated from hyperlipidemia patients, designated as HP-LDL. HP-LDL (80 μg/mL for 24 h) can improve the total cholesterol and the proportion of cholesterol ester in the RAW264.7 macrophage and transform it into foam cell, which can be inhibited by Tanshinone IIA (20 μg/mL, 24 h). Two-dimensional electrophoresis and matrix-assisted laser desorption ionization time-of-flight mass spectrometry were used to analysis and identify the proteins differ-entially expressed after Tanshinone IIA treatment of HP-LDL induced RAW264.7 macrophage transformation into foam cell. Fifteen proteins have been identified, which involved the different cellular functions, such as regulation of cytosolic calcium concentration, oxidative stress, inflammation, cell proliferation and differentiation, and lipid metabolism. This provides new insight into the anti-atherosclerotic mechanism of Tanshinone IIA.
机译:丹参酮IIA是丹参提取物的主要活性成分,在中国已广泛用于治疗心脑血管疾病。我们已经确定了巨噬细胞源性泡沫细胞形成过程中由丹参无IIA调制的蛋白质,以揭示其抗动脉粥样硬化的机制。从高脂血症患者中分离出的低密度脂蛋白(LDL),称为HP-LDL。 HP-LDL(80μg/ mL,持续24 h)可以改善RAW264.7巨噬细胞中的总胆固醇和胆固醇酯的比例,并将其转化为泡沫细胞,可以被丹参酮IIA(20μg/ mL,24)抑制H)。二维电泳和基质辅助激光解吸电离飞行时间质谱用于分析和鉴定丹参酮IIA处理HP-LDL诱导的RAW264.7巨噬细胞转化为泡沫细胞后差异表达的蛋白质。已经鉴定出十五种蛋白质,它们涉及不同的细胞功能,例如调节胞质钙浓度,氧化应激,炎症,细胞增殖和分化以及脂质代谢。这为丹参酮IIA的抗动脉粥样硬化机制提供了新的见解。

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