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首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Influence of oxidatively modified LDL on monocyte-macrophage differentiation
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Influence of oxidatively modified LDL on monocyte-macrophage differentiation

机译:氧化修饰的低密度脂蛋白对单核巨噬细胞分化的影响

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Transendothelial migration of peripheral blood mononuclear cells (PBMCs) and their subsequent interaction with the subendothelial matrix lead to their differentiation to macrophages (m phi s). To study whether preexposure of monocytes in circulation to modified proteins influences their differentiation to m phi s, an in vitro model system using isolated PBMC in culture was used. The effect of modified proteins such as oxidatively modified LDL (ox-LDL), acetylated and non-enzymatically glycated-BSA (NEG-BSA) on the differentiation process was studied by monitoring the upregulation of m phi s specific functions such as endocytosis, production of matrix metalloproteinases (MMPs), expression of surface antigen, activity of beta-glucuronidase and down regulation of monocyte specific myeloperoxidase activity. Rate of endocytosis, production of MMPs and beta-glucuronidase activity were significantly greater in cells treated with modified proteins irrespective of the nature of modification. Both CuSO4 ox-LDL and HOCl ox-LDL increased the rate of expression of the m phi specific functions. FACS analysis showed that the rate of upregulation of m phi specific CD71 and down regulation of monocyte specific CD14 were high in cells supplemented with modified proteins. Studies using PPAR gamma antagonist and agonist suggest its involvement in CuSO4 ox-LDL induced monocyte-macrophage (mo-m phi) differentiation whereas the expression of macrophage specific functions in cells exposed to other modified proteins was independent of PPAR gamma. PBMC isolated from hypercholesterolemic rabbits in culture expressed m phi specific functions at a faster rate compared to normal controls indicating that these observations are relevant in vivo. These results indicate that preexposure of monocytes to modified proteins promote their differentiation to m phi s and may serve as a feed forward type control for clearing modified proteins.
机译:外周血单核细胞(PBMC)的跨内皮迁移及其随后与内皮下基质的相互作用导致其分化为巨噬细胞(m phi s)。为了研究循环中单核细胞预暴露于修饰蛋白是否会影响其向m phis的分化,使用了在培养物中使用分离的PBMC的体外模型系统。通过监测m phis特定功能(如内吞作用,生产)的上调,研究了氧化修饰的LDL(ox-LDL),乙酰化和非酶促糖基化BSA(NEG-BSA)等修饰蛋白对分化过程的影响。基质金属蛋白酶(MMPs)的表达,表面抗原的表达,β-葡萄糖醛酸苷酶的活性以及下调单核细胞特异性髓过氧化物酶的活性。不管修饰的性质如何,在用修饰的蛋白质处理的细胞中,内吞作用的速率,MMP的产生和β-葡萄糖醛酸苷酶的活性均明显更高。 CuSO4 ox-LDL和HOCl ox-LDL均可增加m phi特定功能的表达率。 FACS分析显示,在补充有修饰蛋白的细胞中,m phi特异性CD71的上调率和单核细胞特异性CD14的下调率很高。使用PPARγ拮抗剂和激动剂的研究表明,其参与CuSO4 ox-LDL诱导的单核巨噬细胞(mo-m phi)分化,而暴露于其他修饰蛋白的细胞中巨噬细胞特定功能的表达与PPARγ无关。从培养的高胆固醇血症兔中分离的PBMC与正常对照相比以更快的速率表达m phi特定功能,表明这些观察结果与体内相关。这些结果表明,单核细胞预先暴露于修饰的蛋白质会促进它们向m phis的分化,并可作为清除修饰的蛋白质的前馈类型控制。

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