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Non-specific binding of advanced-glycosylation end-products to macrophages outweighs specific receptor-mediated interactions.

机译:晚期糖基化终产物与巨噬细胞的非特异性结合超过特异性受体介导的相互作用。

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摘要

On binding to murine peritoneal macrophages, maleylated BSA exhibited saturable-binding kinetics, with about 24000 sites/cell. Prolonged incubation of BSA with > 20 mM glucose or 2 months incubation with > or = 0.5 M glucose induced the modified protein to readily bind non-specifically to both cell and tube surfaces. Kinetic studies on the binding of advanced glycated end-products (AGEs) and other modified proteins to macrophages and hepatocytes showed no evidence for specific receptor binding, as neither binding saturation nor cross-competition (homologous or heterologous) was detected. Although there was evidence for uptake of BSA which had been incubated with 0.5 M glucose for 2 months, there was no uptake or degradation of AGEs which had been produced at physiological concentrations of glucose. This has implications for the role of macrophages in the recognition of AGEs, and suggests that the non-specific binding may be important in adhesion of AGEs, particularly in poorly controlled diabetics, and might act as a 'damage limitation' mechanism in the potential development of diabetic complications, while low macrophage levels in the blood could seriously potentiate the long-term effects of non-enzymic post-translational protein modifications.
机译:与鼠腹膜巨噬细胞结合后,马来酰化的BSA表现出饱和结合动力学,每细胞约24000个位点。用> 20 mM葡萄糖长时间孵育BSA或用> 0.5M葡萄糖≥2个月孵育会导致修饰的蛋白易于非特异性地与细胞和管表面结合。关于高级糖基化终产物(AGEs)和其他修饰蛋白与巨噬细胞和肝细胞结合的动力学研究没有显示特异性受体结合的证据,因为未检测到结合饱和或交叉竞争(同源或异源)。尽管有证据表明已经与0.5 M葡萄糖孵育了2个月的BSA被摄取,但是在生理浓度的葡萄糖下没有摄取或降解AGEs。这暗示了巨噬细胞在识别AGEs中的作用,并暗示非特异性结合可能对AGEs的粘附尤其是在控制不佳的糖尿病患者中很重要,并可能在潜在的发展中充当“损害限制”机制。糖尿病并发症的发生,而血液中巨噬细胞水平低可能严重增强非酶翻译后蛋白质修饰的长期作用。

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