首页> 外文期刊>The Biochemical Journal >Advanced glycation end products are eliminated by scavenger-receptor-mediated endocytosis in hepatic sinusoidal Kupffer and endothelial cells
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Advanced glycation end products are eliminated by scavenger-receptor-mediated endocytosis in hepatic sinusoidal Kupffer and endothelial cells

机译:高级糖基化终产物通过清除剂受体介导的肝窦性Kupffer和内皮细胞内吞作用消除

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Long-term incubation of proteins with glucose leads to the formation of advanced glycation end products (AGE). Physiological aspects of the catabolism of non-enzymically glycated proteins were studied in vivo and in vitro. AGE-modified BSA (AGE-BSA) was a mixture of high-M, (cross-linked), monomeric and low-M(r) (fragmented) AGE-BSA. After intravenous administration in rat, all three fractions of AGE-BSA accumulated extremely rapidly and almost exclusively in liver. Uptake in liver endothelial, Kupffer and parenchymal cells accounted for approx. 60%, 25% and 10-15% respectively of hepatic elimination. Both cross-linked and monomeric AGE-BSA were efficiently taken up and degraded in cultures of purified liver endothelial and Kupffer cells. Endocytosis of AGE-BSA by these cells was inhibited by several ligands for the scavenger receptor. Although I-125-Hb was not endocytosed in vitro, I-125-AGE-Hb was effectively endocytosed by a mechanism that was subject to inhibition by AGE-BSA. Endocytosis of N-terminal propeptide of type I procollagen, a physiological ligand for the scavenger receptor, was effectively inhibited by AGE-Hb and AGE-BSA. We conclude that AGE-modification renders macromolecules susceptible for elimination via the scavenger receptor of both liver endothelial and Kupffer cells.
机译:蛋白质与葡萄糖的长期温育导致高级糖基化终产物(AGE)的形成。在体内和体外研究了非酶糖基化蛋白质分解代谢的生理方面。 AGE修饰的BSA(AGE-BSA)是高M(交联)单体和低M(r)(片段化)AGE-BSA的混合物。在大鼠中静脉内给药后,AGE-BSA的所有三个部分都非常迅速地积累,几乎完全在肝脏中积累。肝脏内皮细胞,库普弗细胞和实质细胞的摄取约占分别有60%,25%和10-15%的肝脏清除。交联的AGE-BSA和单体AGE-BSA在纯化的肝内皮细胞和库普弗细胞培养物中均能有效吸收并降解。这些细胞的AGE-BSA内吞作用被清除剂受体的几种配体抑制。尽管I-125-Hb并未在体外被内吞,但I-125-AGE-Hb却被AGE-BSA抑制的机制有效地被内吞。 AGE-Hb和AGE-BSA有效抑制I型胶原蛋白(一种清道夫受体的生理配体)的N末端前肽的胞吞作用。我们得出结论,AGE修饰使大分子易于通过肝脏内皮细胞和库普弗细胞的清除剂受体消除。

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