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玻璃样小动脉硬化的发病机制。

The pathogenesis of hyaline arteriolosclerosis.

作者信息

Gamble C N

出版信息

Am J Pathol. 1986 Mar;122(3):410-20.

Abstract

Although hyaline arteriolosclerosis is very common and has been of interest to pathologists for well over 100 years, its pathogenesis has never been determined. This study demonstrates that iC3b bound via an ester linkage to hydroxyl groups on the repeating disaccharide units of hyaluronic acid is a major component of arteriolar hyaline. The deposition of iC3b within the walls of arterioles appears to be due to slow spontaneous activation of the alternative complement pathway and random binding of metastable C3b to proximate hyaluronic acid within the arteriolar wall. Since hyaluronic acid does not activate the alternative complement pathway, bound C3b is rapidly inactivated by factors I and H to iC3b, which, along with factor H, remains bound to hyaluronic acid. The hyaline in some hyalinized arterioles also contains IgM and early and late classical complement pathway components. Indirect evidence suggests that the IgM represents immunoconglutinin, an autoantibody to neoantigens on iC3b and that their interaction results in activation of the classical complement pathway. The gradual accumulation of iC3b, factor H, and, at times, IgM and classical complement pathway components within the walls of arterioles is considered to be a physiologic consequence of aging and probably cannot be prevented, because interruption of the initial binding of metastable C3b to hyaluronic acid would require abrogation of the critically important functions of the alternative complement pathway.

摘要

尽管透明样小动脉硬化非常常见,并且在100多年来一直是病理学家感兴趣的对象,但其发病机制从未得到确定。本研究表明,通过酯键与透明质酸重复二糖单元上的羟基结合的iC3b是小动脉透明样物质的主要成分。iC3b在小动脉壁内的沉积似乎是由于替代补体途径的缓慢自发激活以及亚稳态C3b随机结合到小动脉壁内邻近的透明质酸上。由于透明质酸不激活替代补体途径,结合的C3b被I因子和H因子迅速灭活为iC3b,iC3b与H因子一起仍与透明质酸结合。一些玻璃样变小动脉中的透明样物质还含有IgM以及经典补体途径的早期和晚期成分。间接证据表明,IgM代表免疫黏集素,即针对iC3b上新抗原的自身抗体,并且它们的相互作用导致经典补体途径的激活。iC3b、H因子以及有时IgM和经典补体途径成分在小动脉壁内的逐渐积累被认为是衰老的生理后果,可能无法预防,因为中断亚稳态C3b与透明质酸的初始结合将需要废除替代补体途径极其重要的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb72/1888226/26ccb8efc1cf/amjpathol00162-0041-a.jpg

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