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肾结石病中的晶体-膜相互作用

Crystal-membrane interaction in kidney stone disease.

作者信息

Mandel N

机构信息

Department of Medicine, Medical College of Wisconsin, Milwaukee.

出版信息

J Am Soc Nephrol. 1994 Nov;5(5 Suppl 1):S37-45. doi: 10.1681/ASN.V55s37.

Abstract

Urolithiasis is a multifaceted process that initiates with the formation of microcrystals in the urine and terminates with the formation of mature renal calculi. The attachment of crystals by the urothelium is a major event in the successful formation of the mature stone. The papillary tip is the primary site for crystal attachment and stone maturation, and the attachment process appears to be mediated by specific molecular interactions between molecular structures on the surfaces of stone crystals and molecular arrays on the surfaces of cell membranes. Animal models have demonstrated the interaction between cells and crystals, and they have suggested a correlation between cellular damage and crystal interaction, especially when crystals bind to and then break free from the tubular epithelium. Cell culture studies on inner medullary late collecting duct (IMCD) cells have demonstrated that calcium oxalate monohydrate, hydroxyapatite, and uric acid crystals bind to IMCD cells in primary culture. The attachment of these crystals to IMCD cells was crystal structure dependent, saturable, and competitively inhibitable if more than one crystal type was present at the same time. The crystals preferentially attach to cells that have lost partial or complete intercellular junctional integrity. These crystal-attaching cells appear to have altered membrane composition and/or structure. Recent studies on red blood cells and IMCD cells that have been enriched with cholesterol and selected phospholipids suggest that crystal-membrane phospholipid interactions play a major role in crystal attachment.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

尿石症是一个多方面的过程,始于尿液中微晶的形成,止于成熟肾结石的形成。尿路上皮对晶体的附着是成熟结石成功形成的一个主要事件。乳头尖端是晶体附着和结石成熟的主要部位,附着过程似乎是由结石晶体表面的分子结构与细胞膜表面的分子阵列之间的特定分子相互作用介导的。动物模型已经证明了细胞与晶体之间的相互作用,并且它们表明细胞损伤与晶体相互作用之间存在关联,特别是当晶体与肾小管上皮细胞结合然后脱离时。对髓质内集合管(IMCD)细胞的细胞培养研究表明,一水合草酸钙、羟基磷灰石和尿酸晶体在原代培养中与IMCD细胞结合。这些晶体与IMCD细胞的附着取决于晶体结构,具有饱和性,并且如果同时存在不止一种晶体类型则具有竞争性抑制作用。晶体优先附着于细胞间连接完整性部分或完全丧失的细胞。这些晶体附着细胞似乎具有改变的膜组成和/或结构。最近对富含胆固醇和特定磷脂的红细胞和IMCD细胞的研究表明,晶体 - 膜磷脂相互作用在晶体附着中起主要作用。(摘要截短于250字)

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