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首页> 外文期刊>Journal of the American Society of Nephrology: JASN >Crystal surface adhesion explains the pathological activity of calcium oxalate hydrates in kidney stone formation.
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Crystal surface adhesion explains the pathological activity of calcium oxalate hydrates in kidney stone formation.

机译:晶体表面的粘附解释了草酸钙水合物在肾结石形成中的病理活性。

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摘要

Renal tubular fluid in the distal nephron of the kidney is supersaturated with calcium oxalate (CaOx), which crystallizes in the tubules as either calcium oxalate monohydrate (COM) or calcium oxalate dihydrate (COD). Kidney stones are aggregates, most commonly containing microcrystals of COM as the primary inorganic constituent. Stones also contain small amounts of embedded proteins, which are thought to play an adhesive role in these aggregates, and they often are found attached to the tip of renal papilla, presumably through adhesive contacts. Voided urine, however, often contains COD in the form of single micron-sized crystals. This suggests that COD formation protects against stone disease because of its reduced capacity to form stable aggregates and strong adhesion contacts to renal epithelial cells. Using atomic force microscopy configured with tips modified with biologically relevant functional groups, we have compared the adhesion strengths of the morphologically important faces of COM and COD.These measurements provide direct experimental evidence, at the near molecular level, for poorer adhesion at COD crystal faces, which explains the benign character of COD and has implications for resolving one of the mysteries of kidney stone formation.
机译:肾脏远端肾单位的肾小管液中的草酸钙(CaOx)过饱和,草酸钙以一水草酸钙(COM)或二水草酸钙(COD)的形式在小管中结晶。肾结石是聚集体,最常见的是含有COM的微晶作为主要的无机成分。石头还包含少量嵌入的蛋白质,这些蛋白质被认为在这些聚集体中起粘附作用,并且经常发现它们可能通过粘附接触而附着在肾乳头的尖端。但是,空洞的尿液通常含有单微米大小的晶体形式的COD。这表明,由于COD形成稳定聚集体的能力降低,并且与肾上皮细胞的粘附力强,因此可防止结石病。我们使用原子力显微镜对尖端进行了生物学相关的官能团修饰,比较了COM和COD在形态上重要的表面的粘附强度,这些测量结果提供了直接的实验证据,表明在近分子水平上COD晶体表面的粘附性较差。 ,这解释了COD的良性特征,对解决肾结石形成的奥秘之一具有启示意义。

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