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Ammonium and sodium urates precipitating from synthetic urine and fine structure of urate renal calculi.

机译:尿酸铵和尿酸钠从合成尿中沉淀出来,尿道肾结石的结构精细。

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A study of ammonium and sodium urate precipitation in vitro and the fine structure of several urate renal calculi was carried out to contribute to an understanding of the participation of ammonium and sodium urates in urolithiasis. Ammonium urate precipitated in vitro in two different morphologies: a typical spherulite morphology formed at high supersaturation and disorganized needle-like crystals formed at low supersaturation. In all cases sodium urate precipitated in vitro as bundles of curved fibrils, its crystallization being inhibited by calcium in concentrations between 20 and 60 mg/l depending on the sodium urate supersaturation. From a collection of 1300 renal calculi, only three had ammonium urate as their main component (0.2%), three were mixed calculi (0.2%) consisting of ammonium urate and calcium oxalate (two) or uric acid (one), and in one calculus ammonium urate was present as a minor component. Only in a mixed calculus of uric acid and calcium oxalate was sodium urate detected in a very low quantity. The study of the fine structure of the renal calculi constituted mainly by ammonium urate demonstrated similar patterns in which spherulites, needle-like individual crystals and an amorphous mass of ammonium urate with abundant organic matter in non-organized structures coexist. As minor components, struvite or calcium oxalate crystals were found. A general mechanism of the formation of such calculi is proposed.
机译:进行了铵和钠尿酸盐沉淀的体外研究以及几种尿酸盐肾结石的精细结构,以有助于了解铵盐和尿酸钠参与尿路结石症。尿酸铵在体外以两种不同的形态沉淀:高过饱和度下形成的典型球晶形态和低过饱和度下形成的无序针状晶体。在所有情况下,尿酸钠都在体外以弯曲原纤维束的形式沉淀,其结晶受钙浓度的限制,浓度在20至60 mg / l之间,具体取决于尿酸钠的过饱和度。在收集的1300例肾结石中,只有三个以尿酸铵为主要成分(0.2%),其中三个是由尿酸铵和草酸钙(两个)或尿酸(一个)组成的混合结石(0.2%)。结石尿酸铵是次要成分。仅在尿酸和草酸钙的混合演算中,尿酸钠的含量非常低。对主要由尿酸铵组成的肾结石的精细结构的研究显示出相似的模式,其中球晶,针状单个晶体和无定形尿酸铵与有机质丰富的无组织结构共存。发现有鸟粪石或草酸钙晶体作为次要成分。提出了这种结石形成的一般机制。

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