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利用流式细胞术测定草酸钙尿结晶机制和动力学

Determination of urinary calcium oxalate crystallization mechanisms and kinetics using flow cytometry.

作者信息

Rodgers A, Hibbert B, Probyn T

机构信息

Department of Chemistry, University of Cape Town, Rondebosch, South Africa.

出版信息

Urol Int. 1995;55(2):93-100. doi: 10.1159/000282759.

Abstract

This paper describes the application of flow cytometry to the determination of calcium oxalate crystallization kinetics and mechanisms in real urine. The technique has the unique advantage of simultaneously providing quantitative particle number-size distributions and qualitative data concerning particle structure and morphology. Twenty-four-hour urines from 10 healthy male subjects were treated with sodium oxalate and the ensuing crystallization of calcium oxalate was monitored by flow cytometry. In 7 specimens crystallization was accompanied by increasing size and by a fundamental change in particle morphology. This suggests that nucleation and aggregation occurred in these specimens. In the remaining 3 samples, increasing particle numbers occurred without any changes in size or morphology, indicating that nucleation was the sole mechanism in these specimens. These results demonstrate that flow cytometry is able to differentiate between nucleation, growth and aggregation mechanisms thereby making it an extremely useful analytical tool for stone researchers.

摘要

本文描述了流式细胞术在实际尿液中草酸钙结晶动力学和机制测定中的应用。该技术具有独特的优势,能够同时提供定量的颗粒数量-尺寸分布以及关于颗粒结构和形态的定性数据。对10名健康男性受试者的24小时尿液用草酸钠进行处理,并通过流式细胞术监测随后草酸钙的结晶情况。在7个样本中,结晶伴随着尺寸的增加以及颗粒形态的根本变化。这表明在这些样本中发生了成核和聚集现象。在其余3个样本中,颗粒数量增加,但尺寸和形态没有任何变化,表明在这些样本中成核是唯一的机制。这些结果表明,流式细胞术能够区分成核、生长和聚集机制,从而使其成为结石研究人员极为有用的分析工具。

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