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Novel Methods of Determining Urinary Calculi Composition: Petrographic Thin Sectioning of Calculi and Nanoscale Flow Cytometry Urinalysis

机译:确定尿路结石成分的新方法:结石的薄层照相术和纳米流式细胞术尿液分析

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摘要

Accurate determination of urinary stone composition has significant bearing on understanding pathophysiology, choosing treatment modalities and preventing recurrence. A need exists for improved methods to determine stone composition. Urine of 31 patients with known renal calculi was examined with nanoscale flow cytometry and the calculi collected during surgery subsequently underwent petrographic thin sectioning with polarized and fluorescent microscopy. Fluorescently labeled bisphosphonate probes (Alendronate-fluorescein/Alendronate-Cy5) were developed for nanoscale flow cytometry to enumerate nanocrystals that bound the fluorescent probes. Petrographic sections of stones were also imaged by fluorescent and polarized light microscopy with composition analysis correlated to alendronate +ve nanocrystal counts in corresponding urine samples. Urine samples from patients with Ca2+ and Mg2+ based calculi exhibited the highest alendronate +ve nanocrystal counts, ranging from 100–1000 nm in diameter. This novel urine based assay was in agreement with composition determined by petrographic thin sections with Alendronate probes. In some cases, high alendronate +ve nanocrystal counts indicated a Ca2+ or Mg2+ composition, as confirmed by petrographic analysis, overturning initial spectrophotometric diagnosis of stone composition. The combination of nanoscale flow cytometry and petrographic thin sections offer an alternative means for determining stone composition. Nanoscale flow cytometry of alendronate +ve nanocrystals alone may provide a high-throughput means of evaluating stone burden.
机译:准确测定尿路结石成分对了解病理生理学,选择治疗方式和预防复发具有重要意义。需要确定石成分的改进方法。用纳米流式细胞仪检查了31名已知肾结石患者的尿液,并在手术期间收集的结石随后进行了偏光和荧光显微镜下的岩相薄切片检查。开发了荧光标记的双膦酸酯探针(阿仑膦酸酯-荧光素/阿仑膦酸酯-Cy5)用于纳米级流式细胞术,以枚举结合了荧光探针的纳米晶体。石头的岩相切片也通过荧光和偏振光显微镜成像,成分分析与相应尿液样品中的阿仑膦酸盐+ ve纳米晶体计数相关。基于Ca 2 + 和Mg 2 + 的结石患者的尿液样品中阿仑膦酸盐+ ve纳米晶体的计数最高,直径范围为100-1000 nm。这种新颖的基于尿液的测定与石蜡薄片用阿仑膦酸酯探针测定的组成一致。在某些情况下,高阿仑膦酸盐+ ve纳米晶体计数表明Ca 2 + 或Mg 2 + 组成(通过岩相分析证实)推翻了最初的分光光度法对石材的诊断。纳米级流式细胞仪和岩相薄切片的结合提供了确定石材成分的另一种方法。单独的阿仑膦酸盐+ ve纳米晶体的纳米级流式细胞术可能提供评估石头负担的高通量手段。

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