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首页> 外文期刊>Toxicologic pathology >Applications of laser scanning cytometry in immunohistochemistry and routine histopathology.
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Applications of laser scanning cytometry in immunohistochemistry and routine histopathology.

机译:激光扫描细胞术在免疫组织化学和常规组织病理学中的应用。

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摘要

Laser scanning cytometry (LSC) is a powerful tool for qualitative and quantitative analysis of tissue sections in preclinical drug development. LSC combines the strengths of flow cytometry with tissue architecture retention. This technology has been used predominantly with immunofluorescent techniques on cell culture and tissue sections, but recently LSC has shown promise in evaluating chromogenic immunohistochemistry (IHC) and histochemical products in paraffin-embedded and/or frozen tissue sections. Inverted light scatter measurements or a combination of inverted scatter and fluorescence allows automated determination of celluclear counts (e.g., proliferation labeling indices), cell area (e.g., cellular hypertrophy), stromal elements, and labeling intensity (e.g., cytoplasmic/organellar proteins) in chromogen-labeled IHC or histochemical stained sections that correlates well with standard manual quantification methods. Segmentation with autofluorescence or dual immunolabeling facilitates capture oflabeling data from specific cell populations. LSC evaluation of HE-stained sections is accomplished using autofluorescence/eosin fluorescence and inverse scatter. A standardized fluorescent approach with archivability, a lack of fluorescence quenching (photobleaching), and amenability to evaluation of multiple markers in a section has been demonstrated using Qdot nanocrystals. Examples of LSC use in chromogenic IHC, routine histopathology, and Qdot labeling will be reviewed, and advantages and disadvantages of this technology will be discussed.
机译:激光扫描细胞术(LSC)是在临床前药物开发过程中对组织切片进行定性和定量分析的强大工具。 LSC结合了流式细胞仪的优势和组织结构的保留。该技术已主要用于细胞培养和组织切片的免疫荧光技术,但最近LSC在评估石蜡包埋和/或冷冻组织切片中的生色免疫组织化学(IHC)和组织化学产品方面显示出了希望。倒置光散射测量或倒置散射与荧光的组合可自动确定细胞/核计数(例如,增殖标记指数),细胞面积(例如,细胞肥大),基质成分和标记强度(例如,胞质/细胞蛋白) )在色原标记的IHC或组织化学染色的切片中,该切片与标准的手动定量方法非常相关。自体荧光或双重免疫标记的分割有助于从特定细胞群捕获标记数据。使用自发荧光/曙红荧光和反向散射可完成HE染色切片的LSC评估。使用Qdot纳米晶体已经证明了一种具有存档能力,缺乏荧光猝灭(光漂白)能力和可评估切片中多个标记的标准化荧光方法。将回顾在生色IHC,常规组织病理学和Qdot标记中使用LSC的示例,并讨论该技术的优缺点。

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