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DRAQ5与伊红(“D&E”)作为苏木精和伊红的类似物用于新鲜组织的快速荧光组织学检查

DRAQ5 and Eosin ('D&E') as an Analog to Hematoxylin and Eosin for Rapid Fluorescence Histology of Fresh Tissues.

作者信息

Elfer Katherine N, Sholl Andrew B, Wang Mei, Tulman David B, Mandava Sree H, Lee Benjamin R, Brown J Quincy

机构信息

Dept. of Biomedical Engineering, Tulane University, New Orleans, Louisiana, United States of America.

Dept. of Pathology and Laboratory Medicine, Tulane University School of Medicine, New Orleans, Louisiana, United States of America.

出版信息

PLoS One. 2016 Oct 27;11(10):e0165530. doi: 10.1371/journal.pone.0165530. eCollection 2016.

Abstract

Real-time on-site histopathology review of biopsy tissues at the point-of-procedure has great potential for significant clinical value and improved patient care. For instance, on-site review can aid in rapid screening of diagnostic biopsies to reduce false-negative results, or in quantitative assessment of biospecimen quality to increase the efficacy of downstream laboratory and histopathology analysis. However, the only currently available rapid pathology method, frozen section analysis (FSA), is too time- and labor-intensive for use in screening large quantities of biopsy tissues and is too destructive for maximum tissue conservation in multiple small needle core biopsies. In this work we demonstrate the spectrally-compatible combination of the nuclear stain DRAQ5 and the anionic counterstain eosin as a dual-component fluorescent staining analog to hematoxylin and eosin intended for use on fresh, unsectioned tissues. Combined with optical sectioning fluorescence microscopy and pseudo-coloring algorithms, DRAQ5 and eosin ("D&E") enables very fast, non-destructive psuedohistological imaging of tissues at the point-of-acquisition with minimal tissue handling and processing. D&E was validated against H&E on a one-to-one basis on formalin-fixed paraffin-embedded and frozen section tissues of various human organs using standard epi-fluorescence microscopy, demonstrating high fidelity of the staining mechanism as an H&E analog. The method was then applied to fresh, whole 18G renal needle core biopsies and large needle core prostate biospecimen biopsies using fluorescence structured illumination optical sectioning microscopy. We demonstrate the ability to obtain high-resolution histology-like images of unsectioned, fresh tissues similar to subsequent H&E staining of the tissue. The application of D&E does not interfere with subsequent standard-of-care H&E staining and imaging, preserving the integrity of the tissue for thorough downstream analysis. These results indicate that this dual-stain pseudocoloring method could provide a real-time histology-like image at the time of acquisition and valuable objective tissue analysis for the clinician at the time of service.

摘要

在手术过程中对活检组织进行实时现场组织病理学检查,对于显著的临床价值和改善患者护理具有巨大潜力。例如,现场检查有助于快速筛查诊断性活检以减少假阴性结果,或对生物标本质量进行定量评估以提高下游实验室和组织病理学分析的效率。然而,目前唯一可用的快速病理方法——冰冻切片分析(FSA),对于大量活检组织的筛查而言,耗时且费力,并且对于多个小针芯活检中的最大组织保存来说破坏性太大。在这项工作中,我们展示了核染色剂DRAQ5和阴离子复染剂伊红在光谱上兼容的组合,作为苏木精和伊红的双组分荧光染色类似物,用于新鲜的、未切片的组织。结合光学切片荧光显微镜和伪彩色算法,DRAQ5和伊红(“D&E”)能够在采集时以最少的组织处理和加工,对组织进行非常快速、非破坏性的假组织学成像。在使用标准落射荧光显微镜对各种人体器官的福尔马林固定石蜡包埋和冰冻切片组织进行一对一的验证中,D&E与苏木精和伊红(H&E)进行了对比,证明了其作为H&E类似物的染色机制具有高保真度。然后,该方法应用于新鲜的、完整的18G肾针芯活检组织和大针芯前列腺生物标本活检组织,采用荧光结构照明显微镜进行光学切片。我们展示了获得未切片新鲜组织的高分辨率组织学样图像的能力,类似于随后对该组织进行的H&E染色。D&E的应用不会干扰后续的标准护理H&E染色和成像,保留了组织的完整性以便进行全面的下游分析。这些结果表明,这种双染色伪彩色方法可以在采集时提供实时组织学样图像,并在服务时为临床医生提供有价值的客观组织分析。

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