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比较固定和免疫荧光方案,以提高人左心室心脏组织的可重复性和信号强度。

A comparison of fixation and immunofluorescence protocols for successful reproducibility and improved signal in human left ventricle cardiac tissue.

机构信息

Faculty of Medicine and Health, School of Medical Sciences, The University of Sydney, Sydney, Australia.

Centre for Heart Failure and Diseases of the Aorta, The Baird Institute, Sydney, Australia.

出版信息

J Microsc. 2024 Oct;296(1):34-47. doi: 10.1111/jmi.13336. Epub 2024 Jun 10.

Abstract

Immunohistochemistry (IHC) and immunofluorescence (IF) are crucial techniques for studying cardiac physiology and disease. The accuracy of these techniques is dependent on various aspects of sample preparation and processing. However, standardised protocols for sample preparation of tissues, particularly for fresh-frozen human left ventricle (LV) tissue, have yet to be established and could potentially lead to differences in staining and interpretation. Thus, this study aimed to optimise the reproducibility and quality of IF staining in fresh-frozen human LV tissue by systematically investigating crucial aspects of the sample preparation process. To achieve this, we subjected fresh-frozen human LV tissue to different fixation protocols, primary antibody incubation temperatures, antibody penetration reagents, and fluorescent probes. We found that neutral buffered formalin fixation reduced image artefacts and improved antibody specificity compared to both methanol and acetone fixation. Additionally, incubating primary antibodies at 37°C for 3 h improved fluorescence intensity compared to the commonly practised 4°C overnight incubation. Furthermore, we found that DeepLabel, an antibody penetration reagent, and smaller probes, such as fragmented antibodies and Affimers, improved the visualisation depth of cardiac structures. DeepLabel also improved antibody penetration in CUBIC cleared thick LV tissue fragments. Thus, our data underscores the importance of standardised protocols in IF staining and provides various means of improving staining quality. In addition to contributing to cardiac research by providing methodologies for IF, the findings and processes presented herein also establish a framework by which staining of other tissues may be optimised.

摘要

免疫组织化学(IHC)和免疫荧光(IF)是研究心脏生理学和疾病的关键技术。这些技术的准确性取决于样品制备和处理的各个方面。然而,组织样品制备的标准化方案,特别是对于新鲜冷冻的人类左心室(LV)组织,尚未建立,这可能导致染色和解释的差异。因此,本研究旨在通过系统研究样品制备过程中的关键方面,优化新鲜冷冻人类 LV 组织中 IF 染色的重现性和质量。为此,我们对新鲜冷冻的人类 LV 组织进行了不同的固定方案、一抗孵育温度、抗体渗透试剂和荧光探针的处理。我们发现,中性缓冲福尔马林固定与甲醇和丙酮固定相比,减少了图像伪影并提高了抗体特异性。此外,与通常的 4°C 过夜孵育相比,将一抗在 37°C 下孵育 3 小时可提高荧光强度。此外,我们发现,抗体渗透试剂 DeepLabel 和较小的探针,如碎片化抗体和 Affimers,可改善心脏结构的可视化深度。DeepLabel 还改善了 CUBIC 清除的厚 LV 组织碎片中的抗体渗透。因此,我们的数据强调了 IF 染色标准化方案的重要性,并提供了多种提高染色质量的方法。除了通过提供 IF 方法为心脏研究做出贡献外,本文提出的发现和过程还建立了一个框架,可以优化其他组织的染色。

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