Quantitative Proteomics Using Formalin-fixed, Paraffin-embedded Biopsy Tissues in Inflammatory Disease.

Journal of proteomics & bioinformatics Pub Date : 2019-01-01 Epub Date: 2019-10-03 DOI:10.35248/0974-276X.12.19.503
Abhimanyu Amarnani, Joseph R Capri, Puneet Souda, David A Elashoff, Ivan A Lopez, Julian P Whitelegge, Ram R Singh
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Abstract

Background: Investigations in human disease pathogenesis have been hampered due to paucity of access to fresh-frozen tissues (FFT) for use in global, data-driven methodologies. As an alternative, formalin-fixed, paraffin-embedded (FFPE) tissues are readily available in pathology banks. However, the use of formalin for fixation can lead to the loss of proteins that appear during inflammation, thus introducing an inherent sample bias. To address this, we compared FF and FFPE tissue proteomics to determine whether FFPE-tissue can be used effectively in inflammatory diseases.

Methods: Adjacent kidney slices from lupus nephritic mice were processed as FFPE or FFTs. Their tissue lysates were run together using proteomics workflow involving filter-aided sample preparation, in-solution dimethyl isotope labeling, StageTip fractionation, and nano-LC MS/MS through an Orbitrap XL MS.

Results: We report a >97% concordance in protein identification between adjacent FFPE and FFTs in murine lupus nephritic kidneys. Specifically, proteins representing pathways, namely, 'systemic lupus erythematosus', 'interferon-α', 'TGF-β', and 'extracellular matrix', were reproducibly quantified between FFPE and FFTs. However, 12%-29% proteins were quantified differently in FFPE compared to FFTs, but the differences were consistent across experiments. In particular, certain proteins represented in pathways, including 'inflammatory response' and 'innate immune system' were quantified less in FFPE than in FFTs. In a pilot study of human FFPE tissues, we identified proteins relevant to pathogenesis in lupus nephritic kidney biopsies compared to control kidneys.

Conclusion: This is the first report of lupus nephritis kidney proteomics using FFPE tissue. We concluded that archived FFPE tissues can be reliably used for proteomic analyses in inflammatory diseases, with a caveat that certain proteins related to immunity and inflammation may be quantified less in FFPE than in FFTs.

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利用炎症性疾病中的福尔马林固定、石蜡包埋活检组织进行定量蛋白质组学研究
背景:由于无法获得新鲜冷冻组织(FFT)用于全球数据驱动方法,人类疾病发病机制的研究受到了阻碍。病理库中有福尔马林固定、石蜡包埋(FFPE)组织可供选择。然而,使用福尔马林固定可能会导致炎症过程中出现的蛋白质丢失,从而带来固有的样本偏差。为了解决这个问题,我们比较了FF和FFPE组织蛋白质组学,以确定FFPE组织是否能有效地用于炎症性疾病:方法:狼疮肾炎小鼠的相邻肾切片被处理为全脂或全冻组织。采用蛋白质组学工作流程对它们的组织裂解液进行了处理,包括过滤辅助样品制备、溶液中二甲基同位素标记、StageTip分馏以及通过Orbitrap XL MS进行纳米LC MS/MS分析:结果:我们报告了小鼠狼疮肾炎肾脏中相邻FFPE和FFT蛋白质鉴定的一致性>97%。具体而言,代表 "系统性红斑狼疮"、"干扰素-α"、"TGF-β "和 "细胞外基质 "等通路的蛋白质在FFPE和FFT之间的定量具有可重复性。然而,12%-29%的蛋白质在全脂胎膜和全脂胎膜上的定量结果不同,但不同实验之间的差异是一致的。特别是,某些蛋白在 "炎症反应 "和 "先天免疫系统 "等通路中的定量在全纤维组织中比在全纤维组织中少。在一项针对人类全冻干组织的试验性研究中,与对照肾脏相比,我们在狼疮肾炎肾活检组织中发现了与发病机制相关的蛋白质:结论:这是第一份使用FFPE组织进行狼疮肾炎肾脏蛋白质组学研究的报告。我们的结论是,存档的 FFPE 组织可以可靠地用于炎症性疾病的蛋白质组学分析,但需要注意的是,某些与免疫和炎症相关的蛋白质在 FFPE 中的定量可能低于在 FFT 中的定量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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