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Identifying pathological biomarkers: Histochemistry still ranks high in the omics era

机译:识别病理生物标志物:组学在组学时代仍处于重要地位

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摘要

In recent years, omic analyses have been proposed as possible approaches to diagnosis, in particular for tumours, as they should be able to provide quantitative tools to detect and measure abnormalities in gene and protein expression, through the evaluation of transcription and translation products in the abnormal vs normal tissues. Unfortunately, this approach proved to be much less powerful than expected, due to both intrinsic technical limits and the nature itself of the pathological tissues to be investigated, the heterogeneity deriving from polyclonality and tissue phenotype variability between patients being a major limiting factor in the search for unique omic biomarkers. Especially in the last few years, the application of refined techniques for investigating gene expression in situ has greatly increased the diagnostic/prognostic potential of histochemistry, while the progress in light microscopy technology and in the methods for imaging molecules in vivo have provided valuable tools for elucidating the molecular events and the basic mechanisms leading to a pathological condition. Histochemical techniques thus remain irreplaceable in pathologist's armamentarium, and it may be expected that even in the future histochemistry will keep a leading position among the methodological approaches for clinical pathology.
机译:近年来,已经提出了将眼科分析作为诊断的可能方法,尤其是对于肿瘤的诊断,因为它们应能够通过评估细胞中的转录和翻译产物来提供检测和测量基因和蛋白质表达异常的定量工具。异常组织与正常组织。不幸的是,由于固有的技术限制和要研究的病理组织本身的性质,这种方法的功能远没有预期的强大,患者之间的多克隆性和组织表型变异性导致的异质性是搜索的主要限制因素用于独特的组蛋白生物标志物。特别是在最近几年中,改进的技术用于原位基因表达的研究极大地提高了组织化学的诊断/预后潜力,而光学显微镜技术和体内分子成像方法的进步也为临床提供了有价值的工具。阐明导致病理状况的分子事件和基本机制。因此,组织化学技术在病理学家的武器库中仍然是不可替代的,并且可以预期,即使在将来,组织化学仍将在临床病理学的方法学方法中保持领先地位。

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