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Proteomics in Kidney Allograft Transplantation—Application of Molecular Pathway Analysis for Kidney Allograft Disease Phenotypic Biomarker Selection

机译:肾同种异体移植移植蛋白质组学的分子途径分析对肾同种异体移植疾病表型生物标志物选择的应用

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摘要

There is a need for accurate, robust, non‐invasive methods to provide early diagnosis of graft lesions after kidney transplantation. A multitude of proteomic biomarkers for the major kidney allograft disease phenotypes defined by the BANFF classification criteria have been described in literature. None of these biomarkers have been established in the clinic. A key reason for this is the lack of clinical validation which is difficult, as even the gold standard of diagnosis, kidney biopsy, is often ambiguous. The semantic clustering by ReviGO on top of transcriptomic pathway analysis is evaluated to connect histological and transcriptomic kidney allograft disease characteristics with proteomic biomarker qualification. By using public data generated in microarray studies of kidney allograft tissue, biological processes and key molecules specifically associated with the different kidney allograft disease phenotypes are identified. Semantic clustering holds the promise to guide adaptation of proteomic marker panels to molecular pathology. This can support the development of noninvasive tests (e.g. in urine, by capillary electrophoresis mass spectrometry) that simultaneously detect diverse kidney allograft phenotypes with high accuracy and sensitivity.
机译:需要准确,坚固,无侵入性方法,以便在肾移植后的接枝病变的早期诊断。在文献中描述了由班夫分类标准定义的主要肾同种异体移植疾病表型的多种蛋白质组学生物标志物。这些生物标志物都没有在诊所建立。这是一个关键原因是缺乏临床验证,这是难度的,因为即使是诊断的黄金标准,肾脏活检通常是暧昧的。评估转录组途径分析顶部的Revigo的语义聚类,以将组织学和转录组肾同种异体移植疾病特征与蛋白质组学生物标志物合格连接。通过使用在肾同种异体移植组织的微阵列研究中产生的公共数据,鉴定了与不同肾同种异体移植疾病表型特异性相关的生物方法和关键分子。语义聚类具有指导蛋白质组学标记面板对分子病理学的适应。这可以支持非侵入性试验的发展(例如,尿液,毛细管电泳质谱),同时检测具有高精度和敏感性的不同肾同种异体移植表型。

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