Multiomics-empowered Deep Phenotyping of Ulcerative Colitis Identifies Biomarker Signatures Reporting Functional Remission States

溃疡性结肠炎 生物标志物 疾病 蛋白质组学 组学 结肠炎 生物标志物发现 医学 计算生物学 生物信息学 生物 内科学 遗传学 基因
作者
Lukas Janker,Dina Schuster,Patricia Bortel,Gerhard Hagn,Samuel M. Meier,Thomas Mohr,Johanna C. Mader,Astrid Slany,Andrea Bileck,Julia Brunmair,Christian Madl,Lukas Unger,Barbara Hennlich,Barbara Weitmayr,Giorgia Del Favero,Dietmar Pils,Tobias Pukrop,Nikolaus Pfisterer,T Feichtenschlager,Christopher Gerner
出处
期刊:Journal of Crohn's and Colitis [Oxford University Press]
卷期号:17 (9): 1514-1527 被引量:24
标识
DOI:10.1093/ecco-jcc/jjad052
摘要

INTRODUCTION: Ulcerative colitis [UC] is a chronic disease with rising incidence and unclear aetiology. Deep molecular phenotyping by multiomics analyses may provide novel insights into disease processes and characteristic features of remission states. METHODS: UC pathomechanisms were assessed by proteome profiling of human tissue specimens, obtained from five distinct colon locations for each of the 12 patients included in the study. Systemic disease-associated alterations were evaluated thanks to a cross-sectional setting of mass spectrometry-based multiomics analyses comprising proteins, metabolites, and eicosanoids of plasma obtained from UC patients during acute episodes and upon remission, in comparison with healthy controls. RESULTS: Tissue proteome profiling indicated colitis-associated activation of neutrophils, macrophages, B and T cells, fibroblasts, endothelial cells and platelets, and hypoxic stress, and suggested a general downregulation of mitochondrial proteins accompanying the establishment of apparent wound healing-promoting activities including scar formation. Whereas pro-inflammatory proteins were apparently upregulated by immune cells, the colitis-associated epithelial cells, fibroblasts, endothelial cells, and platelets seemed to predominantly contribute anti-inflammatory and wound healing-promoting proteins. Blood plasma proteomics indicated chronic inflammation and platelet activation, whereas plasma metabolomics identified disease-associated deregulations of gut and gut microbiome-derived metabolites. Upon remission several, but not all, molecular candidate biomarker levels recovered back to normal. CONCLUSION: The findings may indicate that microvascular damage and platelet deregulation hardly resolve upon remission, but apparently persist as disease-associated molecular signatures. This study presents local and systemic molecular alterations integrated in a model for UC pathomechanisms, potentially supporting the assessment of disease and remission states in UC patients.
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