Diagnostic and Therapeutic Application of Proteomics in Infectious Disease

Fanuel Bizuayehu Yihunie, Mequanint Addisu Belete, Gizachew Fentahun, S. Getachew, Teshager Dubie
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Abstract

The study of an organism’s genome, often known as “genomics,” has advanced quickly, producing a wealth of publicly accessible genetic data. Despite how valuable the genome is; proteins essentially control most aspects of cell function. Proteomics, or the comprehensive study of proteins, has emerged as an important technology for disease characterization, diagnosis, prognosis, drug development, and therapy. Proteomics technologies are now used to support the diagnosis and treatment of both infectious and noninfectious diseases. Nevertheless, it is more difficult to describe a proteomic profile since a single gene product may result in a number of unique proteins, and proteins have a wider range of chemical configurations. The proteome profiles of a particular organism, tissue, or cell are impacted by a variety of environmental factors, including those triggered by infectious agents. This review intends to highlight the applications of proteomics in the study of disease diagnosis and treatment. In this review, the different technologies used in proteomics studies, like two-dimensional gel electrophoresis, mass spectrometry, and protein microarray as well as biomarker discovery and drug target identification using proteomics, have also been focused on.
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蛋白质组学在传染病诊断和治疗中的应用
对生物体基因组的研究,通常被称为“基因组学”,进展迅速,产生了大量可公开获取的基因数据。尽管基因组很有价值;蛋白质基本上控制着细胞功能的大部分方面。蛋白质组学,或蛋白质的综合研究,已经成为疾病表征、诊断、预后、药物开发和治疗的重要技术。蛋白质组学技术现在被用于支持传染性和非传染性疾病的诊断和治疗。然而,由于单个基因产物可能产生许多独特的蛋白质,并且蛋白质具有更广泛的化学构型,因此描述蛋白质组学特征更加困难。特定生物体、组织或细胞的蛋白质组谱受到各种环境因素的影响,包括由感染因子引发的环境因素。本文就蛋白质组学在疾病诊断和治疗研究中的应用作一综述。本文综述了蛋白质组学研究中使用的不同技术,如二维凝胶电泳、质谱、蛋白质微阵列以及利用蛋白质组学发现生物标志物和药物靶点鉴定。
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