Katsarou Eleni I, Billinis Charalambos, Galamatis Dimitrios, Fthenakis George C, Tsangaris George Th, Katsafadou Angeliki I
Veterinary Faculty, University of Thessaly, 43100 Karditsa, Greece.
Faculty of Public and One Health, University of Thessaly, 43100 Karditsa, Greece.
Proteomes. 2021 Jun 30;9(3):31. doi: 10.3390/proteomes9030031.
'One Health' summarises the idea that human health and animal health are interdependent and bound to the health of ecosystems. The purpose of proteomics methodologies and studies is to determine proteins present in samples of interest and to quantify changes in protein expression during pathological conditions. The objectives of this paper are to review the application of proteomics technologies within the One Health concept and to appraise their role in the elucidation of diseases and situations relevant to One Health. The paper develops in three sections. Proteomics Applications in Zoonotic Infections part discusses proteomics applications in zoonotic infections and explores the use of proteomics for studying pathogenetic pathways, transmission dynamics, diagnostic biomarkers and novel vaccines in prion, viral, bacterial, protozoan and metazoan zoonotic infections. Proteomics Applications in Antibiotic Resistance part discusses proteomics applications in mechanisms of resistance development and discovery of novel treatments for antibiotic resistance. Proteomics Applications in Food Safety part discusses the detection of allergens, exposure of adulteration, identification of pathogens and toxins, study of product traits and characterisation of proteins in food safety. Sensitive analysis of proteins, including low-abundant ones in complex biological samples, will be achieved in the future, thus enabling implementation of targeted proteomics in clinical settings, shedding light on biomarker research and promoting the One Health concept.
“同一健康”概括了人类健康与动物健康相互依存并与生态系统健康紧密相连的理念。蛋白质组学方法和研究的目的是确定感兴趣样本中存在的蛋白质,并量化病理状态下蛋白质表达的变化。本文的目的是回顾蛋白质组学技术在“同一健康”概念中的应用,并评估其在阐明与“同一健康”相关的疾病和情况方面的作用。本文分为三个部分展开。“人畜共患病感染中的蛋白质组学应用”部分讨论了蛋白质组学在人畜共患病感染中的应用,并探讨了蛋白质组学在研究朊病毒、病毒、细菌、原生动物和后生动物人畜共患病感染的致病途径、传播动态、诊断生物标志物和新型疫苗方面的应用。“抗生素耐药性中的蛋白质组学应用”部分讨论了蛋白质组学在耐药性产生机制及发现抗生素耐药性新治疗方法方面的应用。“食品安全中的蛋白质组学应用”部分讨论了食品安全中过敏原的检测、掺假暴露、病原体和毒素的鉴定、产品特性研究以及蛋白质表征。未来将实现对蛋白质的灵敏分析,包括复杂生物样本中低丰度的蛋白质,从而能够在临床环境中实施靶向蛋白质组学,为生物标志物研究提供线索并推动“同一健康”概念的发展。