网络毒理学及其在外源性化学物毒性研究的应用概况

Network toxicology and its application in studying exogenous chemical toxicity

  • 摘要: 随着社会的不断发展,大量新型化学品持续涌现,由此对于化学品的风险评估以及安全性管理提出了更为严格的要求。传统的毒理学研究方法在快速、高效、准确评估众多化学品毒性方面存在一定局限性,难以满足实际需求。在此背景下,通过应用数学和计算机模型来实现对化学品毒性预测的计算毒理学研究方法应运而生。与此同时,由于研究人员日益重视从系统层面理解外源性化学物质与机体的相互作用机制,以及基因组学、转录组学、蛋白质组学和代谢组学等多组学技术迅猛发展,产生了海量数据,为研究化学物质与生物分子之间的相互作用提供了丰富的信息资源,系统毒理学和网络毒理学也随之发展起来。其中,网络毒理学能够整合这些多组学数据,构建生物分子网络,进而快速预测化学物质在分子水平上的关键毒性靶点和作用通路。本文概述了网络毒理学的概念与发展,总结了网络毒理学研究的主要方法及依托工具,阐述了网络毒理学在农用化学物、环境污染物、工业化学物及食源性化学物等外源性化学物潜在毒性研究中的应用现状,分析了网络毒理学研究的发展前景及局限性。以期为网络毒理学在其他领域的应用提供参考。

     

    Abstract: With the continuous development of society, a large number of new chemicals are continuously emerging, which presents a challenge to current risk assessment and safety management of chemicals. Traditional toxicology research methods have certain limitations in quickly, efficiently, and accurately assessing the toxicity of many chemicals, and cannot meet the actual needs. In response to this challenge, computational toxicology that use mathematical and computer models to achieve the prediction of chemical toxicity has emerged. In the meantime, as researchers increasingly pay attention to understanding the interaction mechanisms between exogenous chemical substances and the body from the system level, and multiomics technologies develop rapidly such as genomics, transcriptomics, proteomics, and metabolomics, huge amounts of data have been generated, providing rich information resources for studying the interactions between chemical substances and biological molecules. System toxicology and network toxicology have also developed accordingly. Of these, network toxicology can integrate these multiomics data to construct biomolecular networks, and then quickly predict the key toxicological targets and pathways of chemicals at the molecular level. This paper outlined the concept and development of network toxicology, summarized the main methods and supporting tools of network toxicology research, expounded the application status of network toxicology in studying potential toxicity of exogenous chemicals such as agricultural chemicals, environmental pollutants, industrial chemicals, and foodborne chemicals, and analyzed the development prospects and limitations of network toxicology research. This paper aimed to provide a reference for the application of network toxicology in other fields.

     

/

返回文章
返回