Reactive Metabolites: Current and Emerging Risk and Hazard Assessments

不良结局途径 风险评估 代谢物 药品 不利影响 药物反应 奈法唑酮 风险分析(工程) 药理学 反应中间体 医学 计算生物学 化学 生物 计算机科学 生物化学 内科学 计算机安全 氟西汀 血清素 受体 催化作用
作者
Richard A. Thompson,Emre M. Isin,Monday O. Ogese,Jerome T. Mettetal,Dominic P. Williams
出处
期刊:Chemical Research in Toxicology [American Chemical Society]
卷期号:29 (4): 505-533 被引量:137
标识
DOI:10.1021/acs.chemrestox.5b00410
摘要

Although idiosyncratic adverse drug reactions are rare, they are still a major concern to patient safety. Reactive metabolites are widely accepted as playing a pivotal role in the pathogenesis of idiosyncratic adverse drug reactions. While there are today well established strategies for the risk assessment of stable metabolites within the pharmaceutical industry, there is still no consensus on reactive metabolite risk assessment strategies. This is due to the complexity of the mechanisms of these toxicities as well as the difficulty in identifying and quantifying short-lived reactive intermediates such as reactive metabolites. In this review, reactive metabolite risk and hazard assessment approaches are discussed, and their pros and cons highlighted. We also discuss the nature of idiosyncratic adverse drug reactions, using acetaminophen and nefazodone to exemplify the complexity of the underlying mechanisms of reactive metabolite mediated hepatotoxicity. One of the key gaps moving forward is our understanding of and ability to predict the contribution of immune activation in idiosyncratic adverse drug reactions. Sections are included on the clinical phenotypes of immune mediated idiosyncratic adverse drug reactions and on the present understanding of immune activation by reactive metabolites. The advances being made in microphysiological systems have a great potential to transform our ability to risk assess reactive metabolites, and an overview of the key components of these systems is presented. Finally, the potential impact of systems pharmacology approaches in reactive metabolite risk assessments is highlighted.
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