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HLA 转基因小鼠:在重现药物特异质毒性中的应用。

HLA transgenic mice: application in reproducing idiosyncratic drug toxicity.

机构信息

Laboratory of Biopharmaceutics, Graduate School of Pharmaceutical Sciences, Chiba University, Chiba, Japan.

Laboratory of Cancer Biology and Immunology, Section of Host Defenses, Institute of Natural Medicine, University of Toyama, Toyama, Japan.

出版信息

Drug Metab Rev. 2020 Nov;52(4):540-567. doi: 10.1080/03602532.2020.1800725. Epub 2020 Aug 27.

Abstract

Various types of transgenic mice carrying either class I or II human leukocyte antigen (HLA) molecules are readily available, and reports describing their use in a variety of studies have been published for more than 30 years. Examples of their use include the discovery of HLA-specific antigens against viral infection as well as the reproduction of HLA-mediated autoimmune diseases for the development of therapeutic strategies. Recently, HLA transgenic mice have been used to reproduce HLA-mediated idiosyncratic drug toxicity (IDT), a rare and unpredictable adverse drug reaction that can result in death. For example, abacavir-induced IDT has successfully been reproduced in HLA-B*57:01 transgenic mice. Several reports using HLA transgenic mice for IDT have proven the utility of this concept for the evaluation of IDT using various HLA allele combinations and drugs. It has become apparent that such models may be a valuable tool to investigate the mechanisms underlying HLA-mediated IDT. This review summarizes the latest findings in the area of HLA transgenic mouse models and discusses the current challenges that must be overcome to maximize the potential of this unique animal model.

摘要

各种类型的携带 I 类或 II 类人白细胞抗原 (HLA) 分子的转基因小鼠已经很容易获得,并且已经有 30 多年的时间来发表描述它们在各种研究中的使用的报告。它们的用途包括发现针对病毒感染的 HLA 特异性抗原以及复制 HLA 介导的自身免疫性疾病以开发治疗策略。最近,HLA 转基因小鼠已被用于重现 HLA 介导的药物特异性毒性 (IDT),这是一种罕见且不可预测的药物不良反应,可能导致死亡。例如,阿巴卡韦诱导的 IDT 已成功在 HLA-B*57:01 转基因小鼠中重现。使用 HLA 转基因小鼠进行 IDT 的几项报告证明了该概念在使用各种 HLA 等位基因组合和药物评估 IDT 方面的实用性。显然,此类模型可能是研究 HLA 介导的 IDT 机制的有价值的工具。本文综述了 HLA 转基因小鼠模型领域的最新发现,并讨论了克服这些挑战以最大程度发挥这种独特动物模型潜力的必要性。

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