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在不进行动物试验的情况下确保安全性:体外人睾丸的案例。

Assuring safety without animal testing: the case for the human testis in vitro.

机构信息

Drug Safety R&D, Pfizer, Inc., Eastern Point Road, Groton, CT 06340, USA.

出版信息

Reprod Toxicol. 2013 Aug;39:63-8. doi: 10.1016/j.reprotox.2013.04.004. Epub 2013 Apr 21.

Abstract

From 15 to 17 June 2011, a dedicated workshop was held on the subject of in vitro models for mammalian spermatogenesis and their applications in toxicological hazard and risk assessment. The workshop was sponsored by the Dutch ASAT initiative (Assuring Safety without Animal Testing), which aims at promoting innovative approaches toward toxicological hazard and risk assessment on the basis of human and in vitro data, and replacement of animal studies. Participants addressed the state of the art regarding human and animal evidence for compound mediated testicular toxicity, reviewed existing alternative assay models, and brainstormed about future approaches, specifically considering tissue engineering. The workshop recognized the specific complexity of testicular function exemplified by dedicated cell types with distinct functionalities, as well as different cell compartments in terms of microenvironment and extracellular matrix components. This complexity hampers quick results in the realm of alternative models. Nevertheless, progress has been achieved in recent years, and innovative approaches in tissue engineering may open new avenues for mimicking testicular function in vitro. Although feasible, significant investment is deemed essential to be able to bring new ideas into practice in the laboratory. For the advancement of in vitro testicular toxicity testing, one of the most sensitive end points in regulatory reproductive toxicity testing, such an investment is highly desirable.

摘要

2011 年 6 月 15 日至 17 日,举行了一个专门的研讨会,主题是哺乳动物精子发生的体外模型及其在毒理学危害和风险评估中的应用。该研讨会由荷兰 ASAT 倡议(确保无动物测试的安全性)主办,旨在基于人类和体外数据以及替代动物研究来促进毒理学危害和风险评估的创新方法。与会者讨论了关于化合物介导的睾丸毒性的人体和动物证据的最新进展,回顾了现有的替代检测模型,并就未来的方法进行了头脑风暴,特别是考虑了组织工程。该研讨会认识到睾丸功能的特殊复杂性,例如具有不同功能的专用细胞类型,以及微环境和细胞外基质成分方面的不同细胞隔室。这种复杂性阻碍了替代模型领域的快速结果。然而,近年来已经取得了进展,组织工程的创新方法可能为体外模拟睾丸功能开辟新途径。虽然可行,但要将新的想法付诸实践,需要大量的投资,这对于体外睾丸毒性测试的发展是非常必要的,这是监管生殖毒性测试中最敏感的终点之一。

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