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放射自显影术:药物发现和开发中的高分辨率分子成像。

Autoradiography: high-resolution molecular imaging in pharmaceutical discovery and development.

机构信息

Quest Pharmaceutical Services, 110 Executive Drive, Suite 7, Newark, Delaware, 19702, USA.

出版信息

Expert Opin Drug Discov. 2007 Apr;2(4):503-14. doi: 10.1517/17460441.2.4.503.

Abstract

Autoradiography (ARG) is a powerful, high resolution, quantitative molecular imaging technique used to study the tissue distribution of radiolabeled xenobiotics in biologic models. ARG involves the close apposition of solid specimens containing a radiolabeled substance to a detector layer, such as photographic emulsions, film, phosphor imaging plates and direct nuclear imagers/counters. The two basic types include: macroautoradiography, which is imaging of organs, organ systems and/or whole-body sections (WBA) and microautoradiography (MARG), which provides the localization of radioactivity at the cellular level. ARG has supported drug discovery and development efforts for many years and has provided pivotal decision making information for pharmaceutical research. This paper presents a review of the techniques, study designs and present considerations for use of WBA and MARG to support today's drug discovery and development efforts. In addition, this review comments on the integration of the ex vivo ARG and in vivo molecular imaging techniques to serve pharmaceutical discovery and development in the future.

摘要

放射自显影术(ARG)是一种强大的、高分辨率的定量分子成像技术,用于研究放射性标记的外源物质在生物模型中的组织分布。ARG 涉及将含有放射性物质的固体标本与探测器层(如照相乳胶、胶片、磷光成像板和直接核成像仪/计数器)紧密贴合。ARG 有两种基本类型:宏观放射自显影术,用于对器官、器官系统和/或全身体切片(WBA)成像;微观放射自显影术(MARG),用于提供细胞水平放射性的定位。ARG 多年来一直支持药物发现和开发工作,并为药物研究提供了关键决策信息。本文综述了 WBA 和 MARG 的技术、研究设计和应用考虑因素,以支持当今的药物发现和开发工作。此外,本文还评论了将离体 ARG 与体内分子成像技术整合,以服务于未来的药物发现和开发。

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