Solon Eric G
QPS, LLC, 110 Executive Drive, Suite 7, Newark, DE, USA,
Cell Tissue Res. 2015 Apr;360(1):87-107. doi: 10.1007/s00441-014-2093-4. Epub 2015 Jan 22.
The use of radiolabeled drug compounds offers the most efficient way to quantify the amount of drug and/or drug-derived metabolites in biological samples. Autoradiography is a technique using X- ray film, phosphor imaging plates, beta imaging systems, or photo-nuclear emulsion to visualize molecules or fragments of molecules that have been radioactively labeled, and it has been used to quantify and localize drugs in tissues and cells for decades. Quantitative whole-body autoradiography or autoradioluminography (QWBA) using phosphor imaging technology has revolutionized the conduct of drug distribution studies by providing high resolution images of the spatial distribution and matching tissue concentrations of drug-related radioactivity throughout the body of laboratory animals. This provides tissue-specific pharmacokinetic (PK) compartmental analysis which has been useful in toxicology, pharmacology, and drug disposition/patterns, and to predict human exposure to drugs and metabolites, and also radioactivity, when a human radiolabeled drug study is necessary. Microautoradiography (MARG) is another autoradiographic technique that qualitatively resolves the localization of radiolabeled compounds to the cellular level in a histological preparation. There are several examples in the literature of investigators attempting to obtain drug concentration data from MARG samples; however, there are technical issues which make that problematic. These issues will be discussed. This review will present a synopsis of both techniques and examples of how they have been used for drug research in recent years.
使用放射性标记的药物化合物是定量生物样品中药物和/或药物衍生代谢物含量的最有效方法。放射自显影术是一种利用X射线胶片、磷光成像板、β成像系统或光核乳胶来可视化已被放射性标记的分子或分子片段的技术,几十年来一直用于定量和定位组织和细胞中的药物。使用磷光成像技术的定量全身放射自显影术或放射自发光成像术(QWBA)通过提供实验动物全身药物相关放射性的空间分布和匹配组织浓度的高分辨率图像,彻底改变了药物分布研究的开展方式。这提供了组织特异性药代动力学(PK)房室分析,在毒理学、药理学和药物处置/模式方面很有用,并且在需要进行人体放射性标记药物研究时,可用于预测人体对药物和代谢物以及放射性的暴露情况。显微放射自显影术(MARG)是另一种放射自显影技术,可在组织学制剂中将放射性标记化合物的定位定性地解析到细胞水平。文献中有几个研究人员试图从MARG样品中获取药物浓度数据的例子;然而,存在一些技术问题使得这一过程存在困难。将对这些问题进行讨论。本综述将概述这两种技术以及近年来它们在药物研究中的应用实例。