Wang Jingli, Maurer Laura
ALZA Corporation, Mountain View, CA 94040, USA.
Curr Top Med Chem. 2005;5(11):1053-75. doi: 10.2174/156802605774297056.
Positron Emission Tomography (PET) is a sophisticated nuclear imaging modality that affords researchers the ability to conduct both functional and molecular imaging on biological and biochemical processes in vivo. In functional imaging, biological parameters such as metabolic rate and perfusion that can be altered by disease or treatment are monitored. In molecular imaging, PET can be used to examine and quantify cellular events such as cell trafficking, receptor binding and gene expression. Therefore, PET is an important tool to elucidate mechanisms associated with diseases and drug actions. In addition to PET, microPET is designed to image small animals. A great tool to facilitate preclinical studies and basic research, it can eliminate the need of sacrificing the animal by enabling noninvasive, longitudinal, and serial studies. The results from preclinical studies using microPET can be directly correlated with clinical studies using PET, thus bridging the chasm that used to separate the 2 pivotal phases in drug development. This review first describes the basic principles of PET and compares it to other imaging modalities. Then, PET procedures and PET isotopes and tracers synthesis are outlined. Next, functional and molecular PET imaging applications in the fields of oncology, neurology, and cardiology in both humans and animals are presented. Spanning a wide range, these applications demonstrate the versatility of PET and how it can be used to accelerate drug discovery and development. Finally, the advantages and limitations of PET and how it can be used in the future to minimize risks of drug development are discussed.
正电子发射断层扫描(PET)是一种先进的核成像技术,它使研究人员能够在体内对生物和生化过程进行功能成像和分子成像。在功能成像中,可监测诸如代谢率和灌注等会因疾病或治疗而改变的生物学参数。在分子成像中,PET可用于检查和量化诸如细胞迁移、受体结合和基因表达等细胞事件。因此,PET是阐明与疾病和药物作用相关机制的重要工具。除了PET,微型PET专为小动物成像而设计。它是促进临床前研究和基础研究的有力工具,通过实现非侵入性、纵向和系列研究,可避免牺牲动物。使用微型PET进行临床前研究的结果可直接与使用PET的临床研究相关联,从而弥合了过去在药物开发中分隔两个关键阶段的鸿沟。本综述首先描述PET的基本原理,并将其与其他成像技术进行比较。然后,概述PET程序以及PET同位素和示踪剂的合成。接下来,介绍PET在人类和动物肿瘤学、神经病学和心脏病学领域的功能和分子成像应用。这些应用范围广泛,展示了PET的多功能性以及它如何用于加速药物发现和开发。最后,讨论了PET的优点和局限性以及它未来如何用于将药物开发风险降至最低。