King's College London, Division of Imaging Sciences, Rayne Institute, St Thomas' Hospital, 4th Floor Lambeth Wing, London, SE1 7EH, UK.
Target Oncol. 2009 Sep;4(3):183-97. doi: 10.1007/s11523-009-0120-2. Epub 2009 Sep 25.
Molecular imaging using radionuclides has brought about the possibility to image a wide range of molecular processes using radiotracers injected into the body at very low concentrations that should not perturb the processes being studied. Examples include specific peptide receptor expression, angiogenesis, multi drug resistance, hypoxia, glucose metabolism, and many others. This article presents an overview, aimed at the non-specialist in imaging, of the radionuclide imaging technologies positron emission tomography and single photon radionuclide imaging, and some of the molecules labeled with gamma- and positron-emitting radioisotopes that have been, or are being, developed for research and clinical applications in cancer.
放射性核素的分子成像带来了这样一种可能,即通过向体内注射极低浓度的放射性示踪剂来对广泛的分子过程进行成像,而这些示踪剂不应干扰正在研究的过程。这些过程包括特定的肽受体表达、血管生成、多药耐药性、缺氧、葡萄糖代谢等。本文旨在为非影像学专业人士提供概述,介绍正电子发射断层扫描和单光子放射性核素成像这两种放射性核素成像技术,以及一些已被开发或正在开发用于癌症研究和临床应用的、用伽马和正电子放射性同位素标记的分子。