Molecular Imaging Center, Department of Radiology, University of Southern California, Los Angeles, CA 90033, USA.
Adv Drug Deliv Rev. 2010 Aug 30;62(11):1005-22. doi: 10.1016/j.addr.2010.09.004. Epub 2010 Sep 17.
Positron emission tomography (PET) is one of the most rapidly growing areas of medical imaging, with many applications in the clinical management of patients with various diseases. The principal goal of PET imaging is to visualize, characterize, and measure biological processes at the cellular, subcellular, and molecular level in living subjects with non-invasive procedures. PET imaging takes advantage of the traditional diagnostic imaging techniques and introduces positron-emitting probes to determine the expression of indicative molecular targets at different stages of disease. During the last decade, advances in molecular biology have revealed an increasing number of potential molecular targets, including peptide receptors and peptide-related biomolecules. With the help of sophisticated bioconjugation and radiolabeling techniques, numerous peptide-based agents have been developed and evaluated for delivery of PET radionuclides to the specific molecular targets in preclinical and clinical studies. As compared to macromolecules, such as proteins or antibodies, low-molecular-weight peptides have their distinctive advantages and predominantly demonstrate their favorable pharmacokinetics for in vivo PET applications. This review summarizes the criteria of peptide-based PET probes design, the selection of radioisotopes, labeling methods, and provides an overview of the current status and trends in the development of target-specific peptide-based probes with respect to their unique PET imaging applications.
正电子发射断层扫描(PET)是医学成像领域发展最快的领域之一,在各种疾病患者的临床管理中有许多应用。PET 成像的主要目标是利用传统的诊断成像技术并引入正电子发射探针,以在活体内非侵入性地对细胞、亚细胞和分子水平的生物过程进行可视化、特征化和测量。在过去十年中,分子生物学的进步揭示了越来越多的潜在分子靶标,包括肽受体和肽相关生物分子。借助复杂的生物共轭和放射性标记技术,已经开发出并评估了许多基于肽的试剂,用于将 PET 放射性核素递送至临床前和临床研究中特定的分子靶标。与大分子(如蛋白质或抗体)相比,低分子量肽具有其独特的优势,并且主要表现出其有利的药代动力学特性,适用于体内 PET 应用。本文综述了基于肽的 PET 探针设计、放射性同位素选择、标记方法的标准,并概述了针对其独特的 PET 成像应用的针对特定靶标的基于肽的探针的开发的现状和趋势。