Laboratory of Molecular Imaging and Nanomedicine, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, MD 20892, USA.
Amino Acids. 2011 Nov;41(5):1081-92. doi: 10.1007/s00726-010-0546-y. Epub 2010 Mar 16.
One main issue with peptide-based molecular imaging probes is their relatively low tumor affinity and short retention time. To improve peptide binding affinity, multivalency approach has been introduced. Traditionally, this approach involves the use of peptide homodimers or homomultimers in which peptide ligands of the same type are constructed with suitable linkers. Recently, a new approach using peptide heterodimers has emerged as a promising method for targeting multi-receptor over-expressed tumor cells. Significant affinity enhancements have been observed with peptide heterodimers compared with their parent peptide monomers. In a peptide heterodimer, two different peptide ligands capable of targeting two different receptors are covalently linked. The binding modes of peptide heterodimers can be monovalent or bivalent depending on whether simultaneous binding of two ligands can be achieved. Increased local ligand concentration and improved binding kinetics contribute to enhanced binding in both monovalent- and bivalent binding modes, while multivalency effect also plays an important role in bivalent binding mode. As many tumors overexpress multiple receptors, more peptide heterodimer-based molecular imaging probes are expected to be developed in future. This review article will discuss the peptide homodimers and heterodimers for molecular imaging with special emphasis on peptide heterodimers.
基于肽的分子成像探针的一个主要问题是其相对较低的肿瘤亲和力和较短的保留时间。为了提高肽的结合亲和力,已经引入了多价方法。传统上,这种方法涉及使用肽同源二聚体或同多聚体,其中相同类型的肽配体通过合适的接头构建。最近,使用肽异二聚体的新方法作为靶向多受体过表达肿瘤细胞的有前途的方法出现了。与亲本肽单体相比,肽异二聚体观察到显著的亲和力增强。在肽异二聚体中,两个不同的肽配体能够靶向两个不同的受体,通过共价键连接。肽异二聚体的结合模式可以是单价的或二价的,这取决于是否可以同时实现两个配体的结合。局部配体浓度的增加和结合动力学的改善有助于在单价和二价结合模式下增强结合,而多价效应在二价结合模式中也起着重要作用。由于许多肿瘤过表达多种受体,预计未来将开发更多基于肽异二聚体的分子成像探针。本文将讨论用于分子成像的肽同源二聚体和异二聚体,特别强调肽异二聚体。