Sakarellos-Daitsiotis Maria, Krikorian Dimitrios, Panou-Pomonis Eugenia, Sakarellos Constantinos
Department of Chemistry, Section of Organic Chemistry and Biochemistry, University of Ioannina, 45110 Ioannina, Greece.
Curr Top Med Chem. 2006;6(16):1715-35. doi: 10.2174/156802606778194190.
The rational design of artificial carriers for anchoring multiple copies of B and/or T cell epitopes, built-in vaccine adjuvants and "promiscuous" T cell epitopes for the construction of conjugates as antigenic substrates or potent immunogens has been the stimulus of intensive efforts nowadays. The unambiguous composition, the reliability and the versatility of the production of reconstituted antigens or immunogens has found a great number of biochemical applications in developing immunoassays of high sensitivity, specificity and reproducibility and in generating site-specific antibodies for usage as human vaccine candidates. In this review are summarized different types of artificial carriers currently used as dendrimers bearing branching segments, multimeric core matrices and templates with built-in folding devices. Emphasis is given to the construction and application of a helicoid-type Sequential Oligopeptide Carrier (SOCn) developed in our laboratory. The beneficial structural elements of SOCn induce a favorable arrangement of the conjugated peptides, which also retain their initial "active" conformation, so that potent antigens and immunogens are generated.
如今,合理设计用于锚定多个B和/或T细胞表位的人工载体、内置疫苗佐剂以及用于构建作为抗原底物或强效免疫原的缀合物的“混杂”T细胞表位,一直是大量研究工作的动力。重组抗原或免疫原生产的明确组成、可靠性和多功能性在开发高灵敏度、特异性和可重复性的免疫测定以及生成用作人类疫苗候选物的位点特异性抗体方面有大量生化应用。本综述总结了目前用作带有分支片段的树枝状聚合物、多聚体核心基质和具有内置折叠装置的模板的不同类型人工载体。重点介绍了我们实验室开发的螺旋型顺序寡肽载体(SOCn)的构建和应用。SOCn的有益结构元件诱导缀合肽形成有利排列,这些肽也保留其初始“活性”构象,从而产生强效抗原和免疫原。