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抗体对氟代半抗原和抗原的识别。

Antibody recognition of fluorinated haptens and antigens.

机构信息

Center of Integrated Protein Science Munich (CIPSM), Department of Chemistry, Ludwig-Maximilians University, Butenandtstrasse 5-13, D-81377 Munich, Germany.

出版信息

Curr Top Med Chem. 2014;14(7):840-54. doi: 10.2174/1568026614666140202203811.

Abstract

Regarding its many roles for lead optimization and drug development, fluorine will definitely continue to be of major importance in medicinal chemistry. With safe and selective fluorinating agents at hands, the use of fluorinated compounds has become routine in pharmaceutical and material sciences and many of the well-appreciated organofluorine inductive effects are now understood. In contrast, our knowledge of how fluorine affects binding affinity and selectivity of proteins and antibodies at the molecular level is by far less advanced. Thus, applications of fluorinated haptens and antigens in the mapping of binding epitopes for various antibodies of diagnostic and therapeutic relevance, as well as for the generation of immune modulating agents and ligands with enhanced T cell affinity are reviewed. Moreover, recent examples of vaccines against cocaine and cancer based on selectively fluorinated antigens with improved antigenic properties are presented.

摘要

关于氟在先导优化和药物开发中的诸多作用,它在药物化学中肯定会继续占据重要地位。随着安全、选择性氟代试剂的出现,氟化合物的使用已成为药物和材料科学中的常规手段,许多公认的有机氟诱导效应现在已经得到理解。相比之下,我们对氟在分子水平上如何影响蛋白质和抗体的结合亲和力和选择性的了解还远远不够。因此,综述了氟化半抗原和抗原在各种诊断和治疗相关抗体的结合表位作图、免疫调节剂和配体的生成以及增强 T 细胞亲和力方面的应用。此外,还介绍了基于具有改善抗原性的选择性氟化抗原的可卡因和癌症疫苗的最新实例。

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