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富勒烯的抗原性:针对富勒烯的特异性抗体及其特性

Antigenicity of fullerenes: antibodies specific for fullerenes and their characteristics.

作者信息

Chen B X, Wilson S R, Das M, Coughlin D J, Erlanger B F

机构信息

Department of Microbiology, Columbia University, 701 West 168 Street, New York, NY 10032, USA.

出版信息

Proc Natl Acad Sci U S A. 1998 Sep 1;95(18):10809-13. doi: 10.1073/pnas.95.18.10809.

Abstract

The recent interest in using Buckminsterfullerene (fullerene) derivatives in biological systems raises the possibility of their assay by immunological procedures. This, in turn, leads to the question of the ability of these unprecedented polygonal structures, made up solely of carbon atoms, to induce the production of specific antibodies. Immunization of mice with a C60 fullerene derivative conjugated to bovine thyroglobulin yielded a population of fullerene-specific antibodies of the IgG isotype, showing that the immune repertoire was diverse enough to recognize and process fullerenes as protein conjugates. The population of antibodies included a subpopulation that crossreacted with a C70 fullerene as determined by immune precipitation and ELISA procedures. These assays were made possible by the synthesis of water-soluble fullerene derivatives, including bovine and rabbit serum albumin conjugates and derivatives of trilysine and pentalysine, all of which were characterized as to the extent of substitution and their UV-Vis spectra. Possible interactions of fullerenes with the combining sites of IgG are discussed based on the physical chemistry of fullerenes and previously described protein-fullerene interactions. They remain to be confirmed by the isolation of mAbs for x-ray crystallographic studies.

摘要

近期对在生物系统中使用巴克敏斯特富勒烯(富勒烯)衍生物的关注,引发了通过免疫程序对其进行检测的可能性。这反过来又引出了一个问题,即这些仅由碳原子构成的前所未有的多边形结构,是否有能力诱导产生特异性抗体。用与牛甲状腺球蛋白偶联的C60富勒烯衍生物免疫小鼠,产生了一群IgG同种型的富勒烯特异性抗体,表明免疫库足够多样化,能够将富勒烯识别并作为蛋白质偶联物进行处理。通过免疫沉淀和ELISA程序确定,这群抗体中包括一个与C70富勒烯发生交叉反应的亚群。这些检测因水溶性富勒烯衍生物的合成而成为可能,这些衍生物包括牛血清白蛋白和兔血清白蛋白偶联物以及三赖氨酸和五赖氨酸的衍生物,所有这些都对取代程度及其紫外可见光谱进行了表征。基于富勒烯的物理化学性质以及先前描述的蛋白质 - 富勒烯相互作用,讨论了富勒烯与IgG结合位点可能的相互作用。它们仍有待通过分离单克隆抗体进行X射线晶体学研究来证实。

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