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抗体纳米管在图案化抗原阵列上的生物自下而上组装。

Biological bottom-up assembly of antibody nanotubes on patterned antigen arrays.

作者信息

Nuraje Nurxat, Banerjee Ipsita A, MacCuspie Robert I, Yu Lingtao, Matsui Hiroshi

机构信息

Department of Chemistry and Biochemistry at Hunter College and the Graduate Center, The City University of New York, New York, NY 10021, USA.

出版信息

J Am Chem Soc. 2004 Jul 7;126(26):8088-9. doi: 10.1021/ja048617u.

Abstract

Application of biotechnology in nanofabrication has an advantage to produce functional building-block materials that may not have synthetic counterparts. Here we introduced a new type of building block, antibody nanotubes, and demonstrated anchoring them on complementary antigen arrays via antibody-antigen recognition. Biological recognition between the antibody nanotubes and the antigen arrays permitted recognition-driven assembly of ordered nanotube arrays. The array of antigens was written by using the tip of an atomic force microscope (AFM) on alkylthiol self-assembled monolayer (SAM)-coated Au substrates via nanografting. After antigens were immobilized onto the shaved regions of the alkylthiol SAMs with the AFM tip, antibody nanotubes, produced by incubating antibodies in template nanotube solutions, were selectively attached onto the antigen regions. This technique is very useful when multiple building blocks are necessary to address specific locations on substrates because simultaneous immobilization of multiple antibody nanotubes at specific complementary binding positions can be achieved in a single process.

摘要

生物技术在纳米制造中的应用具有优势,能够生产出可能没有合成对应物的功能性基础材料。在此,我们引入了一种新型基础材料——抗体纳米管,并展示了通过抗体 - 抗原识别将它们锚定在互补抗原阵列上。抗体纳米管与抗原阵列之间的生物识别允许进行识别驱动的有序纳米管阵列组装。抗原阵列是通过使用原子力显微镜(AFM)的针尖,经由纳米接枝技术在烷基硫醇自组装单分子层(SAM)包覆的金基底上书写而成。在用AFM针尖将抗原固定到烷基硫醇SAMs的刮擦区域后,通过在模板纳米管溶液中孵育抗体产生的抗体纳米管被选择性地附着到抗原区域。当需要多个基础材料来定位基底上的特定位置时,这项技术非常有用,因为可以在单个过程中实现多个抗体纳米管在特定互补结合位置的同时固定。

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