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使用二次离子质谱法对抗体固定层的分子取向进行生物物理特性分析。

Biophysical characterization of the molecular orientation of an antibody-immobilized layer using secondary ion mass spectrometry.

机构信息

Program for Bio-Microsystem Technology, Korea University, 1, 5-ka, Anam-dong, Seongbuk-Gu, Seoul, 136-701, Republic of Korea.

出版信息

Analyst. 2011 Apr 7;136(7):1412-9. doi: 10.1039/c0an00672f. Epub 2011 Feb 15.

Abstract

The molecular orientation of antibody layers formed on separate solid matrices (e.g., gold-coated glass substrate) was characterized by means of time-of-flight secondary ion mass spectrometry (ToF-SIMS) in static mode. For comparison, three different antibody species, IgG, F(ab')(2), and Fab, were prepared, biotinylated in random and site-directed fashions, and immobilized on distinct streptavidin-coated surfaces. ToF-SIMS analyses of each antibody layer revealed that the secondary ion intensity peaks measured at the mass-to-charge (m/z) ratio 253, 325, and 647 were unique to the site-directly immobilized antibodies. The ions in the three peaks were detected neither from the streptavidin layer nor from the randomly prepared antibody, indicating that the insolubilized antibody layers constructed in the two different manners had distinct molecular arrangements. The antibody preparations were further tested for their binding characteristics in sandwich-type immunoassays, which showed that the site-directed antibodies consistently enhanced the detection capability comparing to those randomly prepared. Based on the analytical results of both the ToF-SIMS analysis and sandwich-type immunoassays, the site-directed antibody species were immobilized on the surfaces in a more orientated manner, with their antigen binding sites exposed to the bulk solution, than when random immobilization was used.

摘要

采用静态飞行时间二次离子质谱法(ToF-SIMS)对分别固定在固体基质(例如,金涂覆的玻璃基底)上的抗体层的分子取向进行了表征。为了进行比较,制备了三种不同的抗体,即 IgG、F(ab')(2)和 Fab,以随机和定点两种方式进行生物素化,并固定在不同的链霉亲和素涂覆的表面上。对每种抗体层的 ToF-SIMS 分析表明,在质荷比(m/z)比 253、325 和 647 处测量的二次离子强度峰是定点固定抗体所特有的。三个峰中的离子既不是从链霉亲和素层中检测到的,也不是从随机制备的抗体中检测到的,这表明以两种不同方式构建的不可溶解的抗体层具有不同的分子排列。进一步对这些抗体制剂进行三明治型免疫测定,结果表明,与随机制备的抗体相比,定点制备的抗体始终能增强检测能力。基于 ToF-SIMS 分析和三明治型免疫测定的分析结果,与随机固定相比,定点固定的抗体在表面上以更定向的方式固定,其抗原结合位点暴露于体相溶液中。

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