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外力场中的抗体-抗原交换平衡:无试剂生物传感器的设计

Antibody-antigen exchange equilibria in a field of an external force: design of reagentless biosensors.

作者信息

Monson Christopher F, Driscoll Laura N, Bennion Eliot, Miller Cary J, Majda Marcin

机构信息

Department of Chemistry, University of California, Berkeley, Berkeley, California 94720-1460, USA.

出版信息

Anal Chem. 2009 Sep 1;81(17):7510-4. doi: 10.1021/ac9010759.

Abstract

This correspondence presents a new strategy for detecting biological molecules that relies on competitive exchange interactions of an analyte with two-component molecular tethers attaching superparamagnetic microspheres (4 microm in diameter) to a sensor surface. The individual tethers consist of an antibody-antigen complex and are designed to selectively detect antigenic proteins in a sensitive reagentless fashion. In order to impart a driving force to the otherwise free energy neutral antibody-antigen exchange equilibrium, a small mechanical force of approximately 10 pN was applied to stretch the antibody-antigen tethers using a massively parallel magnetic tweezers device. The experimental work was carried out with human cardiac troponin I. This serum heart attack marker was used as an example of analytes of credible relevance to biomedical diagnostics. The initial results illustrate the functioning of a cardiotroponin sensor and offer a preliminary estimate of its sensitivity of 16 pM.

摘要

本信函介绍了一种检测生物分子的新策略,该策略依赖于分析物与将超顺磁性微球(直径4微米)连接到传感器表面的双组分分子系链之间的竞争性交换相互作用。单个系链由抗体-抗原复合物组成,旨在以灵敏且无需试剂的方式选择性检测抗原蛋白。为了给原本自由能中性的抗体-抗原交换平衡施加驱动力,使用大规模平行磁镊装置施加约10皮牛的小机械力来拉伸抗体-抗原系链。实验工作以人心脏肌钙蛋白I进行。这种血清心脏病发作标志物被用作与生物医学诊断具有可靠相关性的分析物示例。初步结果说明了心肌肌钙蛋白传感器的功能,并提供了其16皮摩尔灵敏度的初步估计值。

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