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在交流电动力学石英晶体微天平(EKQCM)上提高蛋白质检测能力。

Improved protein detection on an AC electrokinetic quartz crystal microbalance (EKQCM).

机构信息

School of Biomedical Engineering, Science & Health Systems, Drexel University, Philadelphia, PA 19104, USA.

出版信息

Biosens Bioelectron. 2011 Apr 15;26(8):3391-7. doi: 10.1016/j.bios.2010.12.038. Epub 2010 Dec 31.

Abstract

Microscale electrodes supplied with an AC field can generate rotational fluid patterns known as AC electroosmosis. In the present study, this effect was used to improve antibody binding on a biosensor surface. Antibodies, like many other large, slow moving biomolecules, tend to suffer from transport limitations during a reaction with a surface-bound receptor. Stirring such reactions with AC electroosmosis can alleviate this transport limitation by bringing fresh reagent to the surface. For the first time, the use of this phenomenon was used to improve the capture of protein on a sensor. Directly adsorbed antibodies were bound to the surface of specially modified quartz crystal microbalances, known as electrokinetic QCMs (EKQCMs) and the signal was enhanced by about 5.6 times. Modification of the QCM resulted in little reduction of quality factor (from ∼ 5.3 k to ∼ 4.6k) and an increased sensitivity to viscosity changes (151%). Full immunoassays performed on electrodes fabricated on glass surfaces were used to ensure antibody function was not significantly degraded by the enhancement technique.

摘要

微尺度电极施加交流电场可产生旋转流体图案,称为交流电渗。在本研究中,该效应用于改善生物传感器表面上的抗体结合。抗体与表面结合的受体反应时,像许多其他大型、缓慢移动的生物分子一样,往往会受到传输限制。通过交流电渗搅拌这些反应可以通过将新鲜试剂带到表面来缓解这种传输限制。这是第一次利用这种现象来提高传感器上蛋白质的捕获量。直接吸附的抗体结合到特殊修饰的石英晶体微天平(称为电动 QCM(EKQCM))的表面上,信号增强了约 5.6 倍。QCM 的修饰几乎没有降低品质因数(从约 5.3k 到约 4.6k),并且对粘度变化的灵敏度提高了(151%)。在玻璃表面上制造的电极上进行的完整免疫测定用于确保增强技术不会显著降低抗体功能。

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