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Electric-field-assisted signal amplification for label-free liquid-crystal-based detection of biomolecules

机译:电场辅助信号放大用于基于无标记液晶的生物分子检测

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摘要

The fundamental principle of liquid-crystal (LC)-based biosensing is the sensitive response of LC orientation to external stimuli. Biomolecules such as proteins or DNAs immobilized on the glass substrate of a LC cell are detected through disrupting the LC alignment and, in turn, altering the birefringence, resulting in changes in the optical texture that can be readily observed under a polarizing optical microscope. With an additional weak electric field across a sandwiched LC cell, we demonstrate in this study a novel label-free biodetection technique with amplified signal and improved detection limit. By applying the binarization analysis as the quantitative approach, the increase in the light leakage area in the optical texture of LCs with increasing amount of biomolecules can be quantitated with a bright-area-ratio (BAR)-versus-concentration curve. The reported biosensing technique exploits both the optical and electrical properties of LCs and is potentially applicable to other LC-based rapid screening and bioassays.
机译:基于液晶(LC)的生物传感的基本原理是LC方向对外部刺激的敏感响应。通过破坏LC排列并进而改变双折射来检测固定在LC细胞玻璃基板上的生物分子,例如蛋白质或DNA,从而改变双折射,从而导致可以在偏振光学显微镜下轻松观察到的光学质地的变化。借助夹层LC电池上的附加弱电场,我们在这项研究中证明了一种新颖的无标记生物检测技术,该技术具有放大的信号和改善的检测限。通过将二值化分析用作定量方法,可以使用亮面积比(BAR)对浓度曲线来量化LC光学结构中光泄漏面积随生物分子数量的增加而增加的情况。报道的生物传感技术充分利用了LC的光学和电学性质,并可能适用于其他基于LC的快速筛选和生物测定。

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