Nguyen Tan Tai, Han Gyeo-Re, Jang Chang-Hyun, Ju Heongkyu
Department of Bionano Technology, Gachon University, Seongnam-City, South Korea.
Department of Nano-Chemistry, Gachon University, Seongnam-City, South Korea.
Int J Nanomedicine. 2015 Aug 25;10 Spec Iss(Spec Iss):25-32. doi: 10.2147/IJN.S88286. eCollection 2015.
We present a polarization-sensitive optical detection platform for label-free quantitative optical biosensing diagnosis using liquid crystals (LCs). This is capable of determining quantitatively the optical birefringence of optical cells containing LCs, whose orientation depends on the immobilized biomolecules.
This technique uses a polarization-dependent double-port detection without any polarizer at a single wavelength and removes the need of aligning optical cells of LCs in the azimuthal direction, with respect to the light path through the optical cell. Thus, this technique enables a stand-alone detection in a relatively compact format without an additional optical instrument, such as a retardation compensator, a Michael-Levy chart, and a spectrophotometer, in order to determine the optical birefringence quantitatively.
We demonstrate that bovine serum albumin immobilized on the gold surface of the cell hybrid interfaces that support both homeotropic and planar anchoring of LCs causes optical phase retardation change which can be determined quantitatively. We also provide estimation of the zenithal orientation of LCs near the gold surface of the hybrid interfaces, based on the phase retardation determined. The estimated limit of bovine serum albumin detection is approximately 2.1 μM.
This optical technique with LCs can serve an optical platform for label-free quantitative diagnosis of proteins in a real time manner.
我们展示了一种用于使用液晶(LC)进行无标记定量光学生物传感诊断的偏振敏感光学检测平台。这能够定量测定包含液晶的光学单元的光学双折射,其取向取决于固定的生物分子。
该技术在单一波长下使用无任何偏振器的偏振相关双端口检测,并且无需相对于穿过光学单元的光路在方位角方向上对准液晶的光学单元。因此,该技术能够以相对紧凑的形式进行独立检测,而无需额外的光学仪器,如延迟补偿器、迈克尔 - 利维图和分光光度计,以便定量测定光学双折射。
我们证明,固定在支持液晶垂直和平行取向的细胞杂交界面金表面上的牛血清白蛋白会导致可定量确定的光学相位延迟变化。我们还基于确定的相位延迟提供了杂交界面金表面附近液晶天顶取向的估计。牛血清白蛋白检测的估计极限约为2.1μM。
这种使用液晶的光学技术可以作为一个光学平台,用于实时无标记定量诊断蛋白质。