Wu Po-Chang, Pai Chao-Ping, Lee Mon-Juan, Lee Wei
Institute of Imaging and Biomedical Photonics, College of Photonics, National Yang Ming Chiao Tung University, Guiren Dist., Tainan 711010, Taiwan.
Department of Bioscience Technology, Chang Jung Christian University, Guiren Dist., Tainan 711301, Taiwan.
Biosensors (Basel). 2021 Oct 6;11(10):374. doi: 10.3390/bios11100374.
A liquid crystal (LC)-based single-substrate biosensor was developed by spin-coating an LC thin film on a dimethyloctadecyl[3-(trimethoxysilyl)propyl]ammonium chloride (DMOAP)-decorated glass slide. Compared with the conventional sandwiched cell configuration, the simplified procedure for the preparation of an LC film allows the film thickness to be precisely controlled by adjusting the spin rate, thus eliminating personal errors involved in LC cell assembly. The limit of detection (LOD) for bovine serum albumin (BSA) was lowered from 10 g/mL with a 4.2-μm-thick sandwiched cell of the commercial LC E7 to 10 g/mL with a 4.2-μm-thick spin-coated E7 film and further to 10 g/mL by reducing the E7 film thickness to 3.4 μm. Moreover, by exploiting the LC film of the highly birefringent nematic LC HDN in the immunodetection of the cancer biomarker CA125, an LOD comparable to that determined with a sandwiched HDN cell was achieved at 10 g/mL CA125 using a capture antibody concentration an order of magnitude lower than that in the LC cell. Our results suggest that employing spin-coated LC film instead of conventional sandwiched LC cell provides a more reliable, reproducible, and cost-effective single-substrate platform, allowing simple fabrication of an LC-based biosensor for sensitive and label-free protein detection and immunoassay.
通过在氯化二甲基十八烷基[3-(三甲氧基硅基)丙基]铵(DMOAP)修饰的载玻片上旋涂液晶(LC)薄膜,开发了一种基于液晶的单基板生物传感器。与传统的夹心式液晶盒结构相比,制备液晶薄膜的简化过程使得可以通过调节旋涂速率精确控制薄膜厚度,从而消除了液晶盒组装过程中涉及的人为误差。牛血清白蛋白(BSA)的检测限(LOD)从使用商用液晶E7的4.2μm厚夹心式液晶盒时的10μg/mL降低到使用4.2μm厚旋涂E7薄膜时的10μg/mL,通过将E7薄膜厚度减小到3.4μm进一步降低到10μg/mL。此外,通过在癌症生物标志物CA125的免疫检测中利用高双折射向列型液晶HDN的液晶薄膜,在使用比液晶盒中低一个数量级的捕获抗体浓度时,在10μg/mL CA125处实现了与夹心式HDN液晶盒相当的检测限。我们的结果表明,采用旋涂液晶薄膜代替传统的夹心式液晶盒提供了一个更可靠、可重复且具有成本效益的单基板平台,允许简单制造用于灵敏且无标记蛋白质检测和免疫测定的基于液晶的生物传感器。