Department of Food Safety and Quality Control, Research Institute of Food Science and Technology (RIFST), Mashhad, Iran.
Department of Food Safety and Quality Control, Research Institute of Food Science and Technology (RIFST), Mashhad, Iran.
Talanta. 2020 Jan 1;206:120246. doi: 10.1016/j.talanta.2019.120246. Epub 2019 Aug 12.
We develop a novel label-free liquid crystal (LC) aptasensor based on intrinsic properties of nematic LCs for ultra-sensitive detection of tetracycline. The aptasensor is assembled by immobilizing aptamers onto the glass slide modified with both homeotropic alignment and silane coupling agents. Designed aptasensor makes use of the target-induced aptamer conformational switching and disruption of the orientation of LCs which lead to an obvious change of the optical appearance from a dark to a bright response. We describe the optimized condition for maintaining the homeotropic orientation of LCs, which are suitable for the tetracycline detection. The average gray-scale intensities of polarizing optical microscopy images were calculated to quantitatively detect tetracycline concentrations. The aptasensor works especially at trace level of tetracycline as low as 0.5 pM. Moreover, the LC aptasensor was successfully used to detect tetracycline in the real milk sample. According to the results, the proposed LC aptasensor for tetracycline detection is simple, ultra-sensitive, label free and ease of preparation.
我们开发了一种基于向列相液晶固有特性的新型无标记液晶(LC)适体传感器,用于超灵敏检测四环素。该适体传感器通过将适体固定在经过垂直取向和平行取向修饰的玻璃片上而组装。设计的适体传感器利用目标诱导的适体构象转换和 LC 取向的破坏,导致光学外观从暗到亮的明显变化。我们描述了优化的 LC 保持垂直取向的条件,该条件适用于四环素的检测。通过计算偏光显微镜图像的平均灰度强度来定量检测四环素浓度。适体传感器在痕量水平的四环素检测中表现出色,检测下限低至 0.5 pM。此外,该 LC 适体传感器还成功用于检测实际牛奶样品中的四环素。根据结果,所提出的用于四环素检测的 LC 适体传感器具有简单、超灵敏、无标记和易于制备的特点。