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首页> 外文期刊>Bulletin of the Korean Chemical Society >Liquid Crystal Based Optical Sensor for Imaging Trypsin Activity at Interfaces Between Aqueous Phases and Thermotropic Liquid Crystals
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Liquid Crystal Based Optical Sensor for Imaging Trypsin Activity at Interfaces Between Aqueous Phases and Thermotropic Liquid Crystals

机译:基于液晶的光学传感器,用于在水相和热致液晶之间的界面上对胰蛋白酶活性进行成像

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摘要

In this study, we developed a liquid crystal (LC)-based optical sensor for monitoring enzymatic activity through orientational changes in liquid crystals (LCs) coupled to the properties of a poly-L-lysine (PLL)-based polymeric membrane. We prepared a PLL-based polymeric membrane at the planar interface between the thermotropic liquid crystal and aqueous phases. The PLL-based polymeric membrane was obtained by contacting the PLL solution with water immiscible LCs, 4-cyano-4`-pentyl-biphenyl (5CB) doped with adipoyl chloride. We then investigated the membrane properties by examining the permeability of the membrane to phospholipids, 1,2-didodecanoyl-rac-glycero-3-phosphocholine (DLPC). The permeability of the membrane to transport phospholipids was monitored through the orientational transition of 5CB in contact with the dispersions of DLPC. Since trypsin can enzymatically catalyze the hydrolysis of PLL, we incubated an aqueous trypsin solution with the membrane for 2 h at room temperature to cause an increase in the permeability of the polymeric membrane to DLPC. As a result, a bright to dark optical shift of LCs was observed, which implied that an enzymatic reaction between trypsin and PLL-based membrane occurred. Two control experiments using chymotrypsin and bovine serum albumin (BSA) revealed no sign of improved permeability based on the orientational transition of LCs.
机译:在这项研究中,我们开发了一种基于液晶(LC)的光学传感器,用于通过液晶(LC)的方向变化与基于聚L-赖氨酸(PLL)的聚合物膜的性能相结合来监控酶活性。我们在热致液晶和水相之间的平面界面处制备了基于PLL的聚合物膜。通过使PLL溶液与水不混溶的LC,掺杂有己二酰氯的4-氰基-4'-戊基联苯(5CB)接触,即可获得基于PLL的聚合物膜。然后,我们通过检查膜对磷脂1,2-二十二烷酰基-rac-甘油-3-磷酸胆碱(DLPC)的渗透性来研究膜的性质。通过与DLPC分散体接触的5CB的取向转变来监测膜转运磷脂的渗透性。由于胰蛋白酶可以酶促催化PLL的水解,因此我们在室温下将胰蛋白酶水溶液与膜孵育2小时,以增加聚合物膜对DLPC的渗透性。结果,观察到了LC的明暗变化,这暗示着胰蛋白酶和基于PLL的膜之间发生了酶促反应。使用胰凝乳蛋白酶和牛血清白蛋白(BSA)的两个对照实验表明,基于LC的方向转变,没有发现通透性提高的迹象。

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