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首页> 外文期刊>Bulletin of the Korean Chemical Society >Liquid Crystal Droplet Patterns to Monitor Catalase Activity at Femtomolar Levels
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Liquid Crystal Droplet Patterns to Monitor Catalase Activity at Femtomolar Levels

机译:液晶液滴模式,用于监测飞摩尔水平的过氧化氢酶活性

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Catalase (CAT) decomposes hydrogen peroxide that is toxic to the body. In this study, simple and sensitive detector has been developed for observing catalase activity using liquid crystal droplet system. Microscale LC droplet patterns are formed by spreading aldehyde-doped nematic liquid crystal on pre-treated glass slides. When hydrogen peroxide is added, aldehyde is oxidized and amphiphiles are formed. Dodecanoates cause the pattern to transit from bright to dark as they self-assemble to form a carboxyalte monolayer at the interface. When a drop of pre-incubated CAT and hydrogen peroxide mixture is placed onto the pattern, bright fan-shape is observed. This planar optical appearance indicates that catalase has decomposed hydrogen peroxide. Compared to the detectors that have been previously developed, this system is more sensitive with detection limit of 1fM. This research suggests further studies to be on LC droplet patterning to develop highly sensitive and methodologically simple sensors for various chemicals.
机译:过氧化氢酶(CAT)分解对人体有毒的过氧化氢。在这项研究中,开发了一种简单灵敏的检测器,用于使用液晶微滴系统观察过氧化氢酶的活性。通过在预处理的载玻片上散布掺醛的向列液晶来形成微米级LC液滴图案。当添加过氧化氢时,醛被氧化并形成两亲物。十二烷酸酯自组装在界面处形成羧基铝酸酯单层时,会导致图案从明亮过渡到黑暗。将一滴预孵育的CAT和过氧化氢混合物滴到图案上时,观察到明亮的扇形。该平面光学外观表明过氧化氢酶已分解过氧化氢。与以前开发的检测器相比,该系统灵敏度更高,检测极限为1fM。这项研究建议对LC液滴图案进行进一步的研究,以开发出高度灵敏且方法简单的各种化学传感器。

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