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Color Change of Phenol Red by Integrated Smart Phone Camera as a Tool for the Determination of Neurotoxic Compounds

机译:集成智能手机摄像头作为测定神经毒性化合物的工具对酚红的颜色变化

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摘要

The use of a cell phone as a detection system is easy, simple and does not require trained personnel, which is in contrast to standard laboratory instruments. This paper deals with immobilization of acetylcholinesterase (AChE) in a gelatin matrix, and phenol red, as an indicator of AChE activity, is used in order to establish a method that is easily compatible with a camera device. AChE splits acetylcholine into choline and acetic acid, which changes the pH of a medium, resulting in a phenol red color change. The coloration changed in presence of an AChE inhibitor. Measurements were performed on 3D-printed, tube-shaped holder, and digital photography, with subsequent analysis of red-green-blue (RGB), served for assay purposes. Calibration of AChE inhibitors, tacrine and galantamine, was performed, with limit of detection equal to 1.1 nM and 1.28 µM, respectively. Interferences were also measured, resulting in a proof-of-method stability. The method was further successfully validated for the standard Ellman’s assay, and verified on murine plasma samples spiked with inhibitors.
机译:与标准实验室仪器相反,将手机用作检测系统非常容易,简单,并且不需要经过培训的人员。本文研究了乙酰胆碱酯酶(AChE)在明胶基质中的固定化,酚红作为AChE活性的指标,是为了建立一种易于与照相设备兼容的方法。 AChE将乙酰胆碱分解成胆碱和乙酸,从而改变培养基的pH值,导致酚红变色。在AChE抑制剂的存在下颜色会改变。测量是在3D打印的管状支架和数码照片上进行的,随后对红绿蓝(RGB)进行分析,用于分析目的。进行了AChE抑制剂他克林和加兰他敏的校准,检出限分别等于1.1 nM和1.28 µM。还测量了干扰,从而产生了方法证明的稳定性。该方法进一步成功地用于标准Ellman分析,并在掺有抑制剂的鼠血浆样品中进行了验证。

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