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Development of phenol detecting biosensor using PEG hydrogel microparticles

机译:PEG水凝胶微粒检测酚类生物传感器的研究

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In this study, a simple and sensitive detection method for phenols were investigated using poly(ethylene glycol) (PEG) hydrogel microarray entrapping quantum dot (QD) and tyrosinase enzyme. Hydrogel microarrays were fabricated by using photo-patterning methods, and size of resultant hydrogel micropattern was ranged from 10 to 300 ¿m. The enzymatic reaction used for the detection of phenol is the oxidation of phenolic compounds via tyrosinase. In such reaction, phenol is oxidized to o-quinone which is a classic electron accepting chemical that can quench the fluorescence of QDs. Accuracy of the system was verified by measurement of photoluminescence (PL) quenching in free solution state with different concentrations of phenol. The PL quenching of QDs was investigated by varying the molecular weight of PEG, and concentration of QDs and/or enzymes.
机译:在这项研究中,一种简单而灵敏的苯酚检测方法是使用包埋量子点(QD)和酪氨酸酶的聚(乙二醇)(PEG)水凝胶微阵列研究的。水凝胶微阵列通过使用光致图案化方法制造的,并且所得水凝胶微图案的大小范围为10到300μm。用于检测苯酚的酶促反应是通过酪氨酸酶氧化酚类化合物。在这种反应中,苯酚被氧化为邻醌,这是一种经典的电子接受化学物质,可以猝灭量子点的荧光。通过测量在自由溶液状态下用不同浓度的苯酚进行的光致发光(PL)猝灭来验证系统的准确性。通过改变PEG的分子量以及QD和/或酶的浓度来研究QD的PL猝灭。

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