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A chitosan-based polyaniUne-Au nanocomposite biosensor for determination of cholesterol

机译:一种基于壳聚糖的聚苯胺-金纳米复合生物传感器,用于测定胆固醇

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A polyaniline-gold (PAni-Au) nanocomposite is chemically synthesized and impregnated in a chitosan matrix for immobilization of cholesterol oxidase on an indium tin oxide-coated glass plate for development of cholesterol biosensors. The PAni-Au nanocomposite is characterized for structural and thermal properties. Further the PAni-Au nanocomposite is used for cholesterol oxidase immobilization and linkage is examined by FTIR. The nanocomposite is used to form a modified bioelectrode by immobilizing cholesterol oxidase in the chitosan matrix and examined under an optical microscope for uniformity and morphological studies. A modified bioelectrode (ChOx/PAni-Au-CH/ITO) is used to detect cholesterol by using a voltammetric technique with a redox mediator. The sensor exhibits tinearity in a wide range of 50-500 mg dL~(-1) with a detection limit of 37.89 mg dL~(-1) a sensitivity of 0.86 μA mg dL~(-1) and a shelf life of more than 3 weeks when stored at 4 °C. Voltammetric studies have also been carried out with common possible interferents. Responses are recorded to get enzyme-substrate kinetics for the biosensor and found as K_m = 10.84 mg dL~(-1). The low value of K_m indicates that the prepared nanocomposite facilitates the enzymatic reaction and enzymatic activity. Excellent immobilization and enzyme-substrate reactions show a distinct advantage of this matrix over other matrixes used for cholesterol biosensors. The novelty of the prepared electrode lies in its reusability, higher sensitivity, better shelf life, and accuracy.
机译:化学合成聚苯胺-金(PAni-Au)纳米复合材料,并将其浸渍在壳聚糖基质中,以将胆固醇氧化酶固定在氧化铟锡涂层的玻璃板上,以开发胆固醇生物传感器。 PAni-Au纳米复合材料具有结构和热学特性。此外,将PAni-Au纳米复合材料用于胆固醇氧化酶的固定化,并通过FTIR检查其键合。通过将胆固醇氧化酶固定在壳聚糖基质中,该纳米复合材料用于形成修饰的生物电极,并在光学显微镜下检查其均匀性和形态研究。修饰的生物电极(ChOx / PAni-Au-CH / ITO)用于通过使用氧化还原介体的伏安技术检测胆固醇。该传感器的色度范围为50-500 mg dL〜(-1),检测极限为37.89 mg dL〜(-1),灵敏度为0.86μAmg dL〜(-1),保质期更长。在4°C下存放超过3周。伏安法研究也已经对常见的可能干扰物进行了研究。记录响应以获得生物传感器的酶-底物动力学,发现为K_m = 10.84 mg dL〜(-1)。 K_m的值低表明所制备的纳米复合材料促进了酶促反应和酶促活性。出色的固定化和酶-底物反应显示了该基质相对于用于胆固醇生物传感器的其他基质的明显优势。所制备电极的新颖性在于其可重复使用性,更高的灵敏度,更好的保质期和准确性。

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