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首页> 外文期刊>Sensors and Actuators >Biomimetic sensor based on Mn(Ⅲ) meso-tetra(N-methyl-4-pyridyl) porphyrin for non-enzymatic electrocatalytic determination of hydrogen peroxide and as an electrochemical transducer in oxidase biosensor for analysis of biological media
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Biomimetic sensor based on Mn(Ⅲ) meso-tetra(N-methyl-4-pyridyl) porphyrin for non-enzymatic electrocatalytic determination of hydrogen peroxide and as an electrochemical transducer in oxidase biosensor for analysis of biological media

机译:基于Mn(Ⅲ)Meso-Tetra(N-甲基-4-吡啶基)卟啉的仿生传感器用于非酶促电催化测定过氧化氢的电化学换能器,用于生物介质的分析

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Bioinspired molecular complexes that mimic the enzymatic catalysis of redox transformations offer a versatile platform for the development of non-enzymatic mediatorless sensors with high sensitivity, selectivity, and robustness without the use of precious metals. The aim of this study was to prepare and investigate biomimetic sensors based on the electrocatalytic reduction of hydrogen peroxide and oxygen by a series of immobilized complexes of iron and manganese with porphyrin macrocycles for the detection of hydrogen peroxide and glucose. The influence of substitution of the macroheterocyclic ligand, composition of the adsorption solution, Nafion membrane, and amino acids on the properties of the sensors was studied. Optimized sensor function is based on the electrogenerated reduced form of Mn(Ⅱ) meso-tetra(N-methyl-4-pyridyl) porphyrin as a catalyst and allows high sensitivity of the hydrogen peroxide detection of 1.8 A M~(-1) cm~(-2) and 0.071 A M~(-1) cm~(-2) to be achieved in the lower and higher concentration ranges, respectively, with a low detection limit of 5·10~(-7) M at physiological pH 7.4 and in the presence of oxygen. The MnTMPyP electrode was investigated as an electrochemical transducer in the glucose-oxidase-based biosensor. The sensors were successfully applied for the detection of hydrogen peroxide and glucose in human serum samples. Along with a simple fabrication procedure and robustness of the sensor, the biomimetic electrocatalytic properties of the MnTMPyP complex facilitate excellent performance of the proposed sensors for hydrogen peroxide and glucose determination in biological media, emphasizing the importance of bioinspired electrocatalytic metalloporphyrin complexes for the development of sensors and point-of-care devices.
机译:模拟氧化还原转化酶促催化的生物透露的分子复合物为不使用贵金属的浓度,选择性和鲁棒性的高酶促介质的传感器提供了多功能平台。本研究的目的是基于通过一系列固定的铁和锰的固定化络合物的电催化和氧气的电催化来制备和研究仿生传感器,用于检测过氧化氢和葡萄糖的卟啉宏观。研究了在传感器的性质上进行了偏离循环配体,吸附溶液,Nafion膜和氨基酸的组合物的影响。优化的传感器功能基于Mn(Ⅱ)Meso-Tetra(N-甲基-4-吡啶基)卟啉作为催化剂的电流还原形式,并允许高氧化氢检测的高灵敏度1.8AM〜(-1)cm〜 (-2)和0.071AM〜(-1)cm〜(-2)分别在较低且较高的浓度范围内实现,低检测限为5·10〜( - 7)m,在生理pH 7.4在氧气存在下。在葡萄糖 - 氧化酶的生物传感器中研究了MNTMPYP电极作为电化学换能器。传感器成功地用于检测人血清样品中过氧化氢和葡萄糖。随着传感器的简单制造程序和鲁棒性,Mntmpyp复合物的仿真电催化性能促进了所提出的过氧化氢和生物介质中葡萄糖测定的优异性能,并强调生物悬浮的电催化金属卟啉复合物在发育传感器的发展中的重要性和护理点设备。

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