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用于活细胞中过氧化氢高灵敏度安培检测的硫化钼纳米片-金纳米棒杂化物

MoS nanosheet-Au nanorod hybrids for highly sensitive amperometric detection of HO in living cells.

作者信息

Shu Yun, Chen Jingyuan, Xu Qin, Wei Zhen, Liu Fengping, Lu Rui, Xu Sheng, Hu Xiaoya

机构信息

School of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou 225002, China.

出版信息

J Mater Chem B. 2017 Feb 21;5(7):1446-1453. doi: 10.1039/c6tb02886a. Epub 2017 Jan 30.

DOI:10.1039/c6tb02886a
PMID:32264635
Abstract

MoS nanosheet-Au nanorod (MoS-Au) hybrids were utilized to immobilize catalase (CAT) to construct a sensitive hydrogen peroxide (HO) electrochemical biosensor for the reliable determination of HO released from living cells. The fabricated biosensor was characterized by transmission electron microscopy (TEM), UV-Vis spectroscopy, Fourier transform infrared spectroscopy (FT-IR) and Raman spectroscopy, it was observed that the MoS-Au hybrid provides excellent matrixes for the adsorption of CAT and the entrapped CAT maintains its native structure and bioactivity. The results of direct electrochemical measurements indicate that on the CAT/MoS-Au modified electrode, CAT exhibits a surface controlled and fast electron transfer process towards HO reduction. The MoS-Au hybrid has a large surface area and provides a biocompatible microenvironment for accelerating direct electron transfer between the enzyme and the electrode. The detection limit of the constructed HO biosensor is 1 × 10 M (signal-to-noise = 3) with a wide linear range from 5 × 10 M to 2 × 10 M and a high sensitivity of 187.4 mA M cm. The fabricated HO biosensor also exhibits excellent selectivity, good reproducibility and long-time stability. Furthermore, the biosensor was used to perform real-time monitoring of HO released from SP2/0 cells, indicating the MoS-Au hybrid is an attractive material for application in the efficient immobilization of biomolecules and construction of high-performance biosensors.

摘要

利用二硫化钼纳米片-金纳米棒(MoS₂-Au)复合物固定过氧化氢酶(CAT),构建了一种灵敏的过氧化氢(H₂O₂)电化学生物传感器,用于可靠测定活细胞释放的H₂O₂。通过透射电子显微镜(TEM)、紫外可见光谱、傅里叶变换红外光谱(FT-IR)和拉曼光谱对制备的生物传感器进行了表征,结果表明MoS₂-Au复合物为CAT的吸附提供了优良的基质,且包埋的CAT保持了其天然结构和生物活性。直接电化学测量结果表明,在CAT/MoS₂-Au修饰电极上,CAT对H₂O₂还原表现出表面控制的快速电子转移过程。MoS₂-Au复合物具有较大的表面积,为加速酶与电极之间的直接电子转移提供了生物相容性微环境。构建的H₂O₂生物传感器的检测限为1×10⁻⁷ M(信噪比=3),线性范围宽,为5×10⁻⁷ M至2×10⁻⁴ M,灵敏度高达187.4 mA M⁻¹ cm⁻²。制备的H₂O₂生物传感器还具有优异选择性、良好的重现性和长期稳定性。此外,该生物传感器用于对SP2/0细胞释放的H₂O₂进行实时监测,表明MoS₂-Au复合物是一种有吸引力的材料,可应用于生物分子的高效固定和高性能生物传感器的构建。

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