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一种基于生长在弹性碳泡沫上的球状花状铜-血红素金属有机框架的新型生物传感器用于敌百虫检测。

A novel biosensor based on ball-flower-like Cu-hemin MOF grown on elastic carbon foam for trichlorfon detection.

作者信息

Song Yonggui, Shan Baixi, Feng Bingwei, Xu Pengfei, Zeng Qiang, Su Dan

机构信息

Jiangxi University of Traditional Chinese Medicine 1688 Meiling Road Nanchang 330006 China

出版信息

RSC Adv. 2018 Jul 30;8(47):27008-27015. doi: 10.1039/c8ra04596h. eCollection 2018 Jul 24.

Abstract

In this study, ball-flower-like Cu-hemin MOFs microstructures supported by flexible three-dimensional (3D) nitrogen-containing melamine carbon foam composites (denoted as Cu-H MOFs/NECF) were constructed. They were used for the immobilization of acetylcholinesterase (AChE) to detect trichlorfon, a widely applicable organophosphorus pesticide (OP). The formation of Cu-H MOFs/NECF was confirmed by scanning electron microscopy, X-ray powder diffraction and energy-dispersive X-ray spectroscopy. The results indicated that ball-flower-like Cu-hemin MOF microstructures were evenly grown on the fibers of 3D-NECF a simple room temperature mixing method, which could greatly increase the effective surface area. The Cu-H MOFs/NECF composites also overcome the disadvantages of carbon foam materials such as too large pore diameters that always lead to the stacking of the protease and poor conductivity. Moreover, the composites contain nitrogen elements not only from melamine but also from hemin, which is bound to greatly increase the biocompatibility. The composites were directly used to immobilize a large number of AChE to prepare integrated AChE/Cu-H MOFs/NECF electrodes. Simultaneously, the integrated electrode showed better performance for trichlorfon detection. The sensor exhibited good stability and toughness, wide linear range (0.25-20 ng mL) and low detection limit (0.082 ng mL). Hence, the AChE/Cu-H MOFs/NECF trichlorfon sensor could be a valuable platform for the pesticide residues field testing.

摘要

在本研究中,构建了由柔性三维(3D)含氮三聚氰胺碳泡沫复合材料支撑的球状花状铜-血红素金属有机框架微结构(记为Cu-H MOFs/NECF)。它们用于固定乙酰胆碱酯酶(AChE)以检测敌百虫,一种广泛应用的有机磷农药(OP)。通过扫描电子显微镜、X射线粉末衍射和能量色散X射线光谱证实了Cu-H MOFs/NECF的形成。结果表明,球状花状铜-血红素金属有机框架微结构通过简单的室温混合方法均匀地生长在3D-NECF的纤维上,这可以大大增加有效表面积。Cu-H MOFs/NECF复合材料还克服了碳泡沫材料的缺点,如孔径过大总是导致蛋白酶堆积和导电性差。此外,该复合材料不仅含有来自三聚氰胺还含有来自血红素的氮元素,这必然会大大提高生物相容性。该复合材料直接用于固定大量AChE以制备集成AChE/Cu-H MOFs/NECF电极。同时,集成电极对敌百虫检测表现出更好的性能。该传感器具有良好的稳定性和韧性、宽线性范围(0.25 - 20 ng/mL)和低检测限(0.082 ng/mL)。因此,AChE/Cu-H MOFs/NECF敌百虫传感器可能是农药残留现场检测的一个有价值的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f0b/9083247/8a38967d8923/c8ra04596h-s1.jpg

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