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用于选择性富集赭曲霉毒素A的高性能分子印迹聚合物接枝磁性光子晶体微球

High-performance molecularly imprinted polymers grafted magnetic photonic crystal microspheres for selective enrichment of ochratoxin a.

作者信息

Dou Menghua, Wang Siwei, Li Wei, Li Qianjin, Xu Jianhong, Li Jianlin

机构信息

School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210023, China.

Medical Imaging Center the First Affiliated Hospital, Jinan University, Guangdong 510627, China.

出版信息

J Chromatogr A. 2023 Apr 26;1695:463932. doi: 10.1016/j.chroma.2023.463932. Epub 2023 Mar 15.

Abstract

Development of selective enrichment materials for the accurate analysis of ochratoxin a (OTA) in environmental and food samples is an effective way to protect human health. Here, a molecularly imprinted polymer (MIP) known as plastic antibody was synthesized onto the magnetic inverse opal photonic crystal microsphere (MIPCM) using a low-cost dummy template imprinting strategy targeting OTA. The MIP@MIPCM exhibited ultrahigh selectivity with an imprinting factor of 130, high specificity with cross-reactivity factors of 3.3-10.5, and large adsorption capacity of 60.5 μg/mg. Such MIP@MIPCM was used for selective capture of OTA in real samples which was quantified in combination with high-performance liquid chromatography, giving a wide linear detection range of 5-20,000 ng/mL, a detection limit of 0.675 ng/mL, and good recovery rates of 84-116%. Moreover, the MIP@MIPCM can be produced simply and rapidly and is very stable under different environmental conditions and easy to store and transport, so it is an ideal substitute of biological antibody modified materials for the selective enrichment of OTA in real samples.

摘要

开发用于准确分析环境和食品样品中赭曲霉毒素A(OTA)的选择性富集材料是保护人类健康的有效途径。在此,使用针对OTA的低成本虚拟模板印迹策略,在磁性反蛋白石光子晶体微球(MIPCM)上合成了一种称为塑料抗体的分子印迹聚合物(MIP)。MIP@MIPCM表现出超高的选择性,印迹因子为130,高特异性,交叉反应因子为3.3 - 10.5,以及60.5 μg/mg的大吸附容量。这种MIP@MIPCM用于实际样品中OTA的选择性捕获,并与高效液相色谱联用进行定量分析,线性检测范围宽达5 - 20,000 ng/mL,检测限为0.675 ng/mL,回收率良好,为84 - 116%。此外,MIP@MIPCM制备简单快速,在不同环境条件下非常稳定,易于储存和运输,因此是生物抗体修饰材料在实际样品中选择性富集OTA的理想替代品。

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