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基于自组装蛋白-酶纳米花的荧光传感用于蛋白质生物标志物检测。

Self-assembled protein-enzyme nanoflower-based fluorescent sensing for protein biomarker.

机构信息

Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, China.

出版信息

Anal Bioanal Chem. 2018 Nov;410(29):7591-7598. doi: 10.1007/s00216-018-1398-7. Epub 2018 Oct 1.

Abstract

Multi-protein (or enzyme) conjugates play a vital role in biosensing due to the integrated function of each component, such as biological recognition and signal amplification. In this work, a green self-assembled method for the synthesis of multi-functional protein-enzyme nanoflowers has been developed, in which no chemical modification and coupling reaction is needed to fabricate the fluorescent signal probe. The self-assembled protein-enzyme conjugates streptavidin (SA) -β-galactosidase (β-Gal)-CaHPO nanoflowers load sufficient enzymes without damaging their activity, which meets the requirements of signal tags for biosensing. Through integrated multi-function of biorecognition (SA) and signal amplification (β-Gal), the SA-β-Gal-CaHPO hybrid nanoflower-based fluorescent sensor exhibited an ultrasensitive detection of protein biomarker alpha-fetoprotein (AFP), with limits of detection at the fM level. The presented self-assembled strategy can be extensively applied to develop on-demand protein-enzyme conjugates according to the specific requirements in a variety of applications including biosensors, bioimaging, and biomedicine. Graphical abstract A self-assembled method has been presented for the facile and green synthesis of SA-β-Gal-CaHPO nanocomplexes with flower-like shape and high activity, and further employed as signal tag for fluorescent sensing of protein biomarker.

摘要

多蛋白(或酶)缀合物由于每个组件的集成功能,如生物识别和信号放大,在生物传感中起着至关重要的作用。在这项工作中,开发了一种绿色的自组装方法来合成多功能蛋白-酶纳米花,其中不需要进行化学修饰和偶联反应来制备荧光信号探针。自组装的蛋白-酶缀合物链霉亲和素(SA)-β-半乳糖苷酶(β-Gal)-CaHPO 纳米花负载了足够的酶,而不会损害其活性,这满足了生物传感中信号标签的要求。通过生物识别(SA)和信号放大(β-Gal)的集成多功能性,基于 SA-β-Gal-CaHPO 杂化纳米花的荧光传感器对蛋白生物标志物甲胎蛋白(AFP)表现出超灵敏的检测,检测限达到 fM 水平。所提出的自组装策略可以根据各种应用(包括生物传感器、生物成像和生物医学)中的特定要求,广泛应用于按需合成蛋白-酶缀合物。

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