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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Novel cytosensor for accurate detection of circulating tumor cells based on a dual-recognition strategy and BSA@Ag@Ir metallic-organic nanoclusters
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Novel cytosensor for accurate detection of circulating tumor cells based on a dual-recognition strategy and BSA@Ag@Ir metallic-organic nanoclusters

机译:基于双识别策略和BSA @ AG @ IR金属 - 有机纳米/基于双识别策略的循环肿瘤细胞精确检测的新细胞传感器

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摘要

Herein, based on a dual-recognition strategy and BSA@Ag@Ir metallic-organic nanoclusters (BSA@Ag@Ir MONs), a highly specific and sensitive cytosensor was developed for detecting circulating tumor cells (CTCs). To amplify current signal, novel BSA@Ag@Ir MONs with outstanding catalytic activity and huge specific surface area were synthesized, and conjugated with hairpin DNA strands as signal probes. Orion carbon black 40 (Ocb40)//AuNPs were firstly used to modify electrode to increase its conductivity and surface area. Moreover, the dual recognition strategy based on DNA proximity effect was designed to improve the specificity of cytosensor. When two capture probes respectively bound to two adjacent membrane markers of target cells, the probes could form the associative toehold through the proximity effect to capture the signal probes. Only CTCs simultaneously expressing two membrane markers could be captured and generate current responses. The developed cytosensor could detect CTCs in the range of 3 3 x 10(6) cells mL(-1) with a detection limit of 1 cell mL(-1). Notably, the cytosensor could accurately identify CTCs even in whole blood. Therefore, this cytosensor has great potential for application in biological science, biomedical engineering and personalized medicine.
机译:在此,基于双重识别策略和BSA@Ag@红外金属有机纳米团簇(BSA@Ag@Ir-MONs)是一种高度特异、灵敏的细胞传感器,用于检测循环肿瘤细胞(CTC)。放大电流信号,新颖BSA@Ag@合成了具有优异催化活性和巨大比表面积的Ir-MONs,并与发夹状DNA链结合作为信号探针。Orion炭黑40(Ocb40)//AuNPs首次用于修饰电极以增加其导电性和表面积。此外,为了提高细胞传感器的特异性,设计了基于DNA邻近效应的双重识别策略。当两个捕获探针分别与两个相邻的靶细胞膜标记结合时,探针可以通过邻近效应形成联合立足点来捕获信号探针。只有同时表达两种膜标记物的CTC才能被捕获并产生电流反应。所研制的细胞传感器可检测3×10(6)个细胞mL(-1)范围内的CTC,检测限为1个细胞mL(-1)。值得注意的是,细胞传感器甚至可以在全血中准确识别CTC。因此,这种细胞传感器在生物科学、生物医学工程和个性化医疗领域具有巨大的应用潜力。

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