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一种基于熵驱动的三维多足 DNA walker,用于超灵敏检测癌细胞。

An entropy-driven three-dimensional multipedal-DNA walker for ultrasensitive detection of cancer cells.

机构信息

Nano-biotechnology Key Lab of Hebei Province, Hebei Key Laboratory of Applied Chemistry, College of Environmental and Chemical Engineering, Yanshan University, Qinhuangdao, 066004, China; State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao, 066004, China.

Nano-biotechnology Key Lab of Hebei Province, Hebei Key Laboratory of Applied Chemistry, College of Environmental and Chemical Engineering, Yanshan University, Qinhuangdao, 066004, China.

出版信息

Anal Chim Acta. 2022 Oct 2;1228:340299. doi: 10.1016/j.aca.2022.340299. Epub 2022 Aug 27.

Abstract

Sensitive and accurate detection of cancer cells is of great significance for the early diagnosis and treatment of cancer. In this work, we developed a simple fluorescent signal amplification biosensor based on an entropy-driven three-dimensional (3D) multipedal-DNA walker for highly sensitive detection of cancer cells. Firstly, DNA tetrahedron nanostructures (DTNs) combined with AS1411 aptamer were used as the capture probe to achieve efficient capture of cancer cells. Then, the bipedal hairpin fuel chain hybridized with DTNs and exposed two catalytic "legs" to form a walker probe. Finally, the walker probe autonomously walked on polystyrene microspheres (PS) via entropy-driven catalytic reaction. DTNs rolled on the PS to achieve multipedal walking, realizing fluorescence signal amplification due to fluorescence recovery of DNA-CdTe quantum dots on the PS surface. This fluorescence signal amplification strategy showed excellent selectivity and sensitivity toward cancer cells with the detection limit of 7 cell mL. This entropy-driven 3D multipedal DNA walker fluorescence exhibited great potential in detecting circulating tumor cells and tumor markers used for early diagnosis and clinical treatment of cancer.

摘要

灵敏准确地检测癌细胞对于癌症的早期诊断和治疗具有重要意义。在这项工作中,我们开发了一种基于熵驱动的三维(3D)多足 DNA walker 的简单荧光信号放大生物传感器,用于高灵敏度检测癌细胞。首先,DNA 四面体纳米结构(DTN)与 AS1411 适体结合作为捕获探针,以实现对癌细胞的高效捕获。然后,双足发夹燃料链与 DTN 杂交并暴露两个催化“腿”形成 walker 探针。最后,walker 探针通过熵驱动的催化反应自主在聚苯乙烯微球(PS)上行走。DTN 在 PS 上滚动实现多足行走,由于 PS 表面上的 DNA-CdTe 量子点的荧光恢复实现荧光信号放大。这种荧光信号放大策略对癌细胞表现出优异的选择性和灵敏度,检测限低至 7 个细胞 mL-1。这种熵驱动的 3D 多足 DNA walker 荧光在检测循环肿瘤细胞和用于癌症早期诊断和临床治疗的肿瘤标志物方面具有巨大的潜力。

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