An electrochemical biosensor designed with entropy-driven autocatalytic DNA circuits for sensitive detection of ovarian cancer-derived exosomes

生物传感器 微泡 自催化 纳米技术 适体 DNA 卵巢癌 材料科学 电子线路 化学 生物物理学 计算生物学 生物 癌症 生物化学 分子生物学 物理 催化作用 基因 小RNA 遗传学 量子力学
作者
Ying Deng,Tianci Zhou,Kai Hu,Ying Peng,Xuemei Jia,Jie Yang,Genxi Li
出处
期刊:Biosensors and Bioelectronics [Elsevier BV]
卷期号:250: 116060-116060 被引量:12
标识
DOI:10.1016/j.bios.2024.116060
摘要

Intelligent artificial DNA circuits have emerged as a promising approach for modulating signaling pathways and signal transduction through rational design, which may contribute to comprehensively realizing biomolecular sensing of organisms. In this work, we have fabricated an electrochemical biosensor for the sensitive and accurate detection of ovarian cancer-derived exosomes by constructing an entropy-driven autocatalytic DNA circuit (EADC). Specifically, the robust EADC is prepared by the self-assembly of well-designed DNA probes, and upon stimulation of the presence of ovarian cancer cells-derived exosomes, numerous inputs can be produced to feedback and accelerate the reaction. The catalytic abilities of the generated input sequences play a pivotal role in EADC and dramatically enhance the signal amplification capability. Through the combination of the autocatalytic circuit and circular cleavage reactions, significantly changed electrochemical signals can be recorded for sensitive analysis of the exosomes with a remarkably low detection limit of 30 particles/μL. Moreover, the proposed enzyme-free biosensor shows exceptional performance in distinguishing patient samples from healthy samples, which exhibits promising prospects for the clinical diagnosis of ovarian cancer.
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