Lab of Biosystem and Microanalysis, State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Analyst. 2019 Mar 11;144(6):1995-2002. doi: 10.1039/c8an02383b.
An increasing number of studies have found that circulating exosomes play a vital role in the occurrence and metastasis of cancer. Therefore, a direct, sensitive and specific method for detection of tumor exosomes will contribute to the diagnosis and prognosis of cancer. In this work, we take advantage of the facile adaptability of aptamers to design an exosome quantitative method, which converts an exosome capture event to nucleic acid detection. With the help of a hairpin DNA cascade reaction (HDCR) and easy accessibility of DNA dendrimer self-assembly, dual signal amplification was achieved. A CD63 aptamer linked via a DNA probe to magnetic beads acts as the capture component. In the presence of target exosomes, aptamers identify and combine with exosomes, releasing the DNA probe as a trigger to initiate the HDCR (the first signal amplification process) by opening hairpin DNA (HP1) bound to gold nanoparticles (AuNPs). Fluorescently-labeled DNA dendrimers concatenate with HP1 as the second signal amplification stage to increase the signal-to-noise ratio. Under the optimal conditions, our method achieved a good linear response for HepG2 cell-derived exosomes in a concentration range from 1.75 × 103 to 7.0 × 106 particles per μL with a detection limit of 1.16 × 103 particles per μL. It also shows a good performance for detection of exosomes in biological samples.
越来越多的研究发现,循环外泌体在癌症的发生和转移中起着至关重要的作用。因此,一种直接、敏感和特异的肿瘤外泌体检测方法将有助于癌症的诊断和预后。在这项工作中,我们利用适配体对核酸检测的易适应性来设计外泌体定量方法,将外泌体捕获事件转化为核酸检测。在发夹 DNA 级联反应 (HDCR) 的帮助下,以及 DNA 树状聚合物自组装的易获得性,实现了双重信号放大。通过 DNA 探针连接到磁珠上的 CD63 适体作为捕获成分。在存在靶向外泌体的情况下,适体识别并与外泌体结合,释放 DNA 探针作为触发物,通过打开与金纳米粒子 (AuNPs) 结合的发夹 DNA (HP1) 启动 HDCR(第一个信号放大过程)。荧光标记的 DNA 树状聚合物与 HP1 串联作为第二信号放大阶段,以增加信号噪声比。在最佳条件下,我们的方法在浓度范围为 1.75×103 至 7.0×106 个/μL 的 HepG2 细胞衍生的外泌体中实现了良好的线性响应,检测限为 1.16×103 个/μL。它还在外泌体在生物样品中的检测中表现出良好的性能。