Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201210, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Analyst. 2021 Oct 25;146(21):6474-6481. doi: 10.1039/d1an01470f.
Detecting circulating tumor cells (CTCs) in patients' blood is essential for early diagnosis, precise treatment and prognosis of cancer. Yet due to CTCs being extremely rare in the peripheral blood of patients, it is still a challenge to detect CTCs with high sensitivity and high selectivity. Here, we developed a double-tetrahedral DNA framework (DTDF) based electrochemical biosensor system (E-CTC sensor system) for ultrasensitive detection and release of CTCs. In this work, an upright tetrahedral DNA framework (UTDF) was used as a rigid scaffold to modify a screen-printed gold electrode (SPGE), and an inverted tetrahedral DNA framework (ITDF) provided three vertex chains to multivalently bind with aptamers. Meanwhile, a streptavidin tagged horseradish peroxidase homopolymer (SA-polyHRP) was linked to biotin-modified aptamers to significantly amplify the signal. Moreover, the captured CTCs could be effectively released benzonase nuclease with little cell damage. Our E-CTC sensor system achieved a linear range from 1 to 10 MCF-7 cells with an ultralow detection limit of 1 cell. The release efficiency reached 88.1%-97.6% and the viability of the released cells reached up to 98%. We also detected the MCF-7 cells in mimic whole blood samples, suggesting that the E-CTC sensor system shows promise for use in clinical research.
检测患者血液中的循环肿瘤细胞(CTCs)对于癌症的早期诊断、精确治疗和预后至关重要。然而,由于患者外周血中的 CTCs 极其罕见,因此仍然难以实现高灵敏度和高选择性的 CTCs 检测。在这里,我们开发了一种基于双四面 DNA 框架(DTDF)的电化学生物传感器系统(E-CTC 传感器系统),用于超灵敏检测和释放 CTCs。在这项工作中,直立四面体 DNA 框架(UTDF)被用作刚性支架来修饰丝网印刷金电极(SPGE),而倒转四面体 DNA 框架(ITDF)提供了三个顶点链以多价结合适体。同时,链霉亲和素标记的辣根过氧化物酶均聚物(SA-polyHRP)与生物素修饰的适体连接,以显著放大信号。此外,捕获的 CTCs 可以用苯甲脒核酸酶有效地释放,而对细胞的损伤很小。我们的 E-CTC 传感器系统在 1 到 10 个 MCF-7 细胞的线性范围内实现了超低检测限为 1 个细胞。释放效率达到 88.1%-97.6%,释放细胞的活力高达 98%。我们还在模拟全血样本中检测到 MCF-7 细胞,表明 E-CTC 传感器系统有望用于临床研究。