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用于上皮-间质转化过程中胶质瘤循环肿瘤细胞的多价适配体纳米支架细胞传感器

Multivalent aptamer nanoscaffold cytosensor for glioma circulating tumor cells during Epithelial-Mesenchymal transition.

作者信息

Wang Gang, Zhang Yachao, Tang Shi, Chen Shuning, Zou Fangbo, Yuan Hongxiu, Jiao Jin

机构信息

School of Life Sciences, Medical Science and Technology Innovation Center, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan, 250117, PR China.

School of Life Sciences, Medical Science and Technology Innovation Center, Shandong First Medical University & Shandong Academy of Medical Sciences, Jinan, 250117, PR China.

出版信息

Biosens Bioelectron. 2023 Apr 15;226:115140. doi: 10.1016/j.bios.2023.115140. Epub 2023 Feb 8.

Abstract

The key factor that causes glioma invasion and metastasis is circulating tumor cells (CTCs) undergoing epithelial-mesenchymal transition (EMT). Effective analysis of EMT-CTCs can provide an important foundation for early detection and prognosis monitoring of glioma, but the changes in the biomarkers of CTCs in different states of EMT make detection difficult. In this study, we developed a multivalent aptamer nanoscaffold-based electrochemical cytosensor (MAS-cytosensor) to efficiently detect EMT-CTCs. The two chains forming the MAS are composed of a specific aptamer detector, a binding region for DNA self-assembly, and a foothold for interface anchoring. When target CTCs exist, the bisaptamer detector on MAS can sensitively identify CTCs and pull them to the electrode surface, generating electrochemical signals. It has been demonstrated that the MAS-cytosensor can not only detect EMT-CTCs sensitively (detection limit of 6 cells/mL in buffer), but also allows for further downstream analysis after release with high viability. Overall, this cytosensor provides a reliable detection solution for CTCs regardless of their EMT status, and provides an efficient method for in-depth study role of the post-EMT CTCs in clinical application and metastasis mechanisms.

摘要

导致胶质瘤侵袭和转移的关键因素是经历上皮-间质转化(EMT)的循环肿瘤细胞(CTC)。对EMT-CTC进行有效分析可为胶质瘤的早期检测和预后监测提供重要依据,但处于不同EMT状态的CTC生物标志物变化使得检测变得困难。在本研究中,我们开发了一种基于多价适体纳米支架的电化学细胞传感器(MAS-细胞传感器)以有效检测EMT-CTC。构成MAS的两条链由特异性适体检测器、DNA自组装结合区域和界面锚定立足点组成。当存在目标CTC时,MAS上的双适体检测器可灵敏地识别CTC并将其拉至电极表面,产生电化学信号。已证明MAS-细胞传感器不仅能灵敏地检测EMT-CTC(缓冲液中的检测限为6个细胞/毫升),而且在以高活力释放后还能进行进一步的下游分析。总体而言,这种细胞传感器为无论处于何种EMT状态的CTC提供了可靠的检测解决方案,并为深入研究EMT后CTC在临床应用和转移机制中的作用提供了一种有效方法。

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