Wu Man-Sha, Zhou Ze-Rui, Wang Xiao-Yuan, Du Xi-Chen, Li Da-Wei, Qian Ruo-Can
Key Laboratory for Advanced Materials, Feringa Nobel Prize Scientist Joint Research Center, Joint International Laboratory for Precision Chemistry, Frontiers Science Center for Materiobiology & Dynamic Chemistry, School of Chemistry and Molecular Engineering East China University of Science and Technology, Shanghai 200237, P. R. China.
ACS Pharmacol Transl Sci. 2024 Aug 6;7(9):2869-2877. doi: 10.1021/acsptsci.4c00362. eCollection 2024 Sep 13.
Synthetic DNAzyme-based structures enable dynamic cell regulation. However, engineering an effective and targeted DNAzyme-based structure to perform customizable multistep regulation remains largely unexplored. Herein, we designed a membrane-anchored DNAzyme-based molecular machine to implement dynamic inter- and intracellular cascade regulation, which realizes efficient T-cell/cancer cell interactions and subsequent receptor mediated cancer cell uptake. Using CD8 T-cells and HeLa cancer cells as a proof of concept, we demonstrate that the designed DNAzyme-based molecular machine enables customized cascade regulation including (1) specific recognition between T-cells and cancer cells, (2) specific response and fluorescence sensing upon extracellular stimuli, and (3) cascade regulation including intercellular distance shortening, cell-cell communication, and intracellular delivery of anticancer drugs. Together, this work provides a promising pathway for customized cascade cell regulation based on a DNAzyme-based molecular machine, which enables enhanced cancer therapy by combining T-cell immunotherapy and chemotherapy.
基于合成脱氧核酶的结构能够实现动态细胞调控。然而,设计一种有效且靶向的基于脱氧核酶的结构来进行可定制的多步调控在很大程度上仍未得到探索。在此,我们设计了一种基于膜锚定脱氧核酶的分子机器,以实现细胞间和细胞内的动态级联调控,从而实现高效的T细胞/癌细胞相互作用以及随后受体介导的癌细胞摄取。以CD8 T细胞和HeLa癌细胞作为概念验证,我们证明所设计的基于脱氧核酶的分子机器能够实现定制的级联调控,包括(1)T细胞与癌细胞之间的特异性识别,(2)细胞外刺激后的特异性响应和荧光传感,以及(3)级联调控,包括细胞间距离缩短、细胞间通讯和抗癌药物的细胞内递送。总之,这项工作为基于脱氧核酶的分子机器的定制级联细胞调控提供了一条有前景的途径,通过结合T细胞免疫疗法和化疗能够增强癌症治疗效果。