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多价 DNA 花用于高性能分离、检测和释放肿瘤来源的细胞外囊泡。

Multivalent DNA Flowers for High-Performance Isolation, Detection, and Release of Tumor-Derived Extracellular Vesicles.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou 310058, China.

The Second Affiliated Hospital of Fujian Medical University, Quanzhou 362000, China.

出版信息

ACS Appl Mater Interfaces. 2023 Dec 6;15(48):55358-55368. doi: 10.1021/acsami.3c12211. Epub 2023 Nov 26.

Abstract

Tumor-derived extracellular vesicles (T-EVs) hold great promise for understanding cancer biology and improving cancer diagnostics and therapeutics. Herein, we developed multivalent DNA flowers (DFs) containing repeated and equidistant EpCAM aptamers for the efficient isolation of T-EVs. The multivalent aptamer chains in DFs had good flexibility to adapt to the surface morphology of T-EVs and achieved multivalent ligand-receptor interactions, thus showing enhanced isolation ability compared to monovalent aptamers. Compared with other materials for isolation of EVs, DFs were generated by rolling circle amplification (RCA) and self-assembled into microspheres in a one-pot reaction, and the recognition molecules (aptamers) were directly replicated and assembled during the RCA reaction instead of chemical modification and immobilization on the surface of solid materials. Moreover, as optically transparent biomaterials, the content of EpCAM EVs could be directly reflected via membrane-based hydrophobic assembly of signaling modules in DFs@EpCAM EVs complex, and we found that the amount of EpCAM EVs showed greater accuracy in cancer diagnosis than total EVs (88.3 vs 69.7%) and was also higher than the clinically commonly used marker carcinoembryonic antigen (CEA) (88.3 vs 76.7%). In addition, T-EVs could be released by lysis of DFs with the nuclease, gently and easily, keeping high intact and activity of EVs for downstream biological function studies. These results demonstrated that DFs are efficient and nondestructive tools for isolation, detection, and release of T-EVs.

摘要

肿瘤来源的细胞外囊泡 (T-EV) 在理解癌症生物学以及改善癌症诊断和治疗方面具有巨大的应用前景。在此,我们开发了含有重复且等距 EpCAM 适体的多价 DNA 花 (DF),用于高效分离 T-EV。DF 中的多价适体链具有良好的柔韧性,可适应 T-EV 的表面形态,并实现多价配体-受体相互作用,因此与单价适体相比,具有更强的分离能力。与用于 EV 分离的其他材料相比,DF 通过滚环扩增 (RCA) 生成,并在一锅反应中自组装成微球,并且识别分子 (适体) 在 RCA 反应中直接复制和组装,而不是在固相材料的表面进行化学修饰和固定化。此外,作为光学透明的生物材料,DFs@EpCAM EVs 复合物中信号模块的基于膜的疏水性组装可直接反映 EpCAM EV 的含量,我们发现 EpCAM EV 的数量在癌症诊断中的准确性高于总 EV(88.3%比 69.7%),并且也高于临床常用标志物癌胚抗原(CEA)(88.3%比 76.7%)。此外,T-EV 可以用核酸酶温和且轻松地裂解 DF 释放,保持 EV 的高完整性和活性,用于下游生物学功能研究。这些结果表明,DF 是分离、检测和释放 T-EV 的有效且非破坏性的工具。

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