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虫草素:一种用于适配体工程的具有增强抗癌活性的双功能分子元件。

Cordycepin: a dual-function molecular element for aptamer engineering with enhanced anticancer activity.

作者信息

Gao Fei, Na Li, Fu Shuyue, Peng Jinsong, He Shipeng, Wang Ruowen, Tan Weihong

机构信息

Institute of Translation Medicine, School of Life Science, Shanghai University Shanghai 200444 China

Institute of Molecular Medicine (IMM), Renji Hospital, State Key Laboratory of Systems Medicine for Cancer, Shanghai Jiao Tong University School of Medicine, College of Chemistry and Chemical Engineering, Shanghai Jiao Tong University Shanghai 200240 China

出版信息

Chem Sci. 2025 Jun 30. doi: 10.1039/d5sc02571k.

Abstract

Cordycepin (3'-deoxyadenosine, 3'-dA), derived from the fungus , has shown significant bioactivity as an inhibitor of enzymes related to 2'-deoxyadenosine (dA). However, its therapeutic efficacy is insufficient for clinical use, which may be addressed through targeted delivery systems. In this study, we designed and synthesized a 3'-dA phosphoramidite to incorporate cordycepin into the well-known cancer-targeting Sgc8c aptamer, where it functions both as a structural modulator and as a bioactive drug element for constructing aptamer-drug conjugates. Its structural similarity to dA makes cordycepin a unique molecular tool for probing the structure-activity relationship of aptamers. Additionally, cordycepin can be seamlessly integrated into aptamers, replacing dA. This led to the generation of a series of cordycepin-modified aptamers, among which Sgc8-23A demonstrated enhanced antitumor activity against HCT116 human colon cancer cells. Compared to free cordycepin, Sgc8-23A exhibited superior bioactivity and stability. In a zebrafish patient-derived xenograft (PDX) model, Sgc8-23A significantly inhibited tumor growth, highlighting its potential as an effective aptamer-drug conjugate for targeted cancer therapy. These findings emphasize the dual functional potential of cordycepin as both a structural element for aptamer optimization and a therapeutic drug component, paving the way for the development of more efficient aptamer-based drug delivery systems.

摘要

虫草素(3'-脱氧腺苷,3'-dA),源自真菌,作为与2'-脱氧腺苷(dA)相关酶的抑制剂已显示出显著的生物活性。然而,其治疗效果在临床应用中并不理想,这一问题可通过靶向递送系统来解决。在本研究中,我们设计并合成了一种3'-dA亚磷酰胺,将虫草素掺入著名的癌症靶向Sgc8c适配体中,在那里它既作为结构调节剂,又作为构建适配体-药物偶联物的生物活性药物元件发挥作用。虫草素与dA的结构相似性使其成为探究适配体构效关系的独特分子工具。此外,虫草素可无缝整合到适配体中,取代dA。这导致产生了一系列虫草素修饰的适配体,其中Sgc8-23A对HCT116人结肠癌细胞表现出增强的抗肿瘤活性。与游离虫草素相比,Sgc8-23A表现出更高的生物活性和稳定性。在斑马鱼患者来源的异种移植(PDX)模型中,Sgc8-23A显著抑制肿瘤生长,突出了其作为有效适配体-药物偶联物用于靶向癌症治疗的潜力。这些发现强调了虫草素作为适配体优化的结构元件和治疗药物成分的双重功能潜力,为开发更高效的基于适配体的药物递送系统铺平了道路。

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