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具有高稳定性的糖核酸适配体的分子编程设计

Molecular Programming Design of Glyconucleic Acid Aptamer with High Stability.

作者信息

Han Yongqi, Zhang Rongjun, Bao Hong-Liang, Yang Mei, Gao Yuan, Gao Xiaobo, Wang Ruowen, Tan Weihong, Ji Ding-Kun

机构信息

Institute of Molecular Medicine (IMM), Renji Hospital, State Key Laboratory of Oncogenes and Related Genes, Shanghai Jiao Tong University School of Medicine, Shanghai, 200240, China.

College of Chemistry and Materials Science, Shanghai Normal University, Shanghai, 200234, China.

出版信息

Adv Sci (Weinh). 2025 Jan;12(4):e2408168. doi: 10.1002/advs.202408168. Epub 2024 Dec 4.

Abstract

Functional nucleic acids (FNAs), possessing specific biological functions beyond their informational roles, have gained widespread attention in disease therapeutics. However, their clinical application is severely limited by their low serum stability in complex physiological environments. In this work, a precise molecular programming strategy is explored to prepare glyconucleic acid aptamers (GNAAs) with high serum stability. Four glyconucleic acid modules compatible with commercial solid-phase synthesis are designed and synthesized. Through precise molecular design, the accurate modification of four different carbohydrate ligands at specific sites of DNA aptamers is achieved. It is demonstrated that glycosylation modification can significantly increase DNA aptamers' serum stability while maintaining their structures and high affinity. The stabilization effect is superior to that of currently commonly used commercial chemical modifications. Moreover, it is confirmed that this approach displays insignificant effects on the DNA aptamers' tumor-targeting ability and metabolism in vivo. This method offers a simple, economical, and efficient strategy for precise glycosylation modification of nucleic acids. This allows to prepare glycosyl functional nucleic acids with high serum stability, which can expand the application scope of functional nucleic acids and promote the practical transformation of functional nucleic acids.

摘要

功能性核酸(FNA)除了具有信息传递功能外,还具备特定的生物学功能,在疾病治疗领域受到了广泛关注。然而,在复杂的生理环境中,其血清稳定性较低,严重限制了它们的临床应用。在这项研究中,我们探索了一种精确的分子编程策略,以制备具有高血清稳定性的糖核酸适配体(GNAA)。设计并合成了四种与商业固相合成兼容的糖核酸模块。通过精确的分子设计,实现了在DNA适配体的特定位点对四种不同碳水化合物配体的精确修饰。结果表明,糖基化修饰能够显著提高DNA适配体的血清稳定性,同时保持其结构和高亲和力。这种稳定效果优于目前常用的商业化学修饰。此外,还证实了该方法对DNA适配体的肿瘤靶向能力和体内代谢影响不大。该方法为核酸的精确糖基化修饰提供了一种简单、经济且高效的策略。这使得制备具有高血清稳定性的糖基化功能性核酸成为可能,从而可以扩大功能性核酸的应用范围,并推动功能性核酸的实际转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ace1/11775523/8e94bdd45757/ADVS-12-2408168-g004.jpg

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