点击化学
组合化学
核酸
环加成
化学
高分子
叠氮化物
翻译(生物学)
核糖核酸
DNA
纳米技术
共价键
小干扰RNA
过程(计算)
化学生物学
适体
化学合成
药物输送
生物化学
计算生物学
RNA干扰
连接器
化学改性
毒品携带者
基因传递
蛋白质工程
作者
Fei Pan,Shuai Yang,Rui Zhang,Jin Li,Guansai Liu,Jinsen Chen
出处
期刊:ACS omega
[American Chemical Society]
日期:2025-10-27
卷期号:10 (43): 52010-52017
标识
DOI:10.1021/acsomega.5c09358
摘要
Small interfering RNA (siRNA) represents a potent gene therapy tool, playing pivotal roles in treating cancers and genetic disorders due to its unique advantages. Chemical modifications of nucleic acids serve as critical strategies to enhance the stability and targeting capability of RNA therapeutics, while overcoming siRNA delivery hurdles predominantly relies on covalent conjugation between targeting ligands and siRNA molecules. Among various macromolecular conjugation approaches, copper-catalyzed azide-alkyne cycloaddition (CuAAC) is widely adopted owing to its high reactivity, specificity, and biocompatibility. This study focuses on the systematic optimization of CuAAC click chemistry for synthesizing trivalent targeting ligand-RNA conjugates. Through design of experiments screening, four key factors were identified: azide equivalents, oligo concentration, reaction pH, and ligand/Cu ratio. Optimal design spaces for these parameters were determined, providing a standardized solution for the large-scale production of multivalent ligand-RNA conjugates. This advancement significantly accelerates the clinical translation of RNAi therapeutics.
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