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用于细胞靶向癌症治疗的高效生物活性寡核苷酸-蛋白质偶联物

Efficient bioactive oligonucleotide-protein conjugation for cell-targeted cancer therapy.

作者信息

Aviñó Anna, Unzueta Ugutz, Virtudes Céspedes María, Casanova Isolda, Vázquez Esther, Villaverde Antonio, Mangues Ramon, Eritja Ramon

机构信息

Institute for Advanced Chemistry of Catalonia (IQAC) Spanish Council for Scientific Research (CSIC) Jordi Girona 18-26 08034 Barcelona Spain.

Networking Center on Bioengineering Biomaterials and Nanomedicine (CIBER-BBN).

出版信息

ChemistryOpen. 2019 Mar 28;8(3):382-387. doi: 10.1002/open.201900038. eCollection 2019 Mar.

Abstract

Oligonucleotide-protein conjugates have important applications in biomedicine. Simple and efficient methods are described for the preparation of these conjugates. Specifically, we describe a new method in which a bifunctional linker is attached to thiol-oligonucleotide to generate a reactive intermediate that is used to link to the protein. Having similar conjugation efficacy compared with the classical method in which the bifunctional linker is attached first to the protein, this new approach produces significantly more active conjugates with higher batch to batch reproducibility. In a second approach, direct conjugation is proposed using oligonucleotides carrying carboxyl groups. These methodologies have been applied to prepare nanoconjugates of an engineered nanoparticle protein carrying a T22 peptide with affinity for the CXCR4 chemokine receptor and oligomers of the antiproliferative nucleotide 2'-deoxy-5-fluorouridine in a very efficient way. The protocols have potential uses for the functionalization of proteins, amino-containing polymers or amino-lipids in order to produce complex therapeutic nucleic acid delivery systems.

摘要

寡核苷酸-蛋白质缀合物在生物医学领域有着重要应用。本文描述了制备这些缀合物的简单高效方法。具体而言,我们介绍了一种新方法,即将双功能连接子连接到硫醇化寡核苷酸上,生成一种反应性中间体,用于与蛋白质连接。与先将双功能连接子连接到蛋白质上的经典方法相比,这种新方法具有相似的缀合效率,能产生活性显著更高且批次间重现性更好的缀合物。在第二种方法中,提出使用携带羧基的寡核苷酸进行直接缀合。这些方法已被非常有效地应用于制备携带对CXCR4趋化因子受体具有亲和力的T22肽的工程化纳米颗粒蛋白与抗增殖核苷酸2'-脱氧-5-氟尿苷寡聚物的纳米缀合物。这些方案对于蛋白质、含氨基聚合物或氨基脂质的功能化具有潜在用途,以生产复杂的治疗性核酸递送系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cab0/6437810/4f5ce4545b3a/OPEN-8-382-g003.jpg

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