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一种用于癌症治疗中有效基因沉默的双重靶向树枝状聚合物介导的 siRNA 传递系统。

A Dual Targeting Dendrimer-Mediated siRNA Delivery System for Effective Gene Silencing in Cancer Therapy.

机构信息

State Key Laboratory of Natural Medicines and Jiangsu Key Laboratory of Drug Discovery for Metabolic Diseases, Center of Drug Discovery, Center of Advanced Pharmaceutics and Biomaterials , China Pharmaceutical University , 24 Tong Jia Xiang , 210009 Nanjing , People's Republic of China.

Aix-Marseille Université , CNRS, Centre Interdisciplinaire de Nanoscience de Marseille, UMR 7325, "Equipe Labellisée Ligue Contre le Cancer", 13288 Marseille , France.

出版信息

J Am Chem Soc. 2018 Nov 28;140(47):16264-16274. doi: 10.1021/jacs.8b10021. Epub 2018 Nov 1.

Abstract

Small interfering RNA (siRNA) is emerging as a novel therapeutic for treating various diseases, provided a safe and efficient delivery is available. In particular, specific delivery to target cells is critical for achieving high therapeutic efficacy while reducing toxicity. Amphiphilic dendrimers are emerging as novel promising carriers for siRNA delivery by virtue of the combined multivalent cooperativity of dendrimers with the self-assembling property of lipid vectors. Here, we report a ballistic approach for targeted siRNA delivery to cancer cells using an amphiphilic dendrimer equipped with a dual targeting peptide bearing an RGDK warhead. According to the molecular design, the amphiphilic dendrimer was expected to deliver siRNA effectively, while the aim of the targeting peptide was to home in on tumors via interaction of its warhead with integrin and the neuropilin-1 receptor on cancer cells. Coating the positively charged siRNA/dendrimer delivery complex with the negatively charged segment of the targeting peptide via electrostatic interactions led to small and stable nanoparticles which were able to protect siRNA from degradation while maintaining the accessibility of RGDK for targeting cancer cells and preserving the ability of the siRNA to escape from endosomes. The targeted system had enhanced siRNA delivery, stronger gene silencing, and more potent anticancer activity compared to nontargeted or covalent dendrimer-based systems. In addition, neither acute toxicity nor induced inflammation was observed. Consequently, this delivery system constitutes a promising nonviral vector for targeted delivery and can be further developed to provide RNAi-based personalized medicine against cancer. Our study also gives new perspectives on the use of nanotechnology based on self-assembling dendrimers in various biomedical applications.

摘要

小干扰 RNA(siRNA)作为一种治疗各种疾病的新型疗法正在兴起,只要有安全有效的递送方法。特别是,为了实现高效的治疗效果,同时降低毒性,将药物递送到特定的靶细胞是至关重要的。两亲性树枝状聚合物作为一种新型的有前途的 siRNA 递送载体,由于树枝状聚合物与脂质载体的自组装特性的多价协同作用而受到关注。在这里,我们报道了一种使用带有双靶向肽的两亲性树枝状聚合物将 siRNA 靶向递送到癌细胞的弹道方法,该靶向肽带有 RGDK 弹头。根据分子设计,预计两亲性树枝状聚合物能够有效地递送 siRNA,而靶向肽的目的是通过其弹头与整合素和癌细胞上的神经纤毛蛋白-1 受体的相互作用来靶向肿瘤。通过静电相互作用将带正电荷的 siRNA/树枝状聚合物递药复合物与靶向肽的带负电荷的片段包被,导致形成小而稳定的纳米颗粒,这些纳米颗粒能够保护 siRNA 免受降解,同时保持 RGDK 用于靶向癌细胞的可及性,并保持 siRNA 从内涵体逃逸的能力。与非靶向或共价树枝状聚合物系统相比,靶向系统具有增强的 siRNA 递送、更强的基因沉默和更有效的抗癌活性。此外,既没有观察到急性毒性,也没有观察到炎症反应。因此,该递送系统构成了一种有前途的靶向递送非病毒载体,并可以进一步开发,以提供针对癌症的基于 RNAi 的个性化药物。我们的研究还为基于自组装树枝状聚合物的纳米技术在各种生物医学应用中的应用提供了新的视角。

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