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用于肿瘤靶向基因传递的原位双重交联纳米颗粒。

In situ dual-crosslinked nanoparticles for tumor targeting gene delivery.

机构信息

Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China; University of Chinese Academy of Sciences, Beijing 100039, PR China.

Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China.

出版信息

Acta Biomater. 2018 Jan;65:349-362. doi: 10.1016/j.actbio.2017.06.037. Epub 2017 Jun 27.

Abstract

UNLABELLED

The instability of gene delivery systems and their "off-target" features are among the major hurdles in gene therapy. In this study, a facile fabrication platform is constructed to endow the gene delivery system with high stability in the circulation system and achieve targeted delivery of plasmid DNA (pDNA) into cancer cells. Aldehyde groups-bearing hyaluronic acid (HA-CHO) is initially synthesized through oxidation, and is then shielded on polyethylenimine/DNA (PEI/DNA) complex particles to form dual-crosslinked nanoparticles in situ. These nanoparticles simultaneously possess electrostatic and chemical crosslinks between outer layers and cores. The dual-crosslinking system further offers the following advantages when used for gene delivery. First, the two different in situ crosslinking routes strengthen nanoparticle stability. Second, targeting ligands on HA layers mediate specific recognition toward cancer cells. Cell and animal experiments demonstrate that the as-prepared complex particles exhibit enhanced stability in serum and excellent long circulation behavior in vivo. Third, the dual-crosslinked nanoparticles present good accumulation ability in tumors after intravenous injection into nude mice bearing HeLa tumors. Overall, the dual-crosslinking strategy is a promising solution for constructing an efficient gene delivery system.

STATEMENT OF SIGNIFICANCE

This manuscript focused on the in situ dual-crosslinked nanoparticles for tumor targeting pDNA delivery. The novel system is prepared by in situ shielding HA-CHO on PEI/DNA complexes. The electrostatic crosslink formed between carboxyl groups on HA-CHO and amine groups on PEI as well as the reaction between aldehyde groups on HA-CHO and amine groups on PEI contributes to the chemical crosslink. By introduction of HA-CHO on PEI/DNA complexes, they show promoting colloidal stability, enhanced cellular uptake and tumor targeting ability. The in vivo experiments further confirm the excellent ability of long circulation and tumor accumulation. Accordingly, HA-CHO2/PEI/DNA has great potential for tumor targeting antitumor therapy.

摘要

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基因传递系统的不稳定性及其“脱靶”特征是基因治疗的主要障碍之一。在本研究中,构建了一种简便的制备平台,赋予基因传递系统在循环系统中具有高稳定性,并实现质粒 DNA(pDNA)靶向递送至癌细胞。通过氧化,最初合成了带有醛基的透明质酸(HA-CHO),然后将其屏蔽在聚乙烯亚胺/DNA(PEI/DNA)复合物颗粒上,在原位形成双交联纳米颗粒。这些纳米颗粒的外层和核心之间同时具有静电和化学交联。当用于基因传递时,双交联系统具有以下优势。首先,两种不同的原位交联途径增强了纳米颗粒的稳定性。其次,HA 层上的靶向配体介导对癌细胞的特异性识别。细胞和动物实验表明,所制备的复合颗粒在血清中表现出增强的稳定性和优异的体内长循环行为。第三,静脉注射到荷 HeLa 肿瘤裸鼠体内后,双交联纳米颗粒在肿瘤中有良好的积累能力。总的来说,双交联策略是构建高效基因传递系统的一种有前途的方法。

意义声明

本文专注于用于肿瘤靶向 pDNA 传递的原位双交联纳米颗粒。该新型系统是通过在 PEI/DNA 复合物上原位屏蔽 HA-CHO 制备的。HA-CHO 上的羧基与 PEI 上的氨基之间形成的静电交联以及 HA-CHO 上的醛基与 PEI 上的氨基之间的反应有助于形成化学交联。通过在 PEI/DNA 复合物上引入 HA-CHO,它们表现出促进胶体稳定性、增强细胞摄取和肿瘤靶向能力。体内实验进一步证实了其优异的长循环和肿瘤积累能力。因此,HA-CHO2/PEI/DNA 具有用于肿瘤靶向抗肿瘤治疗的巨大潜力。

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