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通过功能性戊内酯的开环聚合制备可降解聚酯用于高效基因递送

Degradable polyesters via ring-opening polymerization of functional valerolactones for efficient gene delivery.

作者信息

Song Ling, Ding Ai-Xiang, Zhang Ke-Xin, Gong Bing, Lu Zhong-Lin, He Lan

机构信息

Key Laboratory of Radiopharmaceuticals, Ministry of Education, College of Chemistry, Beijing Normal University, Xinjiekouwai Street 19, Beijing 100875, China.

出版信息

Org Biomol Chem. 2017 Aug 9;15(31):6567-6574. doi: 10.1039/c7ob00822h.

Abstract

Degradable polymers as gene and drug carriers are emerging as one of the most promising types of materials in the biomedical and pharmaceutical areas. Herein, we report the synthesis of a series of block co-polyesters (B1-B6) and random co-polyesters (C1-C4) via ring-opening polymerization of tertiary amine-bearing valerolactone and alkylated valerolactone monomers. These polymers can completely inhibit the electrophoretic migrations of plasmid DNAs (pDNAs) at a w/w ratio of 2-6. The polyplexes of these polymers with pDNAs were steadily formed in a narrow range of sizes (75 to 220 nm) and could be effectively internalized into the cytoplasm. The results of transfection experiments showed that the block copolymers generally exhibited better performance than their random counterparts and the aliphatic chain lengths on the backbone of the polymers obviously affected the transfection efficiency (TE). Block copolymer B5 with n-octyl chains generated the best TE in Hek293T cells, which was 2.2 fold that of polyethylenimine (PEI) 25k under the optimal conditions. Moreover, these polymers were found to be more biocompatible compared to PEI 25k, and showed degradable properties. Our results suggest that these polymers are potentially reliable/efficient non-viral gene vectors.

摘要

可降解聚合物作为基因和药物载体正成为生物医学和制药领域最具前景的材料类型之一。在此,我们报道了通过含叔胺的戊内酯和烷基化戊内酯单体的开环聚合反应合成一系列嵌段共聚酯(B1 - B6)和无规共聚酯(C1 - C4)。这些聚合物在重量比为2 - 6时能完全抑制质粒DNA(pDNA)的电泳迁移。这些聚合物与pDNA形成的多聚体在较窄的尺寸范围内(75至220纳米)稳定形成,并且能够有效地内化到细胞质中。转染实验结果表明,嵌段共聚物通常比其无规对应物表现出更好的性能,并且聚合物主链上的脂肪族链长度明显影响转染效率(TE)。具有正辛基链的嵌段共聚物B5在Hek293T细胞中产生了最佳的TE,在最佳条件下是聚乙烯亚胺(PEI)25k的2.2倍。此外,发现这些聚合物与PEI 25k相比具有更高的生物相容性,并表现出可降解特性。我们的结果表明这些聚合物是潜在可靠/高效的非病毒基因载体。

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