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叶酸修饰的阳离子γ-环糊精-聚乙二醇亚胺星形聚合物,具有生物还原二硫键连接物,用于高效靶向基因传递。

Folic acid modified cationic γ-cyclodextrin-oligoethylenimine star polymer with bioreducible disulfide linker for efficient targeted gene delivery.

机构信息

Department of Bioengineering, Faculty of Engineering, National University of Singapore, 7 Engineering Drive 1, Singapore.

出版信息

Biomacromolecules. 2013 Feb 11;14(2):476-84. doi: 10.1021/bm301718f. Epub 2013 Jan 16.

DOI:10.1021/bm301718f
PMID:23323627
Abstract

For an efficient folate-targeted delivery, while the interaction between the folate on the carriers and the folate receptor (FR) on the cells is necessary, the recovering and recycling of FR to maintain a high density level of FR on the cellular membrane is also important. Herein, we demonstrate a design and synthesis of a new star-shaped cationic polymer containing a γ-cyclodextrin (γ-CD) core and multiple oligoethylenimine (OEI) arms with folic acid (FA) linked by a bioreducible disulfide bond for efficient targeted gene delivery. The newly synthesized cationic polymer, named γ-CD-OEI-SS-FA, could be cleaved efficiently, and FA was readily released under reductive condition similar to intracellular environment. The γ-CD-OEI-SS-FA polymer was well-characterized and studied in terms of its gene delivery properties in FR-positive KB cells and FR-negative A549 cells under various conditions, in comparison with cationic polymers such as high molecular weight branched polyethylenimine (PEI), γ-CD-OEI star-shaped cationic polymer, γ-CD-OEI-FA polymer where FA was directed linked to the star polymer without disulfide linker. Our data have demonstrated that the new γ-CD-OEI-SS-FA gene carrier had low cytotoxicity and possessed capacity to target and deliver DNA to specific tumor cells that overexpress FRs, as well as functions to recover and recycle FRs onto cellular membranes to facilitate continuous FR-mediated endocytosis to achieve very high levels of gene expression. This study has expanded the strategy of FA-targeted delivery by combining the smart FR-recycling function to achieve the significant enhancement of gene expression. The new FA-targeted and bioreducible carrier may be a promising efficient gene delivery system for potential cancer gene therapy.

摘要

为了实现高效的叶酸靶向递送,载体上的叶酸与细胞表面的叶酸受体(FR)之间的相互作用是必要的,而 FR 的回收和再循环对于维持细胞膜上 FR 的高浓度水平也很重要。在此,我们设计并合成了一种新型星形阳离子聚合物,该聚合物含有一个γ-环糊精(γ-CD)核心和多个通过生物还原性二硫键连接叶酸(FA)的低聚亚乙基亚胺(OEI)臂,用于高效靶向基因递送。新合成的阳离子聚合物命名为γ-CD-OEI-SS-FA,可在类似细胞内环境的还原条件下有效切割,FA 也可轻易释放。γ-CD-OEI-SS-FA 聚合物被很好地表征,并在 FR 阳性 KB 细胞和 FR 阴性 A549 细胞中,根据其在各种条件下的基因递送特性进行了研究,与阳离子聚合物如高分子量支化聚乙烯亚胺(PEI)、γ-CD-OEI 星形阳离子聚合物、FA 通过二硫键连接到星形聚合物上的 γ-CD-OEI-FA 聚合物进行了比较。我们的数据表明,新型γ-CD-OEI-SS-FA 基因载体具有低细胞毒性,并具有靶向和将 DNA 递送至过度表达 FR 的特定肿瘤细胞的能力,以及回收和再循环 FR 到细胞膜上以促进连续 FR 介导的内吞作用以实现非常高水平的基因表达的功能。该研究通过结合智能 FR 回收功能扩展了 FA 靶向递送的策略,实现了基因表达的显著增强。新型 FA 靶向和生物还原性载体可能是一种有前途的高效基因传递系统,适用于潜在的癌症基因治疗。

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