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双重功能磁共振成像和基因递送的磁性胶束。

Dual-purpose magnetic micelles for MRI and gene delivery.

机构信息

Molecular Medicine Department, College of Medicine, University of South Florida, 12901 Bruce B. Downs Blvd., Tampa, FL 33612, USA.

出版信息

J Control Release. 2012 Oct 10;163(1):82-92. doi: 10.1016/j.jconrel.2012.04.030. Epub 2012 Apr 26.

Abstract

Gene therapy is a promising therapeutic approach for treating disease, but the efficient delivery of genes to desired locations with minimal side effects remains a challenge. In addition to gene therapy, it is also highly desirable to provide sensitive imaging information in patients for disease diagnosis, screening and post-therapy monitoring. Here, we report on the development of dual-purpose chitosan and polyethyleneimine (PEI) coated magnetic micelles (CP-mag-micelles) that can deliver nucleic acid-based therapeutic agents and also provide magnetic resonance imaging (MRI). These 'theranostic' CP-mag-micelles are composed of monodisperse hydrophobic superparamagnetic iron oxide nanoparticles (SPIONs) loaded into the cores of micelles that are self-assembled from a block copolymer of poly (D, L-lactide) (PLA) and monomethoxy polyethylene glycol (mPEG). For efficient loading and protection of the nucleic acids the micelles were coated with cationic polymers, such as chitosan and PEI. The morphology and size distribution of the CP-mag-micelles were characterized and their potential for use as an MRI-probe was tested using an MRI scanner. The T(2) relaxivity of mag-micelles was similar to CP-mag-micelles confirming that coating with cationic polymers did not alter magnetism. Nanoparticles coated with chitosan:PEI at a weight ratio of 5:5 showed higher transfection efficiency in HEK293, 3T3 and PC3 cells than with weight ratios of 3:7 or 7:3. CP-mag-micelles are biocompatible, can be delivered to various organs and are safe. A single injection of CP-mag-micelles carrying reporter plasmids in vivo expressed genes for at least one week. Collectively, our results demonstrate that a structural reinforcement of SPIONs loaded in the core of an mPEG-PLA micelle coated with cationic polymers provides efficient DNA delivery and enhanced MRI potential, and affords a promising candidate for theranostics in the future.

摘要

基因治疗是一种很有前途的治疗疾病的方法,但如何将基因高效递送到所需的位置而又尽量减少副作用仍然是一个挑战。除了基因治疗之外,还非常希望能为患者提供敏感的成像信息,用于疾病诊断、筛查和治疗后监测。在这里,我们报告了一种双重用途的壳聚糖和聚乙烯亚胺(PEI)包覆的磁性胶束(CP-mag-micelles)的开发,它可以递送基于核酸的治疗剂,同时还可以提供磁共振成像(MRI)。这些“治疗诊断”两用的 CP-mag-micelles 由单分散的疏水性超顺磁性氧化铁纳米粒子(SPIONs)组成,这些纳米粒子装载在由聚(D,L-丙交酯)(PLA)和单甲氧基聚乙二醇(mPEG)的嵌段共聚物自组装而成的胶束的核心内。为了实现核酸的高效负载和保护,胶束用阳离子聚合物如壳聚糖和 PEI 进行了包覆。用磁共振成像扫描仪对 CP-mag-micelles 的形态和粒径分布进行了表征,并测试了它们作为 MRI 探针的潜力。磁胶束的 T(2)弛豫率与 CP-mag-micelles 相似,证实了用阳离子聚合物包覆不会改变磁性。用壳聚糖:PEI 重量比为 5:5 包覆的纳米粒子在 HEK293、3T3 和 PC3 细胞中的转染效率高于重量比为 3:7 或 7:3 的纳米粒子。CP-mag-micelles 具有生物相容性,可以递送到各种器官,并且安全。体内注射携带报告质粒的 CP-mag-micelles 后,至少在一周内表达基因。总的来说,我们的结果表明,在 mPEG-PLA 胶束核心内装载 SPIONs 并包覆阳离子聚合物可以提供高效的 DNA 递送和增强的 MRI 潜力,为未来的治疗诊断提供了有前途的候选物。

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J Control Release. 2012 Oct 10;163(1):82-92. doi: 10.1016/j.jconrel.2012.04.030. Epub 2012 Apr 26.

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