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用于质粒DNA递送的可生物降解聚(D,L-乳酸-共-乙醇酸)微球的多功能性

Versatility of biodegradable poly(D,L-lactic-co-glycolic acid) microspheres for plasmid DNA delivery.

作者信息

Díez Sonsoles, Tros de Ilarduya Conchita

机构信息

Department of Pharmacy and Pharmaceutical Technology, School of Pharmacy, University of Navarra, Pamplona, Spain.

出版信息

Eur J Pharm Biopharm. 2006 Jun;63(2):188-97. doi: 10.1016/j.ejpb.2006.03.007. Epub 2006 May 11.

DOI:10.1016/j.ejpb.2006.03.007
PMID:16697172
Abstract

In this study, we have optimized different formulations of DNA encapsulated into PLGA microspheres by correlating the protocol of preparation and the molecular weight and composition of the polymer, with the main characteristics of these systems in order to design an efficient non-viral gene delivery vector. For that, we prepared poly(D,L-lactic-co-glycolic acid) (PLGA) microparticles with an optimized water-oil-water double emulsion process, by using several types of polymers (RG502, RG503, RG504, RG502H and RG752), and characterized in terms of size, zeta potential, encapsulation efficiency (EE%), morphology, DNA conformation, release kinetics, plasmid integrity and erosion. The size of the particles ranged between 0.7 and 5.7 microm depending on the protocol of formulation and the molecular mass of the polymer used. The microspheres prepared by using in their formulation polymers of high molecular weight (RG503 and RG504) were bigger in size than in the case of using a lower molecular weight polymer (RG502). The EE (%) of plasmid DNA increased with increasing the molecular mass of the polymer and by using the most hydrophilic polymer RG502H, which contains terminal acidic groups in its structure. The plasmid could be encapsulated without compromising its structural and functional integrity. Also a protective effect of PLGA on endonuclease digestion is observed. Plasmid DNA release from microspheres composed of low molecular weight or hydrophilic polymers, like RG502H, was faster than from particles containing high molecular weight or hydrophobic polymers. These PLGA microspheres could be an alternative to the viral vectors used in gene therapy, given that may be used to deliver genes and other bioactive molecules, either very rapidly or in a controlled manner.

摘要

在本研究中,我们通过关联制备方案与聚合物的分子量和组成,以及这些体系的主要特性,优化了封装于聚乳酸-羟基乙酸共聚物(PLGA)微球中的不同DNA制剂,以设计一种高效的非病毒基因递送载体。为此,我们采用优化的水-油-水双乳液法制备了聚(D,L-乳酸-共-乙醇酸)(PLGA)微粒,使用了几种类型的聚合物(RG502、RG503、RG504、RG502H和RG752),并对其大小、zeta电位、包封率(EE%)、形态、DNA构象、释放动力学、质粒完整性和侵蚀情况进行了表征。颗粒大小根据制剂方案和所用聚合物的分子量在0.7至5.7微米之间变化。使用高分子量聚合物(RG503和RG504)制备的微球比使用低分子量聚合物(RG502)时更大。质粒DNA的EE(%)随着聚合物分子量的增加以及使用结构中含有末端酸性基团的亲水性最强的聚合物RG502H而增加。质粒能够在不损害其结构和功能完整性的情况下被封装。还观察到PLGA对核酸内切酶消化具有保护作用。由低分子量或亲水性聚合物(如RG502H)组成的微球中质粒DNA的释放比含有高分子量或疏水性聚合物的颗粒更快。鉴于这些PLGA微球可用于非常快速或可控地递送基因和其他生物活性分子,它们可能成为基因治疗中使用的病毒载体的替代品。

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