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壳聚糖-乙二胺四乙酸共轭物多聚体作为纳米颗粒基因递送系统的体外评价

In vitro evaluation of chitosan-EDTA conjugate polyplexes as a nanoparticulate gene delivery system.

作者信息

Loretz Brigitta, Bernkop-Schnürch Andreas

机构信息

Department of Pharmaceutical Technology, Institute of Pharmacy, Leopold-Franzens-University Innsbruck, 6020 Innsbruck, Austria.

出版信息

AAPS J. 2006;8(4):E756-64. doi: 10.1208/aapsj080485.

Abstract

It was the purpose of this study to evaluate the potential of different molecular-weight chitosan-EDTA conjugates as a carrier matrix for nanoparticulate gene delivery systems. Covalent binding of EDTA to more than one chitosan chain provides a cross-linked polymer that is anticipated to produce stabilized particles. pDNA/chitosan-EDTA particles, generated via coazervation, were characterized in size and zeta potential by electrophoretic light scattering and electron microscopy. Stability was investigated at different pH values by enzymatic degradation and subsequent gel retardation assay. Lactate dehydrogenase assay was performed to determine toxicity. Furthermore, transfection efficiency into Caco-2 cells was assessed using a beta-galactosidase reporter gene. Chitosan-EDTA produced from low-viscous chitosan with 68% amino groups being modified by the covalent attachment of EDTA showed the highest complexing efficacy resulting in nanoparticles of 43 nm mean size and exhibiting a zeta potential of +6.3 mV. These particles were more stable at pH 8 than chitosan control particles. The cytotoxicity of chitosan-EDTA particles was below 1% over a time period of 4 hours. These new nanoplexes showed 35% improved in vitro transfection efficiency compared with unmodified chitosan nanoparticles. According to these results, the chitosan-EDTA conjugate may be a promising polymer for gene transfer.

摘要

本研究旨在评估不同分子量的壳聚糖 - EDTA 共轭物作为纳米颗粒基因递送系统载体基质的潜力。EDTA 与多条壳聚糖链的共价结合形成了一种交联聚合物,预计可产生稳定的颗粒。通过共凝聚法制备的 pDNA/壳聚糖 - EDTA 颗粒,采用电泳光散射和电子显微镜对其尺寸和zeta 电位进行了表征。通过酶降解和随后的凝胶阻滞试验研究了不同 pH 值下的稳定性。进行乳酸脱氢酶测定以确定毒性。此外,使用β-半乳糖苷酶报告基因评估了对 Caco-2 细胞的转染效率。由低粘度壳聚糖制备的壳聚糖 - EDTA,其中 68% 的氨基通过 EDTA 的共价连接进行了修饰,显示出最高的络合效率,形成了平均尺寸为 43 nm 且 zeta 电位为 +6.3 mV 的纳米颗粒。这些颗粒在 pH 8 时比壳聚糖对照颗粒更稳定。壳聚糖 - EDTA 颗粒在 4 小时内的细胞毒性低于 1%。与未修饰的壳聚糖纳米颗粒相比,这些新型纳米复合物的体外转染效率提高了 35%。根据这些结果,壳聚糖 - EDTA 共轭物可能是一种有前途的基因转移聚合物。

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本文引用的文献

2
3
Characterization of folate-chitosan-DNA nanoparticles for gene therapy.
Biomaterials. 2006 Mar;27(9):2060-5. doi: 10.1016/j.biomaterials.2005.09.020. Epub 2005 Oct 3.
4
DNA-based therapeutics and DNA delivery systems: a comprehensive review.
AAPS J. 2005 Apr 8;7(1):E61-77. doi: 10.1208/aapsj070109.
5
Transfection efficiency of chitosan vectors: effect of polymer molecular weight and degree of deacetylation.
J Control Release. 2005 Sep 2;106(3):391-406. doi: 10.1016/j.jconrel.2005.05.004.
7
pDNA bioparticles: comparative heterogeneity, surface, binding, and activity analyses.
Biochem Biophys Res Commun. 2004 Jun 25;319(2):426-32. doi: 10.1016/j.bbrc.2004.04.188.
9
Mesenchymal stem cells, MG63 and HEK293 transfection using chitosan-DNA nanoparticles.
Biomaterials. 2003 Mar;24(7):1255-64. doi: 10.1016/s0142-9612(02)00507-0.

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