Selective Modification of Chitosan to Enable the Formation of Chitosan-DNA Condensates by Electron Donator Stabilization

K. E. Kador, A. Subramanian
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引用次数: 10

Abstract

Chitosan, a polyaminosaccharide, has been investigated for its use in the field of drug-delivery and biomaterial applications because of its natural biocompatibility and polycationic properties. Chemical modifications of chitosan have been attempted in an effort to increase the transfection efficiency with respect to gene delivery applications; however, it is unknown how these modifications affect the formation of the condensates. This study attempts to determine the effects of modification of the cationic center of chitosan on the ability to condense DNA. Specifically, electron-donating or -withdrawing groups were used as modifiers of the cationic charge on the chitosan backbone to stabilize the protonated form of chitosan, which is necessary to form condensates and increase the efficiency of the polymer to condense DNA by yielding condensates at a lower nitrogen to phosphorous (N : P) ratio. While an N : P ratio of 7 is needed to condense DNA with unmodified chitosan, phthalate-modified chitosan yielded condensates were obtained at an N : P ratio of 1.0.
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电子供体稳定修饰壳聚糖使壳聚糖- dna缩合物形成
壳聚糖是一种多聚糖,由于其天然的生物相容性和多阳离子性,在药物传递和生物材料领域的应用得到了广泛的研究。壳聚糖的化学修饰已被尝试以提高基因传递应用的转染效率;然而,尚不清楚这些修饰如何影响凝析油的形成。本研究试图确定修饰壳聚糖的阳离子中心对DNA浓缩能力的影响。具体而言,利用供电子或吸电子基团作为壳聚糖主链上阳离子电荷的改性剂,稳定壳聚糖的质子化形式,这是形成缩聚物和提高聚合物通过低氮磷(N: P)比缩聚物凝聚DNA的必要条件。未修饰壳聚糖的DNA凝聚需要N: P比为7,邻苯二甲酸酯修饰壳聚糖在N: P比为1.0时可以得到凝聚物。
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