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Copolymerization of Chitosan Selectively Grafted by Polyethylene glycol as DNA Delivery Vectors

机译:聚乙二醇选择性接枝的壳聚糖作为DNA传递载体的共聚合

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Co polymerization of chitosan selectively grafted by polyethylene glycol was studied in this paper. The graft copolymers can be expected to be used as DNA delivery vectors because of the improving hydrophilicity of chitosan and reserving the amino groups on chitosan chains. Chitosan was selectively grafted by monomethoxy polyethylene glycol(mPEG-OH), which contains a hydroxyl group combining with hexamethylene diisocyanate(HDI) to form a novel macro monomer namely monomethoxy polyethylene glycol isocyanate (mPEG-NCO) containing a isocyanate group with higher chemical activity in ethyl glyoxalate solution absolutely without water. The selective grafted co polymerization of Chitosan with mPEG-NCO was conducted under heterogeneous conditions as suspension in dimethylformamide. The hydrophilic copolymers of chitosan were prepared by condensation reaction of isocyanate group on mPEG-NCO with hydroxy groups on chitosan chains because amino groups on chitosan chains were protected by complexion formation with copper ions. The effect of reaction condition on the grafting extents was discussed. Swelling properties of mPEG-g-CS were researched. The graft copolymer mPEG-g-CS was characterized by the infrared spectra. The result showed that the copper ions were very effective to protect amino groups from condensation reaction. The swelling level in water increases with adding of grafting ratio. The maximum swelling degree was up to above 132% when the grafting ratio was about 270%. The graft copolymer can be soluble partially in pure water.
机译:本文研究了聚乙二醇选择性接枝壳聚糖的共聚合反应。由于改善了壳聚糖的亲水性并保留了壳聚糖链上的氨基,因此可以期望将接枝共聚物用作DNA传递载体。用含有羟基的单甲氧基聚乙二醇(mPEG-OH)与六亚甲基二异氰酸酯(HDI)结合选择性接枝壳聚糖,以形成一种新型的大分子单体,即具有较高化学活性的异氰酸酯基的单甲氧基聚乙二醇异氰酸酯(mPEG-NCO)。在乙二酸乙酯溶液中完全不用水。壳聚糖与mPEG-NCO的选择性接枝共聚合反应是在非均相条件下悬浮在二甲基甲酰胺中进行的。壳聚糖的亲水性共聚物是通过mPEG-NCO上的异氰酸酯基与壳聚糖链上的羟基的缩合反应制得的,因为壳聚糖链上的氨基受到与铜离子形成络合物的保护。讨论了反应条件对接枝程度的影响。研究了mPEG-g-CS的溶胀特性。通过红外光谱表征了接枝共聚物mPEG-g-CS。结果表明铜离子对于保护氨基免于缩合反应非常有效。水中的溶胀度随接枝率的增加而增加。当接枝率约为270%时,最大溶胀度高达132%以上。接枝共聚物可以部分溶于纯水中。

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