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首页> 外文期刊>Biomaterials >Preparation of oxidized glucose-crosslinked N-alkylated chitosan membrane and in vitro studies of pH-sensitive drug delivery behaviour.
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Preparation of oxidized glucose-crosslinked N-alkylated chitosan membrane and in vitro studies of pH-sensitive drug delivery behaviour.

机译:氧化葡萄糖交联的N-烷基化壳聚糖膜的制备以及pH敏感药物递送行为的体外研究。

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摘要

Glucose was oxidized to generate a glucose dialdehyde and chitosan (CS) was hydrophobicallly modified with butyl bromide, octyl bromide and dexyl bromide. The analysis of IR and X-ray diffraction results of CS derivatives confirms that the hydrogen bonds and crystallinity were weakened by the incorporation of pendant alkyl. The permeability coefficient P and diffusion coefficient D for model drug vitamin B2 through oxidized glucose-crosslinked alkylated CS membrane were determined under different pH media. The results show that for the same alkylated CS in different pH media, P and D decrease with an increase in pH; for different alkxylated CSs in acidic media, P and D diminish with the increase in the length of alkyl side, which is supposedly originated from the enhancement of hydrophobicity. In alkali medium, P and D show a rising trend with the increase in the length of alkyl chain, which might be related to the loose stacking of network as it occurs to shrink in alkali medium. The preliminary cytotoxicity assay indicates that oxidized glucose-crosslinked alkylate CS membrane is non-toxic in vitro.
机译:葡萄糖被氧化以产生葡萄糖二醛,并且壳聚糖(CS)被丁基溴,辛基溴和右甲基溴疏水性改性。 CS衍生物的IR和X射线衍射结果分析证实,氢键和结晶度被烷基侧基的引入所削弱。在不同的pH介质下,测定了模型药物维生素B2通过氧化葡萄糖交联的烷基化CS膜的渗透系数P和扩散系数D。结果表明,对于相同的烷基化CS,在不同的pH介质中,P和D随pH的增加而降低;对于酸性介质中不同的烷氧基化CS,P和D随烷基侧边长度的增加而减小,这可能是由于疏水性的增强所致。在碱性介质中,P和D随烷基链长度的增加而呈上升趋势,这可能与在碱性介质中收缩时网络的松散堆积有关。初步的细胞毒性试验表明,氧化的葡萄糖交联的烷基化CS膜在体外无毒。

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