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Layer-by-Layer Self-Assembly of Modified Hyaluronic Acid/ Chitosan Based on Hydrogen Bonding

机译:基于氢键的改性透明质酸/壳聚糖的层间自组装

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The fabrication of hydrogen bonded polymer self-assembly for drug delivery has been accomplished via layer-by-layer sequential assembly from aqueous solution. In this study, the self-assembly was constructed based on hydrogen bonding between DNA base (adenine and thymine) pairs substituted on the backbone of chitosan and hyaluronic acid. Chitosan was modified with adenine, whereas hyaluronic acid was modified with thymine. Subsequently, these two polymers were sequentially absorbed on flat substrate by taking advantage of interactions of DNA base pairs via hydrogen bonding. Interlayer hydrogen bonding of these two polymers produces stable multilayer film without using any cross-linking agent. Thin film formation on quartz substrate has been monitored with UV-vis spectra and an AFM study. Formation of multilayer hydrogen-bonded thin film has been further confirmed with SEM. Encapsulation and release behavior of the therapeutic drug from the multilayer thin film at different conditions has been illustrated using UV-vis spectra. Cell viability of modified polymers using MTT assay confirmed no cytotoxic effect.
机译:通过从水溶液的逐层顺序组装已经完成了用于药物递送的氢键聚合物自组装的制备。在这项研究中,基于组装在壳聚糖和透明质酸骨架上的DNA碱基(腺嘌呤和胸腺嘧啶)对之间的氢键构建了自组装体。壳聚糖被腺嘌呤修饰,而透明质酸被胸腺嘧啶修饰。随后,通过氢键结合DNA碱基对的相互作用,将这两种聚合物依次吸附在平坦的基底上。这两种聚合物的层间氢键键合可产生稳定的多层膜,而无需使用任何交联剂。石英基材上的薄膜形成已通过紫外可见光谱和AFM研究进行了监测。 SEM进一步证实了多层氢键合薄膜的形成。使用UV-vis光谱已经说明了治疗药物在不同条件下从多层薄膜的包封和释放行为。使用MTT分析的改性聚合物的细胞生存力证实没有细胞毒性作用。

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