首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Chitosan-cellulose hydrogel conjugated with L-histidine and zinc oxide nanoparticles for sustained drug delivery: Kinetics and in-vitro biological studies
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Chitosan-cellulose hydrogel conjugated with L-histidine and zinc oxide nanoparticles for sustained drug delivery: Kinetics and in-vitro biological studies

机译:与L-组氨酸和氧化锌纳米粒子缀合的壳聚糖 - 纤维素水凝胶用于持续的药物递送:动力学和体外生物学研究

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摘要

Functionalised nanohybrid hydrogel using L-Histidine (HIS) conjugated chitosan, phyto-synthesised zinc oxide nanoparticles (ZNPs) and dialdehyde cellulose (DAC) was formulated as a sustained drug delivery carrier for the polyphenol drugs - Naringenin (NRG), Quercetin (QE) and Curcumin (CUR). A maximum loading efficiency of 90.55 %, 92.84 % and 89.89 %, respectively were optimised for NRG, QE and CUR in the hybrid hydrogel. The maximum drug release was favoured for the optimum drug loading and at pH-5. HIS-chitosan conjugation stabilised the hydrogel and enabled a sustained drug delivery. Drug release kinetics predicted a non-Fickian diffusion-based mechanism along with polymer erosion. Prominent antimicrobial activity against Staphylococcus aureus and Trichophyton rubrum strains were predicted to evolve based on the synergic formulation. Significant biocompatibility towards L929 cells revealed their support for normal cell survival. Anticancer studies towards A431 cells exhibited excellent cytotoxicity with a 15 to 30-fold increase using the hybrid carrier, compared to the free polyphenol drugs.
机译:使用L-组氨酸(HIS)缀合的壳聚糖,植物合成的氧化锌纳米粒子(ZnPS)和二醛纤维素(DAC)的官能化纳米含量水凝胶被配制为多酚药物的持续的药物递送载体 - Naringenin(NRG),槲皮素(QE)和姜黄素(cur)。最大加载效率为90.55%,92.84%和89.89%,针对杂合水凝胶中的NRG,QE和Cur优化了9.55%,92.84%和89.89%。最大的药物释放是有利于最佳药物载荷和pH-5。他的壳聚糖缀合稳定水凝胶并使能持续的药物递送。药物释放动力学预测了非Fickian扩散的机制以及聚合物腐蚀。预计抗金黄色葡萄球菌和毛癣菌毒株菌株的突出抗菌活性以基于协同制剂而发展。对L929细胞的显着生物相容性揭示了它们对正常细胞存活的支持。与游离多酚药物相比,使用杂交载体的抗癌研究表现出优异的细胞毒性,使用杂交载体增加15至30倍。

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