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基于多糖和木质素的水凝胶,通过反应挤出工艺生产,具有作为药物传递系统的潜在药用用途。

Polysaccharides and lignin based hydrogels with potential pharmaceutical use as a drug delivery system produced by a reactive extrusion process.

机构信息

North Carolina State University, College of Natural Resources, Department of Forest Biomaterials, Raleigh, NC, USA; Université Jean Monnet, IMP, UMR CNRS 5223, Université de Lyon, F-42023 Saint-Etienne, France.

North Carolina State University, College of Natural Resources, Department of Forest Biomaterials, Raleigh, NC, USA.

出版信息

Int J Biol Macromol. 2017 Nov;104(Pt A):564-575. doi: 10.1016/j.ijbiomac.2017.06.037. Epub 2017 Jun 8.

Abstract

Currently, there is very strong interest to replace synthetic polymers with biological macromolecules of natural source for applications that interact with humans or the environment. This research describes the development of drug delivery hydrogels from natural polymers, starch, lignin and hemicelluloses by means of reactive extrusion. The hydrogels show a strong swelling ability dependent on pH which may be used to control diffusion rates of water and small molecules in and out of the gel. Also the hydrogels degradation rates were studied in a physiological solution (pH 7.4) for 15days. The results indicated that for all three macromolecules, lower molecular weight and higher level of plasticizer both increase the rate of weight loss of the hydrogels. The degradation was extremely reduced when the polymers were extruded in the presence of a catalyst. Finally the dynamic mechanical analysis revealed that the degradation of the hydrogels induce a significant reduction in the compressive modulus. This study demonstrates the characteristics and potential of natural polymers as a drug release system.

摘要

目前,人们非常有兴趣用天然来源的生物大分子替代合成聚合物,用于与人类或环境相互作用的应用。本研究通过反应挤出法开发了由天然聚合物(淀粉、木质素和半纤维素)制成的药物输送水凝胶。水凝胶具有很强的依赖于 pH 值的溶胀能力,可用于控制水和小分子在凝胶内外的扩散速率。还在生理溶液(pH7.4)中研究了水凝胶 15 天的降解率。结果表明,对于所有三种大分子,较低的分子量和较高的增塑剂水平都增加了水凝胶的失重率。当聚合物在催化剂存在下挤出时,降解速度会大大降低。最后,动态力学分析表明,水凝胶的降解会导致压缩模量显著降低。本研究证明了天然聚合物作为药物释放系统的特性和潜力。

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