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Facile Tailoring of Structures for Controlled Release of Paracetamol from Sustainable Lignin Derived Platforms

机译:适用于可持续木质素衍生平台的亚乙酰氨基酚的控制释放结构剪裁

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摘要

Nowadays, sustainable materials are receiving significant attention due to the fact that they will be crucial for the development of the next generation of products and devices. In the present work, hydrogels have been successfully synthesized using lignin which is non-valorized biopolymer from the paper industry. Hydrogels were prepared via crosslinking with Poly(ethylene) glycol diglycidyl ether (PEGDGE). Different crosslinker ratios were used to determine their influence on the structural and chemical properties of the resulting hydrogels. It has been found that pore size was reduced by increasing crosslinker amount. The greater crosslinking density increased the swelling capacity of the hydrogels due to the presence of more hydrophilic groups in the hydrogel network. Paracetamol release test showed higher drug diffusion for hydrogels produced with a ratio lignin:PEGDGE 1:1. The obtained results demonstrate that the proposed approach is a promising route to utilize lignocellulose waste for producing porous materials for advanced biomedical applications in the pharmacy industry.
机译:如今,可持续材料由于他们对开发下一代产品和设备来说至关重要,因此可持续地受到重大关注。在本作工作中,使用木质素成功地合成了水凝胶,其中木质素是来自造纸工业的非算法的生物聚合物。通过与聚(乙烯)二醇二缩水甘油醚(PEGDGE)交联制备水凝胶。使用不同的交联剂比来确定它们对所得水凝胶的结构和化学性质的影响。已经发现通过增加交联剂量减少孔径。由于水凝胶网络中的更多亲水基团,更大的交联密度增加了水凝胶的溶胀容量。扑热酰胺释放试验显示用比例木质素和PEGDGE 1:1产生的水凝胶的药物扩散更高。所得结果表明,该方法是利用木质纤维素废物用于生产多孔材料,用于制造药房行业的高孔材料。

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