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首页> 外文期刊>RSC Advances >pH- and electro-response characteristics of bacterial cellulose nanofiber/sodium alginate hybrid hydrogels for dual controlled drug delivery
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pH- and electro-response characteristics of bacterial cellulose nanofiber/sodium alginate hybrid hydrogels for dual controlled drug delivery

机译:用于双重控制药物递送的细菌纤维素纳米纤维/藻酸钠混合水凝胶的pH和电响应特性

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In this work, hybrid hydrogels composed of bacterial cellulose nanofibers (nf-BC) and sodium alginate (SA) were prepared as a dual-stimuli responsive release system. The pH and electric field stimulus-responsive swelling properties and the stimulus-responsive drug release behaviors of the nf-BC/SA hybrid hydrogels using Ibuprofen as a model drug, were investigated in vitro. As the pH changed from 1.5 to 11.8, the swelling ratio increased from less than 8 times compared with its dry weight at acidic conditions to more than 13 times when the pH value was 11.8. When the electric field changed from 0 to 0.5 V, the hybrid hydrogels also showed an increasing swelling ratio from 8 times to 14 times their dry weight. The release of Ibuprofen (IBU) could be controlled by the action of deprotonation or protonation of calcium alginate in the hydrogels under different pH conditions, faster in alkaline conditions and slower in acidic conditions. Furthermore, the drug release from the hybrid hydrogels could be enhanced with an applied electric stimulus. The drug release mechanism under pH and applied electric field could be interpreted by the superposition of both Fickian diffusion and case-II transport based on Peppas' semi-empirical equation. The nf-BC/SA hybrid hydrogels with dual pH- and electro-response were new promising candidates as controlled drug delivery systems.
机译:在这项工作中,由细菌纤维素纳米纤维(nf-BC)和海藻酸钠(SA)组成的杂化水凝胶被制备为双刺激响应释放系统。在体外研究了以布洛芬为模型药物的nf-BC / SA杂化水凝胶的pH和电场刺激响应溶胀特性以及刺激响应药物释放行为。当pH从1.5变为11.8时,溶胀率从在酸性条件下的干重的不到8倍增加到在pH值为11.8时的13倍以上。当电场从0变为0.5 V时,杂化水凝胶的溶胀率也从干重的8倍增加到14倍。布洛芬(IBU)的释放可以通过在不同pH条件下水凝胶中海藻酸钙的去质子化或质子化作用来控制,碱性条件下较快,酸性条件下较慢。此外,可以通过施加电刺激来增强从杂化水凝胶的药物释放。 pH和外加电场作用下的药物释放机理可以通过基于Peppas半经验方程的Fickian扩散和case-II运移的叠加来解释。具有pH和电响应双重功能的nf-BC / SA杂化水凝胶是控制药物传递系统的新有希望的候选者。

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