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l-Arginine grafted alginate hydrogel beads: A novel pH-sensitive system for specific protein delivery

化学 嫁接 肿胀 的 自愈水凝胶 多糖 精氨酸 海藻酸钙 核化学 高分子化学 胺气处理 化学工程 色谱法 氨基酸 生物化学 聚合物 有机化学 工程类
作者
M.S. Mohy Eldin,Elbadawy A. Kamoun,Mamdouh A. Sofan,Smaher M. Elbayomi
出处
期刊:Arabian Journal of Chemistry [Elsevier]
卷期号:8 (3): 355-365 被引量:56
标识
DOI:10.1016/j.arabjc.2014.01.007
摘要

Novel pH-sensitive hydrogels based on l-arginine grafted alginate (Arg-g-Alg) hydrogel beads were synthesized and utilized as a new carrier for protein delivery (BSA) in specific pH media. l-arginine was grafted onto the polysaccharide backbone of virgin alginate via amine functions. Evidences of grafting of alginate were extracted from FT-IR and thermal analysis, while the morphological structure of Arg-g-Alg hydrogel beads was investigated by SEM photographs. Factors affecting on the grafting process e.g. l-arginine concentration, reaction time, reaction temperature, reaction pH, and crosslinking conditions, have been studied. Whereas, grafting efficiency of each factor was evaluated. Grafting of alginate has improved both thermal and morphological properties of Arg-g-Alg hydrogel beads. The swelling behavior of Arg-g-Alg beads was determined as a function of pH and compared with virgin calcium alginate beads. The cumulative in vitro release profiles of BSA loaded beads were studied at different pHs for simulating the physiological environments of the gastrointestinal tract. The amount of BSA released from neat alginate beads at pH 2 was almost 15% after 5 h, while the Arg-g-Alg beads at the same conditions were clearly higher than 45%, then it increased to 90% at pH 7.2. Accordingly, grafting of alginate has improved its release profile behavior particularly in acidic media. The preliminary results clearly suggested that the Arg-g-Alg hydrogel may be a potential candidate for polymeric carrier for oral delivery of protein or drugs.
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