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Green processing of thermosensitive nanocurcumin-encapsulated chitosan hydrogel towards biomedical application

机译:热敏纳米姜黄素包裹壳聚糖水凝胶的绿色加工在生物医学中的应用

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nIn this study, in order to enhance the aqueous solubility and to overcome the limitation of curcumin (Cur) in free form, as well as to develop a carrier for transdermal delivery of hydrophobic pharmaceutical agents such as Cur, a sonicated synthetic process of nanocurcumin (nCur) in thermally responsive Chitosan-g-Pluronic (CP) copolymer is disclosed herein. The use of CP copolymer solution as a dispersant medium is a very attractive method to avoid the use of toxic organic solvent and non-biocompatible surfactant. The obtained Cur nanoparticles had a fairly narrow distribution of 8-23 nm. nCur-dispersed CP solution showed good stability with no change in color characteristic and no phase separation after 1 month of storage. Rheological characterization of CP hydrogels had indicated sol-gel transition at the same temperature (35 degrees C). Interestingly, the rate of Cur release for this system can be conveniently modulated as transdermal drug delivery.
机译:n在这项研究中,为了增强水溶性和克服游离形式的姜黄素(Cur)的局限性,以及开发用于透皮递送疏水性药剂(例如Cur)的载体,一种经超声处理的纳米姜黄素合成工艺(本文公开了热响应性壳聚糖-g-Pluronic(CP)共聚物中的nCur)。使用CP共聚物溶液作为分散剂是避免使用有毒有机溶剂和非生物相容性表面活性剂的非常有吸引力的方法。所获得的Cur纳米颗粒具有8-23nm的相当窄的分布。 nCur分散的CP溶液在储存1个月后显示出良好的稳定性,颜色特性没有变化,并且没有相分离。 CP水凝胶的流变学特性表明在相同温度(35摄氏度)下溶胶-凝胶转变。有趣的是,该系统的Cur释放速率可以方便地调节为透皮给药。

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