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交联聚丙烯酸微凝胶和琼脂糖作为用于白藜芦醇释放的半互穿网络。

Cross-linked poly(acrylic acids) microgels and agarose as semi-interpenetrating networks for resveratrol release.

作者信息

Tunesi Marta, Prina Elisabetta, Munarin Fabiola, Rodilossi Serena, Albani Diego, Petrini Paola, Giordano Carmen

机构信息

Department of Chemistry, Materials and Chemical Engineering "G.Natta" and Unità di Ricerca Consorzio INSTM, Politecnico di Milano, Milan, Italy,

出版信息

J Mater Sci Mater Med. 2015 Jan;26(1):5328. doi: 10.1007/s10856-014-5328-8. Epub 2015 Jan 11.

Abstract

Carbomers, cross-linked poly(acrylic acid) microgels, have been widely used in pharmaceutical formulations as swollen hydrogels. Agarose, whose thermoreversibility may be exploited for drug loading, forms a gel with a mechanism involving coil-helix transition at about 36 °C. In this work carbomer microgels were combined with agarose networks in a semi-interpenetrating polymer network structure, aiming at obtaining suitable delivery systems for the loading and release of molecules with poor bioavailability but high therapeutic interest, like resveratrol. The rheological properties of the formulations and their in vitro cytocompatibility were studied and optimized acting on the neutralizing agent (triethylamine (N,N-diethylethanamine), triethanolamine (tris(2-hydroxyethyl)amine) and sodium hydroxide) and amount of OH donors (1,2-propanediol and glycerol). As a preparation method, autoclaving was introduced to simultaneously obtain heating and sterilising. Among the different neutralizing agents, NaOH was chosen to avoid the use of amines, considering the final application. Without the addition of alcohols as typical OH donors to induce Carbomer gelification, gels with appropriate rheological properties and stability were produced. For this formulation, the release of resveratrol after 7 days was about 80 % of the loaded mass, suggesting it is an interesting approach to be exploited for the development of innovative resveratrol delivery systems.

摘要

卡波姆,即交联聚丙烯酸微凝胶,作为溶胀水凝胶已被广泛应用于药物制剂中。琼脂糖的热可逆性可用于药物负载,它在约36℃时通过一种涉及卷曲-螺旋转变的机制形成凝胶。在这项工作中,卡波姆微凝胶与琼脂糖网络以半互穿聚合物网络结构相结合,旨在获得适用于负载和释放生物利用度低但治疗意义高的分子(如白藜芦醇)的递送系统。研究并优化了制剂的流变学性质及其体外细胞相容性,通过改变中和剂(三乙胺(N,N-二乙基乙胺)、三乙醇胺(三(2-羟乙基)胺)和氢氧化钠)以及OH供体(1,2-丙二醇和甘油)的用量来实现。作为一种制备方法,引入了高压灭菌以同时实现加热和灭菌。考虑到最终应用,在不同的中和剂中选择了氢氧化钠以避免使用胺类。在不添加作为典型OH供体的醇类来诱导卡波姆凝胶化的情况下,制备出了具有适当流变学性质和稳定性的凝胶。对于该制剂,7天后白藜芦醇的释放量约为负载量的80%,这表明它是一种用于开发创新型白藜芦醇递送系统的有前景的方法。

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