Silva Catarina M, Ribeiro António J, Figueiredo Isabel Vitória, Gonçalves Alexandra Rocha, Veiga Francisco
Laboratório de Tecnologia Farmacêutica, Faculdade de Farmácia, Universidade de Coimbra, Rua do Norte, 3000-295 Coimbra, Portugal.
Int J Pharm. 2006 Mar 27;311(1-2):1-10. doi: 10.1016/j.ijpharm.2005.10.050. Epub 2006 Jan 26.
Recombinant human insulin was encapsulated within alginate microspheres by the emulsification/internal gelation technique with the objective of preserving protein stability during encapsulation procedure. The influence of process and formulation parameters was evaluated on the morphology and encapsulation efficiency of insulin. The in vitro release of insulin from microspheres was studied under simulated gastrointestinal conditions and the in vivo activity of protein after processing was assessed by subcutaneous administration of extracted insulin from microspheres to streptozotocin-induced diabetic rats. Microspheres mean diameter, ranging from 21 to 287 microm, decreased with the internal phase ratio, emulsifier concentration, mixer rotational speed and increased with alginate concentration. Insulin encapsulation efficiency, near 75%, was not affected by emulsifier concentration, mixer rotational speed and zinc/insulin hexamer molar ratio but decreased either by increasing internal phase ratio and calcium/alginate mass ratio or by decreasing acid/calcium molar ratio and alginate concentration. A high insulin release, above 75%, was obtained at pH 1.2 and under simulated intestinal pH a complete dissolution of microspheres occurred. Extracted insulin from microspheres decreased hyperglycemia of diabetic rats proving to be bioactive and showing that encapsulation in alginate microspheres using the emulsification/internal gelation is an appropriate method for protein encapsulation.
采用乳化/内部凝胶化技术将重组人胰岛素包封于海藻酸盐微球中,目的是在包封过程中保持蛋白质稳定性。评估了工艺和配方参数对胰岛素微球形态和包封效率的影响。在模拟胃肠道条件下研究了胰岛素从微球中的体外释放,并通过将从微球中提取的胰岛素皮下注射给链脲佐菌素诱导的糖尿病大鼠来评估加工后蛋白质的体内活性。微球平均直径在21至287微米之间,随内相比、乳化剂浓度、混合器转速的增加而减小,随海藻酸盐浓度的增加而增大。胰岛素包封效率接近75%,不受乳化剂浓度、混合器转速和锌/胰岛素六聚体摩尔比的影响,但随内相比和钙/海藻酸盐质量比的增加或酸/钙摩尔比和海藻酸盐浓度的降低而降低。在pH 1.2时获得了高于75%的高胰岛素释放率,在模拟肠道pH值下微球完全溶解。从微球中提取的胰岛素降低了糖尿病大鼠的高血糖,证明具有生物活性,表明采用乳化/内部凝胶化技术将胰岛素包封于海藻酸盐微球中是一种合适的蛋白质包封方法。