Kang Feirong, Singh Jagdish
Department of Pharmaceutical Sciences, College of Pharmacy, North Dakota State University, Fargo, ND 58105, USA.
AAPS PharmSciTech. 2005 Oct 24;6(3):E487-94. doi: 10.1208/pt060361.
The purpose of this study was to develop a single-dose insulin delivery system based on poly (lactide-co-glycolide) (PLGA) microspheres to provide basal insulin level for a prolonged period. Insulin-loaded PLGA microspheres were prepared by water-in-oil-in-water double emulsion (batch A) and solid-in-oil-in-water emulsion (batch B) methods. Microspheres were characterized for physical characteristics and in vitro release. In vivo absorption of insulin and biocompatibility of insulin-loaded PLGA microspheres were performed in diabetic New Zealand white rabbits. Light and transmission electron microscopy were performed on the skin tissues excised from microspheres injected sites in order to study the biocompatibility. The burst release of insulin was high (47%) from batch B and low (5%) from batch A. Therefore, we mixed microspheres of batch A and B in ratio of 3:1 w/w, which produced desirable in vitro release profile. In vivo absorption study showed that insulin-loaded microspheres provided a serum insulin level of 20-40 microU/ml up to 40 days. Biocompatibility study provided evidence of normal inflammatory and foreign body reactions, which were characterized by the presence of macrophages, fibroblasts and foreign body giant cells. Neither necrosis nor tissue damage was identified. At the end of 12 weeks, no distinct histological differences were observed in comparison to the control tissue samples. In conclusion, insulin-loaded PLGA microspheres controlled the in vivo absorption of insulin to maintain the basal insulin level for longer period and the delivery system was biocompatible.
本研究的目的是开发一种基于聚(丙交酯-乙交酯)(PLGA)微球的单剂量胰岛素递送系统,以长时间提供基础胰岛素水平。通过水包油包水双重乳液法(A组)和固包油包水乳液法(B组)制备了载胰岛素PLGA微球。对微球的物理特性和体外释放进行了表征。在糖尿病新西兰白兔中进行了胰岛素的体内吸收和载胰岛素PLGA微球的生物相容性研究。对从微球注射部位切除的皮肤组织进行了光镜和透射电镜检查,以研究生物相容性。B组胰岛素的突释率较高(47%),A组较低(5%)。因此,我们将A组和B组微球按3:1 w/w的比例混合,得到了理想的体外释放曲线。体内吸收研究表明,载胰岛素微球在长达40天的时间内可提供20-40 μU/ml的血清胰岛素水平。生物相容性研究提供了正常炎症和异物反应的证据,其特征为存在巨噬细胞、成纤维细胞和异物巨细胞。未发现坏死或组织损伤。在12周结束时,与对照组织样本相比,未观察到明显的组织学差异。总之,载胰岛素PLGA微球可控制胰岛素的体内吸收,以较长时间维持基础胰岛素水平,且该递送系统具有生物相容性。