Bahman Fatemah, Taurin Sebastien, Altayeb Diab, Taha Safa, Bakhiet Moiz, Greish Khaled
Department of Molecular Medicine, Princess Al-Jawhara Centre for Molecular Medicine, School of Medicine and Medical Sciences, Arabian Gulf University, Manama 328, Kingdom of Bahrain.
Pharmaceutics. 2020 Oct 27;12(11):1026. doi: 10.3390/pharmaceutics12111026.
The oral delivery of insulin is a convenient and safe physiological route of administration for management of diabetes mellitus. In this study, we developed a poly-(styrene-co-maleic acid) (SMA) micellar system for oral insulin delivery to overcome the rapid degradation of insulin in the stomach, improve its absorption in the intestine, and provide a physiologically-relevant method of insulin to reach portal circulation. The insulin was encapsulated into SMA micelles in a pH-dependent process. The charge and size of the nanoparticles were determined by dynamic light scattering. The insulin loading of the nanoparticles was measured by HPLC. The transport of the SMA-insulin through biological membranes was assessed in vitro using Caco-2 cells, ex vivo rat intestinal section, and in vivo in a streptozotocin-induced diabetes mouse model. SMA-insulin micelles were negatively charged and had a mean diameter of 179.7 nm. SMA-insulin efficiently stimulated glucose uptake in HepG-2 hepatic cells and was transported across the Caco-2 epithelial cells in vitro by 46% and ex vivo across intestinal epithelium by 22%. The animal studies demonstrated that orally-administered SMA-insulin can produce a hypoglycemic effect up to 3 h after administration of one dose. Overall, our results indicate that SMA micelles are capable of the oral delivery of bioactive compounds like insulin and can be effective tools in the management of diabetes.
口服胰岛素是治疗糖尿病的一种方便且安全的生理给药途径。在本研究中,我们开发了一种聚(苯乙烯 - 马来酸)(SMA)胶束系统用于口服胰岛素递送,以克服胰岛素在胃中的快速降解,改善其在肠道中的吸收,并提供一种使胰岛素进入门静脉循环的生理相关方法。胰岛素通过pH依赖性过程被包裹在SMA胶束中。通过动态光散射测定纳米颗粒的电荷和大小。通过高效液相色谱法测量纳米颗粒的胰岛素负载量。使用Caco - 2细胞、离体大鼠肠段以及链脲佐菌素诱导的糖尿病小鼠模型在体内评估SMA - 胰岛素通过生物膜的转运。SMA - 胰岛素胶束带负电荷,平均直径为179.7 nm。SMA - 胰岛素在体外能有效刺激HepG - 2肝细胞摄取葡萄糖,并在体外通过Caco - 2上皮细胞转运46%,在离体情况下通过肠上皮转运22%。动物研究表明,口服SMA - 胰岛素在单次给药后3小时内可产生降血糖作用。总体而言,我们的结果表明SMA胶束能够口服递送如胰岛素等生物活性化合物,并且可以成为糖尿病治疗中的有效工具。