Carafa M, Marianecci C, Annibaldi V, Di Stefano A, Sozio P, Santucci E
Dept. Scienze del Farmaco, University G. D'Annunzio, Via dei Vestini, 66100 Chieti, Italy.
Int J Pharm. 2006 Nov 15;325(1-2):155-62. doi: 10.1016/j.ijpharm.2006.06.040. Epub 2006 Jul 1.
Polysaccharide-coated liposomes have been studied for their potential use for peptide drug delivery by the oral route because they are able to minimize the disruptive influences on peptide drugs of gastrointestinal fluids. The aim of this work was to synthesize and characterize a modified polysaccharide, O-palmitoylscleroglucan (PSCG), and to coat unilamellar liposomes for oral delivery of peptide drugs. To better evaluate the coating efficiency of PSCG, also scleroglucan (SCG)-coated liposomes were prepared. We studied the surface modification of liposomes and the SCG- and PSCG-coated liposomes were characterized in terms of size, shape, zeta potential, influence of polymer coating on bilayer fluidity, stability in serum, in simulated gastric and intestinal fluids and against sodium cholate and pancreatin. Leuprolide, a synthetic superpotent agonist of luteinizing hormone releasing hormone (LHRH) receptor, was chosen as a model peptide drug. After polymer coating the vesicle dimensions increased and the zeta potential shifted to less negative values. These results indicate that both SCG- and PSCG-coated liposomes surface and DSC results showed that PSCG was anchored on the liposomal surface. The stability of coated-liposomes in SGF, sodium cholate solution and pancreatin solution was increased. From this preliminary in vitro studies, it seems that PSCG-coated liposomes could be considered as a potential carrier for oral administration.
多糖包被的脂质体因其能够最大程度减少胃肠液对肽类药物的破坏作用而被研究用于口服途径的肽类药物递送。本研究的目的是合成并表征一种改性多糖,即O-棕榈酰硬葡聚糖(PSCG),并将其包被于单层脂质体用于肽类药物的口服递送。为了更好地评估PSCG的包被效率,还制备了硬葡聚糖(SCG)包被的脂质体。我们研究了脂质体的表面修饰,并对SCG和PSCG包被的脂质体在大小、形状、zeta电位、聚合物包被对双层流动性的影响、在血清中以及模拟胃液、肠液中的稳定性以及对胆酸钠和胰蛋白酶的稳定性方面进行了表征。选择亮丙瑞林,一种促黄体生成素释放激素(LHRH)受体的合成超效激动剂,作为模型肽类药物。聚合物包被后,囊泡尺寸增大,zeta电位向负值减小的方向移动。这些结果表明,SCG和PSCG包被的脂质体表面以及DSC结果表明PSCG锚定在脂质体表面。包被脂质体在模拟胃液、胆酸钠溶液和胰蛋白酶溶液中的稳定性增加。从这项初步的体外研究来看,PSCG包被的脂质体似乎可被视为一种潜在的口服给药载体。