首页> 外文期刊>International Journal of Nanomedicine >Characterization and stability studies of a novel liposomal cyclosporin A prepared using the supercritical fluid method: comparison with the modified conventional Bangham method
【24h】

Characterization and stability studies of a novel liposomal cyclosporin A prepared using the supercritical fluid method: comparison with the modified conventional Bangham method

机译:用超临界流体法制备的新型脂质体环孢菌素A的表征及稳定性研究:与改进的常规BANGHAM方法的比较

获取原文
           

摘要

Abstract: A novel method to prepare cyclosporin A encapsulated liposomes was introduced using supercritical fluid of carbon dioxide (SCF-CO2) as an antisolvent. To investigate the strength of the newly developed SCF-CO2 method compared with the modified conventional Bangham method, particle size, zeta potential, and polydispersity index (PDI) of both liposomal formulations were characterized and compared. In addition, entrapment efficiency (EE) and drug loading (DL) characteristics were analyzed by reversed-phase high-performance liquid chromatography. Significantly larger particle size and PDI were revealed from the conventional method, while EE (%) and DL (%) did not exhibit any significant differences. The SCF-CO2 liposomes were found to be relatively smaller, multilamellar, and spherical with a smoother surface as determined by transmission electron microscopy. SCF-CO2 liposomes showed no significant differences in their particle size and PDI after more than 3 months, whereas conventional liposomes exhibited significant changes in their particle size. The initial yield (%), EE (%), and DL (%) of SCF-CO2 liposomes and conventional liposomes were 90.98 ± 2.94, 92.20 ± 1.36, 20.99 ± 0.84 and 90.72 ± 2.83, 90.24 ± 1.37, 20.47 ± 0.94, respectively, which changed after 14 weeks to 86.65 ± 0.30, 87.63 ± 0.72, 18.98 ± 0.22 and 75.04 ± 8.80, 84.59 ± 5.13, 15.94 ± 2.80, respectively. Therefore, the newly developed SCF-CO2 method could be a better alternative compared with the conventional method and may provide a promising approach for large-scale production of liposomes.
机译:摘要:用二氧化碳(SCF-CO2)的超临界流体作为抗溶剂,引入了一种制备环孢菌素封装脂质体的新方法。为了研究新开发的SCF-CO2方法的强度与改性的传统Bangham方法,表征和比较了两种脂质体配方的粒度,ζ电位和多分散指数(PDI)。此外,通过反相高效液相色谱法分析熵效率(EE)和药物负载(DL)特性。从常规方法中揭示了较大的粒度和PDI,而EE(%)和DL(%)没有表现出任何显着差异。发现SCF-CO2脂质体是相对较小的多层的,具有通过透射电子显微镜测定的更平滑的表面的较小的多样性。 SCF-CO2脂质体在超过3个月后颗粒尺寸和PDI显示出显着差异,而常规脂质体表现出粒径的显着变化。 SCF-CO2脂质体和常规脂质体的初始产率(%),EE(%)和DL(%)为90.98±2.94,92.20±1.36,20.99±0.84和90.72±2.83,90.24±±1.37,20.47±0.94,分别在14周后改变为86.65±0.30,87.63±0.72,18.98±0.22和75.04±8.80,84.59±5.13,15.94±2.80。因此,与常规方法相比,新开发的SCF-CO2方法可以是更好的替代方案,并且可以提供有希望的大规模生产脂质体的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号