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首页> 外文期刊>International Journal of Nanomedicine >Liposomes containing glycocholate as potential oral insulin delivery systems: preparation, in vitro characterization, and improved protection against enzymatic degradation
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Liposomes containing glycocholate as potential oral insulin delivery systems: preparation, in vitro characterization, and improved protection against enzymatic degradation

机译:含甘草酸盐作为潜在口服胰岛素递送系统的脂质体:制备,体外表征和增强的抗酶促降解保护

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Background: Oral delivery of insulin is challenging and must overcome the barriers of gastric and enzymatic degradation as well as low permeation across the intestinal epithelium. The present study aimed to develop a liposomal delivery system containing glycocholate as an enzyme inhibitor and permeation enhancer for oral insulin delivery.Methods: Liposomes containing sodium glycocholate were prepared by a reversed-phase evaporation method followed by homogenization. The particle size and entrapment efficiency of recombinant human insulin (rhINS)-loaded sodium glycocholate liposomes can be easily adjusted by tuning the homogenization parameters, phospholipid:sodium glycocholate ratio, insulin:phospholipid ratio, water:ether volume ratio, interior water phase pH, and the hydration buffer pH.Results: The optimal formulation showed an insulin entrapment efficiency of 30% ± 2% and a particle size of 154 ± 18 nm. A conformational study by circular dichroism spectroscopy and a bioactivity study confirmed the preserved integrity of rhINS against preparative stress. Transmission electron micrographs revealed a nearly spherical and deformed structure with discernable lamella for sodium glycocholate liposomes. Sodium glycocholate liposomes showed better protection of insulin against enzymatic degradation by pepsin, trypsin, and a-chymotrypsin than liposomes containing the bile salt counterparts of sodium taurocholate and sodium deoxycholate.Conclusion: Sodium glycocholate liposomes showed promising in vitro characteristics and have the potential to be able to deliver insulin orally.
机译:背景:口服胰岛素具有挑战性,必须克服胃和酶促降解以及肠上皮渗透率低的障碍。本研究的目的是开发一种含糖胆酸盐作为酶抑制剂和渗透促进剂的脂质体递送系统,用于口服胰岛素的递送。方法:采用反相蒸发法,然后将其均质,制备了含糖胆酸钠的脂质体。可以通过调整均质参数,磷脂:糖胆酸钠的比例,胰岛素:磷脂比例,水:醚体积比,内部水相pH值,轻松地调节负载重组人胰岛素(rhINS)的糖胆酸钠脂脂质体的粒径和包封效率结果:最佳配方的胰岛素包封率为30%±2%,粒径为154±18 nm。圆二色性光谱的构象研究和生物活性研究证实,rhINS抵抗制备应激的完整性得以保持。透射电子显微照片揭示了糖胆酸钠脂质体具有可辨认的薄层的近球形和变形结构。糖胆酸钠脂质体显示的胰岛素抵抗胃蛋白酶,胰蛋白酶和α-胰凝乳蛋白酶的酶降解作用比包含牛磺胆酸钠和脱氧胆酸钠的胆汁盐对应物的脂质体更好。能够口服胰岛素。

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