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首页> 外文期刊>Journal of nanoscience and nanotechnology >Transport characteristics of wheat germ agglutinin-modified insulin-liposomes and solid lipid nanoparticles in a perfused rat intestinal model
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Transport characteristics of wheat germ agglutinin-modified insulin-liposomes and solid lipid nanoparticles in a perfused rat intestinal model

机译:小麦胚芽凝集素修饰的胰岛素脂质体和固体脂质纳米粒在大鼠灌肠模型中的转运特性

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Wheat germ agglutinin (WGA) modified liposomes and solid lipid nanoparticles (SLNs) were evaluated for improving intestinal absorption of insulin. In an in situ local intestinal perfusion experiment, formulations containing 100 IU/kg insulin were administered to the duodenum, jejunum, and ileum of fasted rats. As hypothesized, ileum was the best intestinal location for the absorption of insulin-containing liposomes. Serum insulin concentrations decreased for the various formulations in different absorption sites according to the following trends: Duodenum > ileum > jejunum for WGA-modified insulin-containing liposomes; duodenum > jejunum > ileum for WGA-modified insulin-containing SLNs; ileum > jejunum > duodenum for insulin-containing liposomes; ileum > duodenum > jejunum for insulin-containing SLNs; and duodenum > ileum > jejunum for aqueous solution of insulin. These results imply that the nanoparticle type and delivery site were important factors with respect to increasing the bioavailability of insulin following oral administration. The proteolylic degradation as well as the epithelial permeability were primary determinants influcing insulin mucosal absorption.
机译:评估了小麦胚芽凝集素(WGA)修饰的脂质体和固体脂质纳米颗粒(SLNs)改善了肠道对胰岛素的吸收。在原位局部肠灌注实验中,将含有100 IU / kg胰岛素的制剂施用于禁食大鼠的十二指肠,空肠和回肠。如所假设的,回肠是吸收含胰岛素脂质体的最佳肠道位置。根据以下趋势,不同制剂在不同吸收部位的血清胰岛素浓度降低:十二指肠>回肠>空肠用于WGA修饰的含胰岛素脂质体;十二指肠>空肠>回肠用于WGA修饰的含胰岛素的SLN;回肠>空肠>十二指肠用于含胰岛素的脂质体;回肠>十二指肠>空肠用于含胰岛素的SLNs;十二指肠>回肠>空肠用于胰岛素水溶液。这些结果表明,相对于口服给药后增加胰岛素的生物利用度,纳米颗粒的类型和递送部位是重要的因素。蛋白水解降解以及上皮渗透性是影响胰岛素粘膜吸收的主要决定因素。

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