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首页> 外文期刊>International Journal of Pharmaceutics >In vitro and in vivo study of N-trimethyl chitosan nanoparticles for oral protein delivery.
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In vitro and in vivo study of N-trimethyl chitosan nanoparticles for oral protein delivery.

机译:N-三甲基壳聚糖纳米颗粒用于口服蛋白质递送的体外和体内研究。

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In this study, the effects of alginate modification on absorption properties of FITC-BSA loaded TMC nanoparticles were investigated on an in vitro model of GI epithelium (Caco-2 cells). The feasibility of applying TMC nanoparticles loaded with a model vaccine urease in oral vaccination was also studied. Alginate modified TMC nanoparticles showed higher FITC-BSA permeate efficiency than non-modified TMC nanoparticles. However, alginate modification barely had any effect on TMC nanoparticles' property of decreasing TEER or enhancing drug paracellular transport. Mice s.c. immunized with urease loaded TMC nanoparticles showed highest systematic immune response (IgG levels) but the lowest mucosal response (secretory IgA levels). In the contrast, mice i.g. immunized with urease loaded TMC nanoparticles showed much higher antibody titers of both IgG and secretory IgA than those with urease solution or urease co-administrated with TMC solution. These results indicated that TMC nanoparticles are potential carriers for oral protein and vaccine delivery.
机译:在这项研究中,藻类修饰对FITC-BSA负载的TMC纳米颗粒的吸收性能的影响是在GI上皮的体外模型(Caco-2细胞)上进行的。还研究了将装载有模型疫苗脲酶的TMC纳米颗粒应用于口服疫苗的可行性。海藻酸盐修饰的TMC纳米颗粒显示出比未修饰的TMC纳米颗粒更高的FITC-BSA渗透效率。然而,藻酸盐修饰几乎不影响TMC纳米颗粒降低TEER或增强药物旁细胞转运的性质。小鼠用载有脲酶的TMC纳米颗粒免疫后,系统免疫反应最高(IgG水平),但粘膜反应最低(分泌型IgA水平)。相比之下,小鼠用脲酶负载的TMC纳米粒子免疫后,IgG和分泌型IgA的抗体效价都比脲酶溶液或与TMC溶液共同施用的脲酶高。这些结果表明,TMC纳米颗粒是口服蛋白质和疫苗输送的潜在载体。

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