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Enhanced digestion inhibition and mucus penetration of F127-modified self-nanoemulsions for improved oral delivery

机译:F127修饰的自纳米乳剂的增强的消化抑制作用和粘液渗透性以改善口服递送

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摘要

Self-nanoemulsifying systems (SNEs) have excellent ability to improve the solubility of poorly water-soluble drugs (PWSD). However, SNEs are likely to be degraded in gastrointestinal (GIT) when their surface is recognized by lipase/co-lipase enzyme complex, resulting in rapid release and precipitation of encapsulated drugs. The precipitates are then captured and removed by intestinal mucus, reducing the delivery efficacy of SNEs. Herein, the amphiphilic polymer Pluronic® F127 was incorporated into long and short-chain triglycerides (LCT, SCT) based SNEs to diminish the recognition and therefore minimized their degradation by enzymes and clearance by mucus. The SNEs were characterized in terms of particle size, zeta potential and stability. Ex vivo multiple particles tracking studies were performed by adding particle solution into fresh rat mucus. Cellular uptake of SNEs were conducted by using E12 cells, the absorption and distribution in small intestine were also studied after oral administration in male Sprague-Dawley (SD) rats. The digestion rate of SNEs were found to be in following order SCT-SNE > SCT-F127-SNE > LCT-SNE > LCT-F127-SNE. Moreover, the LCT-F127-SNE was found to be most effective in enhancing cellular uptake, resulting in 3.5-fold, 2.1-fold and 1.7-fold higher than that of SCT-SNE, LCT-SNE and SCT-F127-SNE, respectively. After incubating the SNE with E12 cells, the LCT-F127-SNE exhibited the highest amount regarding both mucus penetration and cellular uptake, with an uptake amount number (via bicinchoninic acid (BCA) analysis) of 3.5-fold, 2.1-fold and 1.7-fold higher than that of SCT-SNE, LCT-SNE and SCT-F127-SNE, respectively. The results revealed that orally administered LCT-F127-SNE could significantly increase the bioavailability of Cyclosporine A (CsA), which was approximately 2.43-fold, 1.33-fold and 1.80-fold higher than that of SCT-SNE, SCT-F127-SNE and LCT-SNE, respectively. We address in this work that F127-modified SNEs have potentials to improve oral drug absorption by significantly reducing gastrointestinal enzymatic degradation and simultaneously enhancing mucus penetration.
机译:自纳米乳化系统(SNE)具有改善水溶性差的药物(PWSD)溶解度的出色能力。但是,当SNEs的表面被脂肪酶/共脂肪酶复合物识别时,它们可能在胃肠道(GIT)中降解,从而导致封装药物的快速释放和沉淀。然后,沉淀物被肠粘液捕获并去除,从而降低了SNE的递送功效。在此,两亲性聚合物F127被掺入基于长链和短链甘油三酸酯(LCT,SCT)的SNE中,以减少识别,从而最大程度地降低其被酶降解和被粘液清除的可能性。 SNEs通过粒径,ζ电位和稳定性进行表征。通过将颗粒溶液加入新鲜的大鼠粘液中进行离体多颗粒跟踪研究。使用E12细胞对SNEs进行细胞摄取,还对雄性Sprague-Dawley(SD)大鼠口服后研究了其在小肠中的吸收和分布。发现SNE的消化率按以下顺序排列:SCT-SNE→> SCT-F127-SNE→> LCT-SNE→> LCT-F127-SNE。此外,发现LCT-F127-SNE在增强细胞摄取方面最有效,其结果比SCT-SNE,LCT-SNE和SCT-F127-SNE高3.5倍,2.1倍和1.7倍,分别。将SNE与E12细胞一起孵育后,LCT-F127-SNE在粘液渗透和细胞摄取方面均表现出最高含量,摄取量数(通过双辛可宁酸(BCA)分析)分别为3.5倍,2.1倍和1.7。分别比SCT-SNE,LCT-SNE和SCT-F127-SNE高三倍。结果表明,口服LCT-F127-SNE可以显着提高环孢菌素A(CsA)的生物利用度,比SCT-SNE,SCT-F127-SNE分别高约2.43倍,1.33倍和1.80倍。和LCT-SNE。我们在这项工作中指出,F127修饰的SNE具有通过显着减少胃肠道酶促降解并同时增强粘液渗透性来改善口服药物吸收的潜力。

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