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首页> 外文期刊>International Journal of Pharmaceutics >Development and in vitro evaluation of a self-emulsifying drug delivery system (SEDDS) for oral vancomycin administration
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Development and in vitro evaluation of a self-emulsifying drug delivery system (SEDDS) for oral vancomycin administration

机译:对口服万古霉素施用的自乳化药物递送系统(SEDDS)的开发和体外评价

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The aim of this study was to develop a self-emulsifying drug delivery system (SEDDS) containing the glycopeptide antibiotic vancomycin (VAN) with improved intestinal mucosa permeating properties in order to increase oral drug absorption. VAN was effectively incorporated into SEDDS increasing the lipophilicity of the drug via hydrophobic ion pairing (HIP) with cetyltrimethylammonium bromid (CTAB). Newly developed SEDDS formulations containing VAN/CTAB complex were characterized with respect to droplet size, polydispersity index and zeta potential. Furthermore, permeating properties were investigated in porcine intestinal mucus using Transwell setup and on freshly excised porcine intestinal mucosa utilizing Ussing-type chamber. In addition, minimum inhibitory concentration (MIC) of VAN/CTAB-SEDDS against Staphylococcus aureus was evaluated. The developed formulations F1 (25% Capmul 808G EP/NF, 37.5% Cremophor RH 40, 37.5%), F2 (26.5% Capmul 808G EP/NF, 33.2% Cremophor RH 40, 13.8% Transcutol, 26.5% DMSO) and F3 (28.8% Captex 8000, 35% Cremophor EL, 20% Transcutol, 16.2% DMSO) with a mean droplet size of 14 nm, 15 nm and 153 nm, respectively, exhibited improved ability to permeate porcine intestinal mucosal barrier. F1-VAN/CTAB showed 219-fold, F2-VAN/CTAB 46-fold and F3-VAN/CTAB 63-fold higher permeation of VAN through the mucus layer after 4 h in comparison to free VAN. Moreover, all formulations demonstrated a 4-8-fold improvement in permeation of intestinal mucosa compared to free VAN solution. Additionally, F2-VAN/CTAB with a MIC of 0.313 mg/L showed higher effectivity against S. aureus (ATCC (R) 29213) compared to free VAN. According to these results, HIP combined with SEDDS should be taken into consideration as promising tool for oral antibiotic delivery.
机译:本研究的目的是开发一种自乳化药物递送系统(SEDDS),其含有糖肽抗生素万古霉素(VAN),具有改善的肠粘膜渗透性能,以增加口服吸毒。有效地掺入潜水员中的潜水员通过疏水离子配对(HIP)与甲酰基三甲基溴铵(CTAB)增加了药物的亲脂性。新开发的含有VAN / CTAB络合物的静物制剂相对于液滴尺寸,多分散指数和Zeta电位表征。此外,使用Transwell设置和利用USSing型室的新鲜切除的猪肠粘膜研究猪肠粘膜中的渗透性质。此外,评价了对金黄色葡萄球菌的van / Ctab-SEDDS的最小抑制浓度(MIC)。开发的配方F1(25%CAPMUL 808G EP / NF,37.5%CREMOPHOR RH 40,37.5%),F2(26.5%CAPMUL 808G EP / NF,33.2%CREMOPOR RH 40,13.8%Themutol,26.5%DMSO)和F3( 28.8%CAPTEX 8000,35%Cremophor EL,20%超丁醇,16.2%DMS​​O)分别具有14nm,15nm和153nm的平均液滴尺寸,表现出改善渗透猪肠粘膜屏障的能力。与游离面包车相比,F1-VAN / CTAB显示219倍,F2-VAN / CTAB 46倍和F3-VAN / CTAB 63倍和F3-VAN / CTAB 63倍通过粘液层通过粘液层渗透。此外,与游离面包溶液相比,所有制剂都表现出肠粘膜渗透的4-8倍。此外,与游离面包车相比,F2-VAN / C具有0.313mg / L的MIC的效能效果更高,表现出较高的对金黄色葡萄球菌(ATCC(R)29213)。根据这些结果,应考虑与静物相结合的髋关节作为口服抗生素递送的有前途的工具。

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