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首页> 外文期刊>International Journal of Nanomedicine >Bilosomes as Promising Nanovesicular Carriers for Improved Transdermal Delivery: Construction, in vitro Optimization, ex vivo Permeation and in vivo Evaluation
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Bilosomes as Promising Nanovesicular Carriers for Improved Transdermal Delivery: Construction, in vitro Optimization, ex vivo Permeation and in vivo Evaluation

机译:Bilosomes作为有前途的纳米窝载体,用于改善透皮递送:施工,体外优化,离体渗透和体内评价

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Purpose:The goal of this research was to enhance the transdermal delivery of lornoxicam (LX), using nanovesicular carriers composed of the bile salt sodium deoxycholate (SDC), soybean phosphatidyl choline (SPC) and a permeation enhancer limonene.Methods:Thin-film hydration was the technique employed for the fabrication using a Box-Behnken design with three central points. The investigated factors were SPC molar concentration, SDC amount in mg and limonene percentage (%). The studied responses were percent entrapment efficiency (?), particle size (PS), polydispersity index (PDI), zeta potential (ZP), and in vitro drug release (after 2, 10 h). In order to obtain the optimum formula, numerical optimization by Design-Expert? software was used. Electing the optimized bilosomal formula was based on boosting ?, ZP (as absolute value) and in vitro drug release, taking in consideration diminishing PS and PDI. Further assessment of the selected formula was achieved by transmission electron microscopy (TEM), differential scanning calorimetry (DSC), Fourier transform infrared spectroscopy (FTIR), stability testing, ex vivo skin permeation and deposition. The in vivo pharmacodynamics activities of the optimized formula were examined on male rats and mice and compared to that of the oral market product.Results:The optimized bilosomal formula demonstrated to be nonirritant, with noticeably enhanced anti-inflammatory and antinociceptive activities. Superior in vivo permeation was proved by confocal laser scanning microscopy (CLSM).Conclusion:The outcomes demonstrated that bilosomes could improve transdermal delivery of lornoxicam.? 2020 Ahmed et al.
机译:目的:本研究的目的是增强利用由胆汁盐钠(SDC),大磷脂酰胆碱(SPC)和渗透增强剂柠檬烯组成的纳米植物载体的脱昔康(LX)的透皮递送。方法:薄膜:薄膜使用具有三个中心点的箱形式设计,水合用作制造的技术。研究的因子是SPC摩尔浓度,SDC含量为Mg和柠檬烯百分比(%)。所研究的反应是夹带效率(α),粒度(PS),多分散性指数(PDI),Zeta电位(ZP)和体外药物释放(2,10小时后)的百分比百分比百分比为了获得最佳公式,由设计专家的数值优化?使用软件。考虑到PS和PDI,选择优化的双染型配方基于升压α,ZP(作为绝对值)和体外药物释放。通过透射电子显微镜(TEM),差示扫描量热法(DSC),傅里叶变换红外光谱(FTIR),稳定性测试,离体皮肤渗透和沉积,进一步评估所选配方。在雄性大鼠和小鼠上检查优化配方的体内药效,并与口腔市场产品的比较。结果:优化的双染型公式表明是无粘性的,具有明显增强的抗炎和抗闭合性活性。通过共聚焦激光扫描显微镜(CLSM)证明了体内渗透的优异。结论:结果表明,双染色剂可以改善洛诺克西克的透皮递送。? 2020 Ahmed等人。

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