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首页> 外文期刊>International Journal of Nanomedicine >Enhancement of Simvastatin ex vivo Permeation from Mucoadhesive Buccal Films Loaded with Dual Drug Release Carriers
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Enhancement of Simvastatin ex vivo Permeation from Mucoadhesive Buccal Films Loaded with Dual Drug Release Carriers

机译:加强含有双药物释放载体的粘膜粘附颊膜的辛伐他汀前体内渗透

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Background: Simvastatin (SMV), a hypocholesterolemic agent, suffers from very low bioavailability due to its poor aqueous solubility and extensive first-pass metabolism. Methods: Two SMV carrier systems, namely, polymeric drug inclusion complex (IC) and mixed micelles (MM) nanoparticles, were developed and loaded into mucoadhesive buccal films to enhance SMV bioavailability. The two carrier systems were characterized and their permeation across human oral epithelial cells (OEC) was studied. The effect of IC to MM ratio (Xsub1/sub) and the mucoadhesive polymer concentration (Xsub2/sub) on the cumulative percent of drug released, elongation percent and the mucoadhesive strength, from the prepared mucoadhesive films, were optimized. Ex vivo permeation across bovine mucosal tissue was investigated. The permeation parameters for the in vitro and ex vivo release data were calculated. Results: Complexation of SMV with hydroxypropyl beta-cyclodextrin (HP β-CD) was superior to all other polymers as revealed by the equilibrium saturation solubility, stability constant, complexation efficiency and thermodynamic potential. SMV-HP β-CD IC was utilized to develop a saturated polymeric drug solution. Both carrier systems showed enhanced permeation across OEC when compared to pure drug. Xsub1/sub and Xsub2/sub were significantly affecting the characteristics of the prepared films. The optimized mucoadhesive buccal film formulation loaded with SMV IC and drug MM nanoparticles demonstrated superior ex vivo permeation when compared to the corresponding pure drug buccal film, and the calculated permeation parameters confirmed this finding. Conclusion: Mucoadhesive buccal films containing SMV IC and drug MM can be used to improve drug bioavailability; however, additional pharmacokinetic and pharmacodynamic studies are required.
机译:背景:辛伐他汀(SMV),一种脱胆固醇剂,由于其差的水溶性和广泛的首述代谢而受到非常低的生物利用度。方法:三种SMV载体系统,即聚合物药物包合物(IC)和混合胶束(MM)纳米颗粒,并加载到粘膜粘附性颊膜中,以增强SMV生物利用度。研究了两种载体系统,研究了跨越人口腔上皮细胞(OEC)的渗透。 IC至MM比(X 1 )和粘膜粘附性聚合物浓度(x 2 )的影响,累积释放的药物百分比,伸长率和粘膜粘附力量,制备的粘膜粘附膜进行了优化。研究了牛粘膜组织的离体渗透。计算了体外和exVivo释放数据的渗透参数。结果:SMV与羟丙基β-环糊精(HPβ-CD)的络合优于所有其他聚合物,如平衡饱和溶解度,稳定性恒定,络合效率和热力学潜力所揭示的所有其他聚合物。利用SMV-HPβ-CD IC进行饱和聚合物药物溶液。与纯药物相比,两家载体系统在OEC上显示出增强的渗透。 X 1 和x 2 显着影响制备薄膜的特性。与相应的纯药物颊膜相比,载有SMV IC和药物MM纳米颗粒的优化的粘膜粘膜配方载有优异的离体渗透,并且计算出的渗透参数证实了这种发现。结论:含有SMV IC和药物MM的粘膜粘附性颊膜可用于提高药物生物利用度;然而,需要额外的药代动力学和药效学研究。

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