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首页> 外文期刊>BioMed research international >A Comparison between Use of Spray and Freeze Prying Techniques for Preparation of Solid Self-Microemulsiffing Formulation of Valsartan and In Vitro and In Vivo Evaluation
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A Comparison between Use of Spray and Freeze Prying Techniques for Preparation of Solid Self-Microemulsiffing Formulation of Valsartan and In Vitro and In Vivo Evaluation

机译:喷雾法和冷冻法制备缬沙坦固体自微乳化制剂的比较及体外和体内评价

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The objective of the present study was to develop self micro emulsifying formulation (SMEF) of valsartan to improve its oral bioavailability. The formulations were screened on the basis of solubility, stability, emulsification efficiency, particle size and zeta potential. The optimized liquid SMEF contains valsartan (20%w/w), Capmul MCM C8 (16%w/w), Tween 80 (42.66% w/w) and PEG 400 (21.33% w/w) as drug, oil, surfactant and co-surfactant, respectively. Further, Liquid SMEF was adsorbed on Aerosol 200 by spray and freeze drying methods in the ratio of 2:1 and transformed into free flowing powder. Both the optimized liquid and solid SMEF had the particle size <200 nm with rapid reconstitution properties. Both drying methods are equally capable for producing stable solid SMEF and immediate release of drug in in vitro and in vivo conditions. However, the solid SMEF produced by spray drying method showed high flowability and compressibility. The solid state characterization employing the FTIR, DSC and XRD studies indicated insignificant interaction of drug with lipid and adsorbed excipient. The relative bioavailability of solid SMEF was approximately 1.5 to 3.0 folds higher than marketed formulation and pure drug. Thus, the developed solid SMEF illustrates an alternative delivery of valsartan as compared to existing formulations with improved bioavailability.
机译:本研究的目的是开发缬沙坦的自微乳化配方(SMEF),以提高其口服生物利用度。基于溶解度,稳定性,乳化效率,粒度和ζ电势筛选制剂。优化的液态SMEF包含缬沙坦(20%w / w),Capmul MCM C8(16%w / w),吐温80(42.66%w / w)和PEG 400(21.33%w / w)作为药物,油和表面活性剂和辅助表面活性剂。此外,通过喷雾和冷冻干燥方法以2:1的比例将液态SMEF吸附在Aerosol 200上,并转化为自由流动的粉末。优化的液体和固体SMEF均具有<200 nm的粒径,并具有快速重建的特性。两种干燥方法均具有在体外和体内条件下产生稳定的固体SMEF和立即释放药物的能力。然而,通过喷雾干燥法生产的固体SMEF显示出高流动性和可压缩性。使用FTIR,DSC和XRD研究的固态表征表明药物与脂质和吸附的赋形剂之间的相互作用不显着。固体SMEF的相对生物利用度比市售制剂和纯药物高约1.5至3.0倍。因此,与具有改善的生物利用度的现有制剂相比,开发的固体SMEF说明了缬沙坦的替代递送。

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