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Selection of an optimal method for the preparation of dual loaded flavono polymeric nanoparticle using analytical hierarchy process

机译:使用层次分析法选择制备双载黄酮聚合物纳米颗粒的最佳方法

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In this study, analytical hierarchy process was used to select an optimal method for the preparation of dual loaded flavono polymeric nanoparticles. Analytical hierarchy process involves structuring multiple choice criteria into a hierarchy, assessing the relative importance of criteria, comparing alternatives for each criterion and determining an overall ranking of the alternatives. Hierarchy model was developed with the goal in the first level, 10 criteria in the second level and methods for the preparation of polymeric nanoparticles in the third level. To assess the relative importance of criteria, all criteria were compared with each other using Saaty?s scale. To compare the methods, all the methods for the preparation of polymeric nanoparticles were compared with each other for each criterion using Saaty?s scale, which leads to the formation of pair-wise comparison matrixes and consistency ratio was calculated for the each pair-wise comparison matrix. The study result showed that the consistency ratio of each pair-wise comparison matrix were well within acceptable limits. Of 10 criteria, reproducible results received the maximum overall priority weight followed by desirable size. Of 10 methods, nanoprecipitation method received the maximum overall priority weight followed by supercritical fluid technology. Analytical hierarchy process has identified reproducible results as criteria preference and nanoprecipitation as an optimal method for the preparation of dual loaded flavono polymeric nanoparticles. The study concludes that the analytical hierarchy process has played a vital role in selecting an optimal method for the preparation of dual loaded flavono polymeric nanoparticles.DOI:?http://dx.doi.org/10.3329/icpj.v3i4.18264 International Current Pharmaceutical Journal, March 2014, 3(4): 247-253
机译:在这项研究中,使用层次分析法来选择制备双载黄酮聚合物纳米颗粒的最佳方法。层次分析过程涉及将多个选择标准构造为层次结构,评估标准的相对重要性,比较每个标准的替代方案以及确定替代方案的总体排名。开发了层次模型,目标是第一级,第二级有10条标准,第三级是制备聚合物纳米颗粒的方法。为了评估标准的相对重要性,使用Saaty's量表将所有标准相互比较。为了比较这些方法,使用Saaty's量表对每种标准的所有制备聚合物纳米颗粒的方法进行了比较,从而形成了成对的比较矩阵,并计算了成对的对比率比较矩阵。研究结果表明,每个成对比较矩阵的一致性比率均在可接受的范围内。在10个标准中,可重复的结果获得了最大的总体优先权重,其后是所需的大小。在10种方法中,纳米沉淀方法获得了最大的总体优先权,其次是超临界流体技术。层次分析法已将可重现的结果确定为标准偏爱,并将纳米沉淀作为制备双载黄酮聚合物纳米颗粒的最佳方法。研究得出的结论是,层次分析法在选择制备双载黄酮聚合物纳米颗粒的最佳方法中起着至关重要的作用.DOI:?http://dx.doi.org/10.3329/icpj.v3i4.18264药学杂志,2014年3月,3(4):247-253

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