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首页> 外文期刊>Daru Journal of pharmaceutical sciences. >The analytic network process for the pharmaceutical sector: Multi criteria decision making to select the suitable method for the preparation of nanoparticles
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The analytic network process for the pharmaceutical sector: Multi criteria decision making to select the suitable method for the preparation of nanoparticles

机译:制药行业的分析网络过程:多准则决策,以选择合适的方法来制备纳米颗粒

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Background This paper presents the methodology for assessing and selecting the most appropriate procedure for the preparation of nanoparticles by implementing the analytical network process. The commonly utilized nanoparticle preparation methods are Polymer Precipitation, Interfacial polymer deposition, Complex Coacervation , Cross linking, Emulsion solvent diffusion, Homogenization and Polymerization method. There are numerous parameters to be considered in groundwork of nanoparticles that departs the conclusion manufacturer in bias. One has to address a number of components in alignment to determine and choose the optimum conclusion choices, because an unsuitable conclusion could lead to the eventual merchandise having to be formulated and developed again. For this cause in this paper, we study selecting the most appropriate procedure for the preparation of nanoparticles utilizing one of the multi criteria-decision making techniques, Analytic Network Process. Methodology The main goal was determined. The criteria and sub-criteria that affect the main goal were determined. The alternatives for the problem were determined. The interactions between criteria, sub-criteria, and alternatives respect to the main goal were determined. The super matrixes according to the network were assembled and then weighted super matrix and limit super matrix were then constructed. The values of this limit matrix are the desired priorities of the elements with respect to the goal. The alterative with the highest priority was finally chosen as the best alternative. Results The emulsion solvent diffusion technique (M-5) has the highest value (0.434379) among the alternative methods that are applicable to the preparation of the nanoparticles. The second highest is Polymer Precipitation (M-1) with a value of 0.178798, and the lowest value or last choice is Cross Linking (M-4) with a value of only 0.024516. The alternative with the highest priority would achieve the goal, i.e., the best method for the preparation of the nanoparticles. Conclusion The alternative M5 emulsion solvent diffusion technique, scoring 0.434379 was the one with largest main concern amidst all the other alternatives and thereby judged to be the most apt procedure for the preparation of nanoparticles.
机译:背景技术本文介绍了通过实施分析网络过程来评估和选择最合适的纳米颗粒制备程序的方法。常用的纳米颗粒制备方法是聚合物沉淀,界面聚合物沉积,复合凝聚,交联,乳液溶剂扩散,均质化和聚合方法。在纳米颗粒的基础工程中要考虑许多参数,这些参数会偏离结论制造商的偏见。人们必须协调一致地确定许多要素,以确定和选择最佳结论选择,因为不合适的结论可能导致最终的商品不得不重新制定和开发。为此,在本文中,我们研究使用多标准决策技术之一“分析网络过程”来选择最合适的制备纳米颗粒的程序。方法论确定了主要目标。确定影响主要目标的标准和子标准。确定了该问题的替代方案。确定了标准,子标准以及与主要目标相关的替代方案之间的相互作用。组装根据网络的超级矩阵,然后构造加权超级矩阵和极限超级矩阵。该极限矩阵的值是元素相对于目标的期望优先级。最终选择了优先级最高的替代方案作为最佳替代方案。结果在适用于制备纳米颗粒的替代方法中,乳液溶剂扩散技术(M-5)的价值最高(0.434379)。第二高的是聚合物沉淀(M-1),值为0.178798,最低的或最后的选择是交联(M-4),值为0.024516。具有最高优先级的替代方案将实现目标,即制备纳米颗粒的最佳方法。结论在所有其他替代方案中,替代性M5乳液溶剂扩散技术得分为0.434379是最受关注的一项,因此被认为是最适合制备纳米颗粒的方法。

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