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Selection of a Suitable Method for the Preparation of Polymeric Nanoparticles: Multi-Criteria Decision Making Approach

机译:制备聚合物纳米颗粒的合适方法的选择:多标准决策方法

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Purpose: The present study is aimed to select the suitable method for preparation of camptothecin loaded polymeric nanoparticles by utilizing the multi-criteria decision making method. Novel approaches of drug delivery by formulation using nanotechnology are revolutionizing the future of medicine. Recent years have witnessed unprecedented growth of research and application in the area of nanotechnology. Nanoparticles have become an important area of research in the field of drug delivery because they have the ability to deliver a wide range of drug to varying areas of body. Methods: Despite of extensive research and development, polymeric nanoparticles are frequently used to improve the therapeutic effect of drugs. A number of techniques are available for the preparation of polymeric nanoparticles. The Analytical Hierarchy Process (AHP) is a method for decision making, which are derived from individual judgements for qualitative factors, using the pair-wise comparison matrix. In AHP, a decision hierarchy is constructed with a goal, criteria and alternatives. Results: The model uses three main criteria 1) Instrument, 2) Process and Output and 3) Cost. In addition, there are eight sub-criteria’s as well as eight alternatives. Pair-wise comparison matrixes are used to obtain the overall priority weight and ranking for the selection of suitable method. Nanoprecipitation technique is the most suitable method for the preparation of camptothecin loaded polymeric nanoparticles with the highest overall priority weight of 0.297 Conclusion: In particular, the result indicates that the priority weights obtained from AHP could be defined as a multiple output for finding out the most suitable method for preparation of camptothecin loaded polymeric nanoparticles.
机译:目的:本研究旨在通过利用多标准决策方法选择合适的方法来制备喜树碱负载的聚合物纳米颗粒。使用纳米技术通过制剂进行药物输送的新方法正在彻底改变医学的未来。近年来,纳米技术领域的研究和应用空前增长。纳米颗粒已经成为药物输送领域的重要研究领域,因为它们具有将多种药物输送到人体不同部位的能力。方法:尽管进行了广泛的研究和开发,但聚合物纳米颗粒经常用于改善药物的治疗效果。许多技术可用于制备聚合物纳米颗粒。层次分析法(AHP)是一种决策方法,它是使用成对比较矩阵从对定性因素的单独判断中得出的。在AHP中,决策层次结构是由目标,标准和备选方案构成的。结果:该模型使用三个主要标准:1)工具,2)过程和输出以及3)成本。此外,还有八个子条件以及八个备选条件。使用成对比较矩阵来获得总体优先级权重和等级,以选择合适的方法。纳米沉淀技术是制备喜树碱负载的聚合物纳米颗粒的最合适方法,其总优先权重最高,为0.297。结论:特别是,结果表明,从AHP获得的优先权重可以定义为多输出,以找出最制备喜树碱负载的聚合物纳米颗粒的合适方法。

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