利用可降解聚合物纳米颗粒设计纳米生物类黄酮

Nandhakumar Loganathan, M. Sellappan
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引用次数: 4

摘要

在本研究中,开发了双负载的黄酮纳米粒系统,用于口服柚皮苷和橙皮苷,以增强其抗氧化和抗糖尿病活性。采用Plackett Burman法优化了双负载黄酮纳米颗粒的制备方法。配方的优化需要适当的实验设计。因此,仅在我们目前的研究中,placket burman方法已被预测用于制备具有抗糖尿病活性的生物类黄酮分离物的纳米颗粒可生物降解聚合物。采用Plackett Burman法进行了12次试验,选取并设计了10个影响配方的关键参数,以评估影响结果的自变量。结果表明,第9次运行的最佳粒径为126.1 nm, zeta电位为29.9 mV。利用Plackett Burman方法作为设计工具,获得了显著的纳米颗粒。Loganathan and Sellappan,国际现代医药杂志,2017年1月,6(2):9-15 http://www.icpjonline.com/documents/Vol6Issue2/01.pdf
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Designing of nanosized bioflavonoids using biodegradable polymeric nanoparticles by Plackett Burman method
In this present study, dual loaded flavono nanoparticulate systems have been developed for oral delivery of Naringin and Hesperidin to enhance its antioxidant and antidiabetic activities. The fabrication of Dual Loaded Flavono Nanoparticles by suitable method was optimized by Plackett Burman method. Optimization of the formulation requires proper designing of the experiments. For this reason, only in our current study, the placket burman method has been projected for the formulation of nanoparticles biodegradable polymers encompass bioflavonoid isolates for the antidiabetic activity. Ten critical parameters influencing the formulation has been selected and designed in Plackett Burman method of experimentation for 12 runs to assess independent variables influencing the result outcome. The results revealed that the 9th run shows the optimum particle size of 126.1 nm with zeta potential of 29.9 mV. Remarkably significant nanoparticles were obtained by exploiting the Plackett Burman method as designing tool. Loganathan and Sellappan, International Current Pharmaceutical Journal, January 2017, 6(2): 9-15 http://www.icpjonline.com/documents/Vol6Issue2/01.pdf
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