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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Preparation and physicochemical characterization of soy isoflavone (SIF) nanoparticles by a liquid antisolvent precipitation method
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Preparation and physicochemical characterization of soy isoflavone (SIF) nanoparticles by a liquid antisolvent precipitation method

机译:液体抗溶剂沉淀法制备大豆异黄酮(SIF)纳米粒子的制备和理化特征

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摘要

Soy isoflavone (SIF) nanoparticles were prepared using dimethyl sulfoxide as a solvent and water as an antisolvent. Response surface methodology was used to analyse the influences of several process parameters on the mass median diameter (D50). The SIF concentration (20-40 mg/mL), volume ratio of antisolvent to solvent (5-7 mL/mL), stirring speed (800-1600 r/min), and reaction time (2-4 min) were optimized. The optimal conditions were determined to be a SIF concentration, volume ratio of antisolvent to solvent, stirring speed and reaction time of 29 mg/mL, 7 mL/mL, 1533 r/min and 3 min, respectively. Satisfactory D50 of SIF (101.24 +/- 12.21 nm) were achieved. The processed and unprocessed SIFs were tested and characterized. By comparing the parameters, the chemical properties of the processed and unprocessed SIFs did not change, but the water dissolution rate of the prepared SIF nanoparticles was greatly enhanced. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:使用二甲基砜作为溶剂和水制备大豆异黄酮(SIF)纳米粒子作为抗溶剂制备。响应面方法用于分析几个过程参数对质量中值直径(D50)的影响。 SIF浓度(20-40mg / ml),抗溶剂的体积比(5-7ml / ml),搅拌速度(800-1600 r / min)和反应时间(2-4分钟)进行了优化。确定最佳条件是SIF浓度,溶剂的体积比,溶剂的溶剂,搅拌速度和29mg / ml,7ml / ml,1533 r / min和3分钟的反应时间。达到SIF(101.24 +/- 12.21 nm)的令人满意的D50。测试和表征加工和未加工的SIF。通过比较参数,加工和未加工的SIF的化学性质没有变化,但是制备的SIF纳米颗粒的水溶解速率大大提高。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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