色谱法
化学
粒径
溶解
分散性
溶解度
Zeta电位
赋形剂
混溶性
材料科学
有机化学
纳米技术
纳米颗粒
物理化学
聚合物
作者
Rui-Na Zhong,Xiaohan Wang,Xin-Tong Wang,Baode Shen,Chengying Shen,Li Wang,Li Han,Hailong Yuan
出处
期刊:PubMed
日期:2018-10-01
卷期号:43 (20): 4062-4068
被引量:2
标识
DOI:10.19540/j.cnki.cjcmm.20180726.016
摘要
In order to increase the solubility of volatile oil from Acori Tatarinowii Rhizoma, this study was to prepare self-nanoemulsion of volatile oil from Acori Tatarinowii Rhizoma . The prescriptions were preliminarily screened by miscibility studies, excipient compatibility tests, and pseudo-ternary phase diagrams, and then the optimal formulation was obtained by using the Box-Behnken response surface method, with particle size and drug-loading rate as the indicators. The self-nanoemulsion prepared by optimal prescription was characterized and evaluated for in vitro dissolution. The results showed that the optimal prescription for this volatile oil self-nanoemulsion was as follows: 41.7% volatile oil, 46.8% Tween-80, and 11.5% PEG-400. The prepared self-nanoemulsion was clear and transparent, with drug-loading of (192.77±1.64) mg·g⁻¹, particle diameter of (53.20±0.94) nm, polydispersity index of 0.230± 0.013, and Zeta potential of (-12.2±0.7) mV. The in vitro dissolution of self-nanoemulsion was higher than that of volatile oil. In this research, volatile oil served as the oil phase in self-nanoemulsion, so the prescription was simpler and the drug loading rate was higher. The prepared self-nanoemulsion complied with the relevant quality requirements, providing a reference for the preparation of volatile oil formulations.
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