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[银杏内酯B纳米混悬液的制备及体外释放]

[Preparation and in vitro release of ginkgolide B nanosuspension].

作者信息

Wang Jing, Zhu Jun-Jun, Shen Bao-de, Zhang Ting, Zhu Ya-Ning, Yuan Hai-Long

机构信息

School of Pharmacy, Chengdu University of Traditional Chinese Medicine Chengdu 611137, China Department of Pharmacy,Air Force Medical Center, PLA Beijing 100142, China.

Department of Pharmacy,Air Force Medical Center, PLA Beijing 100142, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2020 Apr;45(7):1657-1663. doi: 10.19540/j.cnki.cjcmm.20200207.306.

Abstract

To prepare ginkgolide B nanosuspension(GB-NS), and investigate its dissolution behaviors in vitro. The miniaturized media milling method was used to prepare nanosuspensions, with average particle size and polydispersity index as the evaluation indexes. The formulation and process of GB-NS were optimized by single factor experiment and Box-Behnken design-response surface method. The morphology was observed by scanning electron microscope(SEM), and thecrystallinity of GB-NS was investigated by X-rays diffraction(XRD). The paddle method was used to study the dissolution of GB-NS in vitro. The mean particle size of optimized GB-NS was(180±7) nm, with a polydispersity index of 0.196±0.036. SEM showed that GB-NS was rod-like or irregular granular. XRD showed that the crystallinity of GB-NS was significantly reduced compared with GB raw material. The cumulative dissolution rate of GB-NS reached 90% in 30 min, which was higher than that of GB raw material. The findings suggested that the miniaturized media milling method was simple, efficient and feasible to prepare GB-NS. And the dissolution rate of GB was significantly improved by nanosuspension technology.

摘要

制备银杏内酯B纳米混悬液(GB-NS),并考察其体外溶出行为。采用小型化介质研磨法制备纳米混悬液,以平均粒径和多分散指数为评价指标。通过单因素实验和Box-Behnken设计-响应面法对GB-NS的处方和工艺进行优化。采用扫描电子显微镜(SEM)观察其形态,并用X射线衍射(XRD)研究GB-NS的结晶度。采用桨法研究GB-NS的体外溶出情况。优化后的GB-NS平均粒径为(180±7)nm,多分散指数为0.196±0.036。SEM显示GB-NS呈棒状或不规则颗粒状。XRD显示,与GB原料药相比,GB-NS的结晶度显著降低。GB-NS在30 min内累积溶出率达到90%,高于GB原料药。研究结果表明,小型化介质研磨法制备GB-NS简单、高效、可行。纳米混悬液技术显著提高了GB的溶出速率。

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