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水飞蓟宾微粒分散体对CCl_4所致小鼠急性肝损伤的预防作用研究 被引量:1
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作者 尹雪雁 伊辛 +2 位作者 许凉凉 吴晨悦 蔡程科 《世界中医药》 CAS 2016年第3期490-494,共5页
目的:研究水飞蓟宾微粒分散体对CCl4所致小鼠急性肝损伤的预防作用,为水飞蓟宾微粒分散体的临床药效研究提供实验依据。方法:采用CCl4诱发雄性ICR小鼠急性肝损伤为实验动物模型,比较了正常组、模型组、低剂量组、中剂量组、高剂量组、... 目的:研究水飞蓟宾微粒分散体对CCl4所致小鼠急性肝损伤的预防作用,为水飞蓟宾微粒分散体的临床药效研究提供实验依据。方法:采用CCl4诱发雄性ICR小鼠急性肝损伤为实验动物模型,比较了正常组、模型组、低剂量组、中剂量组、高剂量组、超高剂量组、原药粉组各组血及肝中AST、ALT、SOD、HYP、GSH-PX含量的差异。结果:中剂量组和原药粉组2组小鼠的AST、ALT、SOD、HYP、GSH-PX含量相比较,差异无统计学意义;超高剂量组的ALT、AST、HYP含量与空白组含量差异无统计学意义。结论:1/10原药粉口服给药剂量的水飞蓟宾微粒分散体静脉给药后预防肝纤维化的作用与水飞蓟宾原药粉口服给药剂量的作用相当,说明将水飞蓟宾制成水飞蓟宾微粒分散体后静脉给药可以减少单次或总的用药剂量,降低机体的耐药程度;尾静脉给药40 mg/kg,预防7 d后造模,小鼠肝组织抵抗能力增加,基本不受CCl4的影响。 展开更多
关键词 水飞蓟宾 微粒分散体 四氯化碳 急性肝损伤 预防作用
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Preparation of Sustained-release Silybin Microspheres by Spherical Crystallization Technique 被引量:1
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作者 胡容峰 朱家壁 +4 位作者 马凤余 许向阳 孙玉亮 梅康康 李 师 《Journal of Chinese Pharmaceutical Sciences》 CAS 2006年第2期83-91,共9页
Aim To improve the dissolution rate and bioavailability of silybin. Methods Sustained-release silybin microspheres were prepared by the spherical crystallization technique with soliddispersing and release-retarding po... Aim To improve the dissolution rate and bioavailability of silybin. Methods Sustained-release silybin microspheres were prepared by the spherical crystallization technique with soliddispersing and release-retarding polymers. A differential scanning calorimeter and an X-ray diffractometer were used to investigate the dispersion state of silybin in the microspheres. The shape, surface morphology, and internal structure of the microspheres were observed using a scanning electron microscope. Characterization of the microspheres, such as average diameter, size distribution and bulk density of the microspheres was investigated. Results The particle size of the microspheres was determined mainly by the agitation speed. The dissolution rate of silybin from microspheres was enhanced by increasing the amount of the dispersing agents, and sustained by the retarding agents. The release rate of microspheres was controlled by adjusting the combination ratio of the dispersing agents to the retarding agents. The resuits of X-ray diffraction and differential scanning calorimetry analysis indicated that silybin was highly dispersed in the microspheres in amorphous state. The release profiles and content did not change after a three-month accelerated stability test at 40 ℃ and 75% relative humidity. Conclusion Sustained-release silybin microspheres with a solid dispersion structure were prepared successfully in one step by a spherical crystallization technique combined with solid dispersion technique. The preparation process is simple, reproducible and inexpensive. The method is efficient for designing sustained-release microspheres with water-insoluble drugs. 展开更多
关键词 SILYBIN sustained-release microsphere solid dispersion spherical crystallization technique
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