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作 者:张南生[1] 胡卢丰[1] 周子晔[1] 黄碧静[2] 张秀华[1]
机构地区:[1]温州医科大学附属第一医院,浙江温州325000 [2]温州医科大学,浙江温州32500
出 处:《中华中医药学刊》2015年第9期2172-2174,I0012,共4页Chinese Archives of Traditional Chinese Medicine
基 金:浙江省中医药管理局项目(2011ZA075)
摘 要:目的:考察人参皂苷Rg3自乳化微球的制备工艺及影响因素。方法:采用海藻酸钠为药物载体,以人参皂苷Rg3自乳化体系为模型药物,用静电滴制的方法制备人参皂苷Rg3海藻酸钠微球;并考察其外观、重分散性、包封率及影响微球的形成因素。结果:单因素分析、优化载药处方为海藻酸的浓度为1.5%,氯化钡的浓度为30 mmol/L时微球形态呈椭圆形,略有拖尾现象,但分散性好;粒径分布均匀、包封率85.3%。而海藻酸钠、氯化钡溶液的浓度是微球形成的关键因素。结论:用静电滴法制制备的人参皂苷Rg3自微乳化微球方法简单、易行,影响因素可控。Objective: To investigate the preparation of microspheres of self-microemulsion of ginsenoside Rg3-barium alginate and analyze the influence factors. Methods: Using sodium alginate as the drug carrier and ginsenoside Rg3 as model drug,the method of electrostatic droplet was used to prepare the ginsenoside Rg3-barium alginate microspheres.Observe the appearance,dispersion,encapsulation efficiency and influence factors of microspheres. Results: The microspheres formulation of self-micriemulsion was optimized using single factor analysis and its prescription was alginic acid1. 5% and when barium chloride concentration was 30 mmol/L,microspheres shape was oval,slightly trailing,but good dispersibility and the particle size had uniform distribution and the encapsulation efficiency was 85. 3%. The formation of microspheres was affected by alginic acid and barium chloride concentration. Conclusion: Ginsenoside Rg3-barium alginate by electrostatic drop method is simple and easy and influence factors are controllable.
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