Optimization of Preparation Technology of Silybin PLGA Microspheres by Premix Membrane Emulsification-Solvent Extraction/Evaporation Method
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Optimization of Preparation Technology of Silybin PLGA Microspheres by Premix Membrane Emulsification-Solvent Extraction/Evaporation Method
Chinese Journal of Experimental Traditional Medical FormulaeVol. 19, Issue 1, Pages: 1-6(2013)
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Published:2013
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HE Yang, LIU Bin-li, LI Mu-zi, et al. Optimization of Preparation Technology of Silybin PLGA Microspheres by Premix Membrane Emulsification-Solvent Extraction/Evaporation Method[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(1): 1-6.
DOI:
HE Yang, LIU Bin-li, LI Mu-zi, et al. Optimization of Preparation Technology of Silybin PLGA Microspheres by Premix Membrane Emulsification-Solvent Extraction/Evaporation Method[J]. Chinese journal of experimental traditional medical formulae, 2013, 19(1): 1-6.DOI:
Optimization of Preparation Technology of Silybin PLGA Microspheres by Premix Membrane Emulsification-Solvent Extraction/Evaporation Method
Objective:To prepare uniform-sized silybin loaded poly (lactic-co-glycolic acid) (PLGA) microspheres and optimize its preparation technology. Method: Silybin PLGA microspheres was prepared by premix membrane emulsification-solvent extraction/evaporation method
with the average particle size and span as indexes
oil phase solvent
membrane pore size
membrane pressure and volume ratio of oil-water phase were investigated by single factor test
influence of pharmaceutical-accessories ratio
the mass fraction of PVA and volume ratio of oil-water phase on preparation technology was investigated by orthogonal test;The mean particle size
particle size distribution
drug loading
entrapment efficiency
morphology and other physical-chemical properties were evaluated. Result: Pore size of SPG membrane was 2.8 μm
membrane pressure was 1.0 MPa
centrifuged time of 20 min
physiological saline as hardening liquid;Optimum preparation technology of silybin PLGA microspheres was as following:pharmaceutical-accessories ratio of 1:4
the mass fraction of PVA of 3%
volume ratio of oil-water phase of 1:19.Prepared microspheres were round with smooth surface
the mean diameter was (2.634±0.35) μm
span was (13.326±3.06)
drug loading was (14.84±0.76)% and entrapment efficiency was (56.16±3.77)%. Conclusion: Premix membrane emulsification method could be used to prepare silybin PLGA microspheres
which was an insoluble component from Chinese meteria medica
and particle size of prepared silybin PLGA microspheres was uniform and controllable.
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Related Author
Peng HE
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Yu-ting HE
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Mei-feng XIAO
Fu-yuan HE
Hai-ying LI
Related Institution
College of Pharmacy, Hunan Provincial Key Laboratory of Druggability and Preparation Modification for Traditional Chinese Medicine, Laboratory of Supramolecular Mechanism and Mathematic-Physics Chracterization for Chinese Materia Medica, Hunan University of Chinese Medicine