Poly(lactic acid)-aspirin microspheres prepared via the traditional and improved solvent evaporation methods and its application performances
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Poly(lactic acid)-aspirin microspheres prepared via the traditional and improved solvent evaporation methods and its application performances
Poly(lactic acid)-aspirin microspheres prepared via the traditional and improved solvent evaporation methods and its application performances
中国化学工程学报(英文版)2023年60卷第8期 页码:194-204
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School of Chemical Engineering, Kunming University of Science and Technology,Kunming,China,650504
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纸质出版:2023
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Xiaolin Pan, Mengyuan Gao, Yun Wang, 等. Poly(lactic acid)-aspirin microspheres prepared via the traditional and improved solvent evaporation methods and its application performances[J]. 中国化学工程学报(英文版), 2023,60(8):194-204.
the traditional and improved solvent evaporation methods and its application performances[J]. 中国化学工程学报, 2023, 60(8): 194-204.
Xiaolin Pan, Mengyuan Gao, Yun Wang, 等. Poly(lactic acid)-aspirin microspheres prepared via the traditional and improved solvent evaporation methods and its application performances[J]. 中国化学工程学报(英文版), 2023,60(8):194-204.DOI:
the traditional and improved solvent evaporation methods and its application performances[J]. 中国化学工程学报, 2023, 60(8): 194-204.DOI:
Poly(lactic acid)-aspirin microspheres prepared via the traditional and improved solvent evaporation methods and its application performances
Drug-loaded microspheres are significant for the development of modern pharmaceutical products. It is well known that the taken of aspirin for long-term increases the risk of serious gastrointestinal complications
therefore a controllable delivery of aspirin is of importance to lighten those side effects. In this work
poly(lactic acid) (PLA) was chosen as the carrier to prepare PLA-aspirin microspheres by using the traditional and the improved solvent evaporation methods. It was found that no matter which experimental condition was
the encapsulation efficiency of aspirin was higher by using the improved method than that of the traditional method. Specifically
when the concentration of polyvinyl alcohol = 1% (mass)
the polymer concentration = 1:20
the oil/water rate = 1:2.5
PLA-aspirin microspheres were obtained
via
the improved method with a high yield of 82.83% (mass) and an encapsulation efficiency of 44.09%. PLA-aspirin microspheres were then prepared continuously using the improved method
which further enhanced the encapsulation efficiency to 54.56%. Approximate 85% aspirin released from microspheres within 7 days. Obvious degradation which was represe
nted by reduction on hardness was observed by soaking microspheres in PBS for 60 days. This work is of interest because it provides a continuous route to prepare PLA-aspirin microspheres continuously with a high drug encapsulation efficiency.
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相关作者
Qiu Xutao
Zhao Feng
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