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首页> 外文期刊>Journal of Microencapsulation: Microcapsules Liposomes Nanoparticles Microcells Microspheres >Viscosity of polymer solution phase and other factors controlling the dissolution of theophylline microspheres prepared by the emulsion solvent evaporation method
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Viscosity of polymer solution phase and other factors controlling the dissolution of theophylline microspheres prepared by the emulsion solvent evaporation method

机译:乳液溶剂蒸发法制备的聚合物溶液相的粘度及其他控制茶碱微球溶解的因素

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The objectives of this investigation are to evaluate the effect of the viscosity of polymer solution phase on microsphere properties, especially the drug release characteristics since no studies on this formulation variable have been reported. Also, since it is known that polymer molecular weight affects both the viscosity of the polymer solution and the release properties of microspheres, the interaction of these factors was studied. Microspheres with 33% theoretical drug loading of anhydrous theophylline core material were prepared by the emulsion solvent evaporation method. Two cellulose acetate butyrate polymers, (CAB381-2, CAB381-20), chemically similar but having different molecular weights, were used to prepare different polymer solutions having different apparent viscosities in acetone. A Brookfield viscometer was used to evaluate the viscosities of polymer solutions. Dissolution rates of microspheres prepared from the polymer solutions were inversely related to the install polymer solution viscosities for both CAB381-2 and CAB381-20. The times for the release of 30 and 50% of the drug from the microspheres have a linear relationship with increasing polymer solution viscosity, Unlike CAB381-2 microspheres which follow Higuchi spherical matrix release kinetics, microspheres prepared from the higher molecular weight polymer (CAB381-20) showed extended release dissolution profiles with near zero order kinetics. It is evident that both the polymer solution viscosity and the molecular weight have an effect on the drug release from microspheres. These results suggest that release rates of matrix microspheres could be predictably optimized by adjusting the viscosity of polymer solutions.
机译:这项研究的目的是评估聚合物溶液相的粘度对微球性能,特别是药物释放特性的影响,因为尚未有关于该配方变量的报道。另外,由于已知聚合物分子量影响聚合物溶液的粘度和微球的释放性能,因此研究了这些因素的相互作用。通过乳液溶剂蒸发法制备了理论药物载量为无水茶碱芯材33%的微球。化学上相似但是具有不同分子量的两种乙酸丁酸纤维素聚合物(CAB381-2,CAB381-20)用于制备在丙酮中具有不同表观粘度的不同聚合物溶液。使用布鲁克菲尔德粘度计评估聚合物溶液的粘度。由聚合物溶液制备的微球的溶解速率与CAB381-2和CAB381-20的安装聚合物溶液粘度成反比。从微球中释放30%和50%的药物的时间与聚合物溶液粘度的增加呈线性关系,与遵循Higuchi球形基质释放动力学的CAB381-2微球不同,由较高分子量的聚合物(CAB381- 20)显示具有接近零级动力学的延长释放溶出曲线。显然,聚合物溶液的粘度和分子量均对药物从微球的释放有影响。这些结果表明,可以通过调节聚合物溶液的粘度来预测基质微球的释放速率。

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