首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Application of the Solid Dispersion Method to the Controlled Release of Medicine. VIII.1' Medicine Release and Viscosity of the Hydrogel of a Water-Soiuble Polymer in a Three-Component Solid Dispersion System
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Application of the Solid Dispersion Method to the Controlled Release of Medicine. VIII.1' Medicine Release and Viscosity of the Hydrogel of a Water-Soiuble Polymer in a Three-Component Solid Dispersion System

机译:固体分散法在药物控制释放中的应用。 VIII.1'在三组分固体分散体系中水溶性聚合物的水凝胶的药物释放和粘度

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Solid dispersions were prepared with a highly water-soluble medicine (oxprenolol hydrochloride (OXP)), water-insoluble ethylcellulose (EC) and four grades of water-soluble hydroxypropylcellulose (HPC) having different molecular weights. The effects of the composition ratio within the range of 5% of HPC and of the viscosity of HPC hydrogels on the release of OXP were studied. The bulk viscosity of HPC hydrogels was evaluated from the relationship between shear rate and shear stress. The microscopic viscosity was evaluated by the spin probe method of the electron spin resonance (ESR) technique. The release rate of OXP decreased with increasing HPC composition ratio and became almost constant at the HPC composition ratio of 3% and more. This result suggests that the release of OXP will occur through its diffusion into the swollen HPC gel phase formed in a solid dispersion at the HPC composition ratio of 3% and more. The bulk viscosity of HPC hydrogels markedly increased with increasing molecular weight of HPC, but there was little noticeable change in release rate and activation energy for the diffusion of OXP. This result can be explained by the fact that the microscopic viscosity was hardly affected by the molecular weight of HPC, suggesting that the resistance to diffusion of OXP into the swollen HPC gel phase in the solid dispersion was almost the same regardless of the moledar weight of HPC.
机译:用高度水溶性的药物(盐酸羟丙诺醇(OXP)),水不溶性乙基纤维素(EC)和分子量不同的四种等级的羟丙基纤维素(HPC)制备固体分散体。研究了在HPC 5%范围内的组成比和HPC水凝胶的粘度对OXP释放的影响。从剪切速率和剪切应力之间的关系评价HPC水凝胶的体积粘度。通过电子自旋共振(ESR)技术的自旋探针法评价微观粘度。 OXP的释放速率随HPC组成比的增加而降低,并且在3%或更高的HPC组成比时几乎恒定。该结果表明,通过以3%或更高的HPC组成比扩散到固体分散体中形成的溶胀的HPC凝胶相中,会发生OXP的释放。 HPC水凝胶的本体粘度随HPC分子量的增加而显着增加,但释放速率和活化能几乎没有明显变化,而导致OXP扩散。该结果可以由以下事实解释,即微观粘度几乎不受HPC分子量的影响,这表明,无论分散液的摩尔质量如何,OXP扩散到固体分散体中溶胀的HPC凝胶相的抵抗力几乎相同。 HPC。

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