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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Stability assessment of hypromellose acetate succinate (HPMCAS) NF for application in hot melt extrusion (HME)
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Stability assessment of hypromellose acetate succinate (HPMCAS) NF for application in hot melt extrusion (HME)

机译:醋酸羟丙甲纤维素琥珀酸酯(HPMCAS)NF在热熔挤出(HME)中的稳定性评估

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HPMCAS is a widely used polymer in the pharmaceutical industry as an excipient. In this work, the physicochemical stability of HPMCAS was investigated for hot melt extrusion (HME) application. The reduction in zero rate viscosity (η0) of the polymer with the increase in temperature was determined using rheological evaluation prior to HME processing. The energy of activation for AS-MF determined by fitting Arrhenius model to the temperature dependent reduction in η0 was found to be slightly lower than that for the other grades of HPMCAS. Glassy yellowish HMEs were obtained using Haake Mini-Lab MicroCompounder operated at 160,180, and 200 °C and 100,200, and 300 rpm for all the grades at each temperature. Various physicochemical properties of HPMCAS such as glass transition temperature, semi-crystalline nature, solid state functional group properties, moisture content, and solution viscosity were not significantly affected by the HME processing. The most significant change was the release of acetic and succinic acid with the increase in HME temperature and speed. The free acid content release due to HME was directly proportional to the speed at lower operating temperatures. AS-LF was found to be the most stable with the lowest increase in total free acid content even at higher HME temperature and speed. Although the dissolution time was not affected due to HME for AS-LF and AS-MF grades, it was notably increased for AS-HF, perhaps due to significant reduction of succinoyl content. In conclusion, the HME processing conditions for solid dispersions of HPMCAS should be based on the acceptance levels of free acid for the drug and the drug product.
机译:HPMCAS是制药行业中作为赋形剂广泛使用的聚合物。在这项工作中,对HPMCAS在热熔挤出(HME)应用中的理化稳定性进行了研究。在HME加工之前,使用流变学评估来确定聚合物随温度升高的零速率粘度(η0)的降低。发现通过将Arrhenius模型拟合到与温度相关的η0降低中而确定的AS-MF活化能比其他等级的HPMCAS略低。使用Haake Mini-Lab MicroCompounder在每个温度下所有等级的160180和200°C以及100,200和300 rpm的操作下获得玻璃状淡黄色HME。 HPMCAS的各种物理化学性质,例如玻璃化转变温度,半结晶性质,固态官能团性质,水分含量和溶液粘度不受HME处理的影响很大。最显着的变化是随着HME温度和速度的增加,乙酸和琥珀酸的释放。 HME释放的游离酸含量与较低工作温度下的速度成正比。发现即使在较高的HME温度和速度下,AS-LF也是最稳定的,总游离酸含量的增加最少。虽然对于H-ME和AS-LF和AS-MF级别,溶解时间不受影响,但对于AS-HF,溶解时间明显增加,这可能是由于琥珀酰含量的显着降低。总之,HPMCAS固体分散体的HME加工条件应基于药物和药物中游离酸的接受水平。

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