首页> 外文期刊>International Journal of Pharmaceutics >Reprint of 'Characterisation and modelling of the thermorheological properties of pharmaceutical polymers and their blends using capillary rheometry: Implications for hot melt processing of dosage forms'
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Reprint of 'Characterisation and modelling of the thermorheological properties of pharmaceutical polymers and their blends using capillary rheometry: Implications for hot melt processing of dosage forms'

机译:重印“使用毛细管流变仪对药用聚合物及其混合物的热流变特性进行表征和建模:对剂型进行热熔加工的意义”

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摘要

Given the growing interest in thermal processing methods, this study describes the use of an advanced rheological technique, capillary rheometry, to accurately determine the thermorheological properties of two pharmaceutical polymers, Eudragit E100 (E100) and hydroxypropylcellulose JF (HPC) and their blends, both in the presence and absence of a model therapeutic agent (quinine, as the base and hydrochloride salt). Furthermore, the glass transition temperatures (Tg) of the cooled extrudates produced using capillary rheometry were characterised using Dynamic Mechanical Thermal Analysis (DMTA) thereby enabling correlations to be drawn between the information derived from capillary rheometry and the glass transition properties of the extrudates. The shear viscosities of E100 and HPC (and their blends) decreased as functions of increasing temperature and shear rates, with the shear viscosity of E100 being significantly greater than that of HPC at all temperatures and shear rates. All platforms were readily processed at shear rates relevant to extrusion (approximately 200-300 s(-1)) and injection moulding (approximately 900 s(-1)). Quinine base was observed to lower the shear viscosities of E100 and E100/HPC blends during processing and the Tg of extrudates, indicative of plasticisation at processing temperatures and when cooled (i.e. in the solid state). Quinine hydrochloride (20% w/w) increased the shear viscosities of E100 and HPC and their blends during processing and did not affect the Tg of the parent polymer. However, the shear viscosities of these systems were not prohibitive to processing at shear rates relevant to extrusion and injection moulding. As the ratio of E100:HPC increased within the polymer blends the effects of quinine base on the lowering of both shear viscosity and Tg of the polymer blends increased, reflecting the greater solubility of quinine within E100. In conclusion, this study has highlighted the importance of capillary rheometry in identifying processing conditions, polymer miscibility and plasticisation phenomena. (C) 2015 Published by Elsevier B.V.
机译:鉴于对热加工方法的兴趣日益浓厚,本研究描述了使用先进的流变技术(毛细管流变法)来准确测定两种药物聚合物Eudragit E100(E100)和羟丙基纤维素JF(HPC)及其混合物的热流变性。在存在和不存在模型治疗剂(奎宁,作为碱和盐酸盐)的情况下。此外,使用动态流变热分析(DMTA)对使用毛细管流变仪生产的冷却挤出物的玻璃化转变温度(Tg)进行了表征,从而能够在毛细管流变仪得到的信息与挤出物的玻璃化转变性能之间得出相关性。 E100和HPC(及其共混物)的剪切粘度随温度和剪切速率的增加而降低,在所有温度和剪切速率下,E100的剪切粘度均显着大于HPC的剪切粘度。所有平台均易于以与挤出(约200-300 s(-1))和注塑成型(约900 s(-1))相关的剪切速率进行加工。观察到奎宁碱降低了加工过程中E100和E100 / HPC共混物的剪切粘度以及挤出物的Tg,表明加工温度和冷却(即固态)时的增塑作用。盐酸奎宁(20%w / w)在加工过程中增加了E100和HPC及其混合物的剪切粘度,并且不影响母体聚合物的Tg。但是,这些系统的剪切粘度并不妨碍以与挤出和注塑成型相关的剪切速率进行加工。随着聚合物共混物中E100:HPC比例的增加,奎宁碱对降低剪切粘度和聚合物共混物的Tg的影响增加,反映出奎宁在E100中的溶解度更高。总之,这项研究突出了毛细管流变仪在确定加工条件,聚合物可混溶性和可塑化现象方面的重要性。 (C)2015由Elsevier B.V.发布

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