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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Preparation of carbamazepine-Soluplus? solid dispersions by hot-melt extrusion, and prediction of drug-polymer miscibility by thermodynamic model fitting
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Preparation of carbamazepine-Soluplus? solid dispersions by hot-melt extrusion, and prediction of drug-polymer miscibility by thermodynamic model fitting

机译:卡马西平-Soluplus的制备?热熔挤出制备固体分散体,并通过热力学模型拟合预测药物与聚合物的相容性

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摘要

Hot-melt extrusion (HME) is a dust- and solvent-free continuous process enabling the preparation of a variety of solid dosage forms containing solid dispersions of poorly soluble drugs into thermoplastic polymers. Miscibility of drug and polymer is a prerequisite for stable solid dispersion formation. The present study investigates the feasibility of forming solid dispersions of carbamazepine (CBZ) into polyethyleneglycol-polyvinyl caprolactam-polyvinyl acetate grafted copolymer (Soluplus?) by hot-melt extrusion. Physicochemical properties of the raw materials, extrudates, co-melted products, and corresponding physical mixtures were characterized by thermo-gravimetric analysis (TGA), differential scanning calorimetry (DSC), attenuated total reflectance infrared (ATR-FTIR) spectroscopy and hot stage microscopy (HSM), while miscibility of CBZ and Soluplus? was estimated on the basis of the Flory-Huggins theory, Hansen solubility parameters, and solid-liquid equilibrium equation. It was found that hot-melt extrusion of carbamazepine and Soluplus? is feasible on a single-screw hot-melt extruder without the addition of plasticizers. DSC analysis and FTIR spectroscopy revealed that a molecular dispersion is formed when the content of CBZ does not exceed ~5% w/w while higher CBZ content results in a microcrystalline dispersion of CBZ form III crystals, with the molecularly dispersed percentage increasing with extrusion temperature, at the risk of inducing transformation to the undesirable form I of CBZ. Thermodynamic modeling elucidated potential limitations and temperature dependence of solubility/dispersibility of carbamazepine in Soluplus? hot-melt extrudates. The results obtained by thermodynamic models are in agreement with the findings of the HME processing, encouraging therefore their further application in the HME process development.
机译:热熔挤出(HME)是一种无尘,无溶剂的连续工艺,可制备多种固体剂型,其中包含难溶性药物在热塑性聚合物中的固体分散体。药物和聚合物的混溶性是稳定形成固体分散体的前提。本研究研究了通过热熔挤出将卡马西平(CBZ)的固体分散体形成聚乙二醇-聚乙烯己内酰胺-聚乙酸乙烯酯接枝共聚物(Soluplus?)的可行性。通过热重分析(TGA),差示扫描量热法(DSC),衰减全反射红外(ATR-FTIR)光谱和热台显微镜对原料,挤出物,共熔产物和相应的物理混合物的理化性质进行了表征(HSM),而CBZ和Soluplus的可混溶性?根据Flory-Huggins理论,Hansen溶解度参数和固液平衡方程估算。发现卡马西平和Soluplus的热熔挤出?在不添加增塑剂的情况下,在单螺杆热熔挤出机上可行。 DSC分析和FTIR光谱表明,当CBZ含量不超过〜5%w / w时会形成分子分散体,而较高的CBZ含量会导致CBZ III型晶体的微晶分散体,随着分散温度的升高,分子分散百分数增加,具有诱发转化为不良形式的CBZ的风险。热力学模型阐明了卡马西平在Soluplus®中的溶解度/分散性的潜在限制和温度依赖性。热熔挤出物。通过热力学模型获得的结果与HME处理的结果一致,因此鼓励它们在HME工艺开发中的进一步应用。

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