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Development of ternary solid dispersions with hydrophilic polymer and surface adsorbent for improving dissolution rate of carbamazepine

机译:开发具有亲水性聚合物和表面吸附剂的三元固体分散体,以提高卡马西平的溶解速度

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In this study solid dispersions of carbamazepine in the hydrophilic Kollidon? VA64 polymer, adsorbed onto Neusilin? UFL2 adsorption carrier have been employed to improve carbamazepine dissolution rate. In order to evaluate effects of changing in the proportions of all solid dispersion components on carbamazepine dissolution rate, D-optimal mixture experimental design was used in the formulation development. From all prepared solid dispersion formulations, significantly faster carbamazepine dissolution was observed compared to pure drug. Ternary solid dispersions containing carbamazepine, Kollidon? VA64 and Neusilin? UFL2 showed superior dissolution performances over binary ones, containing only carbamazepine and Neusilin? UFL2. Proportion of Kollidon? VA64 showed the most profound effect on the amount of carbamazepine dissolved after 10 and 30?min, whereby these parameters increase upon increasing in Kollidon? VA64 concentrations up to the middle values in the studied range of Kollidon? VA64 concentrations. Physicochemical characterization of the selected samples using differential scanning calorimetry, FT-IR spectroscopy, powder X-ray diffraction and polarizing light microscopy showed polymorphic transition of carbamazepine from more thermodynamically stable monoclinic form (form III) to less thermodynamically stable triclinic form (form I) in the case of ternary, but not of binary solid dispersion formulations. This polymorphic transition can be one of the factors responsible for improving of carbamazepine dissolution rate from studied solid dispersions. Ternary solid dispersions prepared with Kollidon? VA64 hydrophilic polymer and Neusilin? UFL2 adsorption carrier resulted in significantly improvement of carbamazepine dissolution rate, but formation of metastable polymorphic form of carbamazepine requires particular care to be taken in ensuring product long term stability.
机译:在这项研究中,卡马西平在亲水性Kollidon®中的固体分散体?吸附在Neusilin上的VA64聚合物? UFL2吸附载体已被用来提高卡马西平的溶解速度。为了评估所有固体分散体组分的比例变化对卡马西平溶出度的影响,在制剂开发中采用了D-最佳混合物实验设计。从所有制备的固体分散体制剂中,观察到卡马西平的溶出速度比纯药物快得多。含卡马西平,Kollidon的三元固体分散体? VA64和Neusilin?与仅包含卡马西平和Neusilin?的二元化合物相比,UFL2的溶解性能更高。 UFL2。 Kollidon的比例? VA64对10和30分钟后的卡马西平溶解量表现出最深远的影响,这些参数随Kollidon?的增加而增加。在Kollidon?研究范围内,VA64浓度可达到中间值。 VA64浓度。使用差示扫描量热法,FT-IR光谱,粉末X射线衍射和偏光显微镜对选定样品进行物理化学表征,显示卡马西平从热力学更稳定的单斜晶型(III型)转变为热力学更稳定的三斜晶型(I型)。如果是三元,则不是二元固体分散体。这种多晶型转变可能是导致卡马西平从研究的固体分散体中溶出速率提高的因素之一。用Kollidon制备的三元固体分散体? VA64亲水聚合物和Neusilin? UFL2吸附载体显着提高了卡马西平的溶解速度,但是形成卡马西平亚稳多晶型形式需要特别注意以确保产品的长期稳定性。

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