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首页> 外文期刊>Journal of the Serbian Chemical Society >Application of experimental design in examination of the dissolution rate of carbamazepine from formulations: Characterization of the optimal formulation by DSC, TGA, FT-IR and PXRD analysis
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Application of experimental design in examination of the dissolution rate of carbamazepine from formulations: Characterization of the optimal formulation by DSC, TGA, FT-IR and PXRD analysis

机译:实验设计在检查卡马西平从制剂中的溶解速率中的应用:通过DSC,TGA,FT-IR和PXRD分析表征最佳制剂

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Poor solubility is one of the key reasons for the poor bioavailability of these drugs. This paper displays a formulation of a solid surfactant system with carbamazepine, in order to increase its dissolution rate. Solid state surfactant systems are formed by application of fractal experimental design. Poloxamer 237 and Poloxamer 338 were used as surfactants and Brij? 35 was used as the co-surfactant. The ratios of the excipients and carbamazepine were varied and their effects on the dissolution rate of carbamazepine were examined. Moreover, the effects of the addition of natural (diatomite) and a synthetic adsorbent carrier (Neusiline UFL2) on the dissolution rate of carbamazepine were also tested. The prepared surfactant systems were characterized and the influence of the excipients on possible changes of the polymorphous form of carbamazepine examined by application of analytical techniques (DSC, TGA, FT-IR, PXRD). It was determined that an appropriate selection of the excipient type and ratio could provide a significant increase in the carbamazepine dissolution rate. By application of analytical techniques, it was found that that the employed excipients induce a transition of carbamazepine into the amorphous form and that the selected sample was stable for three months, when kept under ambient conditions. [Projekat Ministarstva nauke Republike Srbije, br. TR34007]
机译:溶解性差是这些药物生物利用度差的主要原因之一。本文展示了一种具有卡马西平的固体表面活性剂体系的配方,以提高其溶解速度。固态表面活性剂体系是通过分形实验设计形成的。使用泊洛沙姆237和泊洛沙姆338作为表面活性剂和Brij? 35用作辅助表面活性剂。改变了赋形剂和卡马西平的比例,并考察了它们对卡马西平溶出度的影响。此外,还测试了添加天然(硅藻土)和合成吸附剂载体(Neusiline UFL2)对卡马西平溶解速率的影响。表征了制备的表面活性剂体系,并通过应用分析技术(DSC,TGA,FT-IR,PXRD)研究了赋形剂对卡马西平多晶型形式可能变化的影响。经测定,赋形剂种类和比率的适当选择可以提供在卡马西平溶出速率显著增加。通过分析技术的应用,发现所采用的赋形剂可将卡马西平转变为无定形形式,并且所选样品在环境条件下保持稳定三个月。 [Projekat Ministarstva nauke Republike Srbije,br。 TR34007]

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