首页> 外文期刊>The Journal of Supercritical Fluids >Melting point depression of Piroxicam in carbon dioxide + co-solvent mixtures and inclusion complex formation with β-cyclodextrin
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Melting point depression of Piroxicam in carbon dioxide + co-solvent mixtures and inclusion complex formation with β-cyclodextrin

机译:吡罗昔康在二氧化碳+助溶剂混合物中的熔点降低,并与β-环糊精形成包合物

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This paper reports on the melting point depression and polymorphic transformations of Piroxicam in supercritical carbon dioxide and in mixtures with ethanol, acetone or ethyl acetate as co-solvents. It further reports on the formation of the inclusion complexes of Piroxicam which is liquefied in these fluid mixtures with β-cyclodextrin. It is shown that in carbon dioxide the melting temperature of Piroxicam is reduced by 17°C, from 200°C to 183°C. The melting temperature was further depressed in mixtures containing a small amount of a co-solvent. The largest melting point depression was 37 °C and was observed in the fluid mixture containing 10 wt% ethanol. Piroxicam that was melted and recrystallized in carbon dioxide or carbon dioxide+co-solvent mixtures displayed distinct differences in its infrared spectra, thermal behavior and X-ray diffraction patterns as compared to its unprocessed form. Melting in CO2 and CO2+co-solvent mixtures was found to lead to a polymorphic transformation of Piroxicam from the β crystal form (cubic) to the a crystal form (needle). It was further found that melting of Piroxicam in 90:10 wt% CO2 :ethanol fluid mixture promotes inclusion complex formation with β-cydodextrin leading to a 1:1 molar ratio complex. Inclusion complex formation via melting in supercritical fluid mixtures is now being proposed as a new processing methodology.
机译:本文报道了吡罗昔康在超临界二氧化碳中以及与乙醇,丙酮或乙酸乙酯作为助溶剂的混合物中的熔点降低和多晶型转变。它进一步报道了吡罗昔康的包合物的形成,该包合物在这些流体混合物中与β-环糊精液化。结果表明,在二氧化碳中,吡罗昔康的熔融温度从200°C降低到183°C降低了17°C。在包含少量助溶剂的混合物中,熔融温度进一步降低。最大熔点降低为37℃,并且在含有10wt%乙醇的流体混合物中观察到。与未处理的形式相比,在二氧化碳或二氧化碳+共溶剂混合物中熔融并重结晶的吡罗昔康在红外光谱,热行为和X射线衍射图上显示出明显的差异。发现在CO2和CO2 +共溶剂的混合物中熔融会导致吡罗昔康从β晶型(立方)到晶型(针)的多态转化。进一步发现吡罗昔康在90∶10wt%的CO 2:乙醇流体混合物中的熔融促进了与β-环糊精的包合物形成,导致摩尔比为1∶1。现在已经提出通过在超临界流体混合物中熔融形成包合物形成物作为新的处理方法。

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