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Pressure-temperature phase diagram of the dimorphism of the anti-inflammatory drug nimesulide

机译:耐炎药尼美舒利的二态性的压 - 温相图

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摘要

Understanding the phase behavior of active pharmaceutical ingredients is important for formulations of dosage forms and regulatory reasons. Nimesulide is an anti-inflammatory drug that is known to exhibit dimorphism; however up to now its stability behavior was not clear, as few thermodynamic data were available. Therefore, calorimetric melting data have been obtained, which were found to be TI-L = 422.4 ± 1.0 K, ¿I ¿ LH = 117.5 ± 5.2 J g-1, TII-L = 419.8 ± 1.0 K and ¿II ¿ LH = 108.6 ± 3.3 J g-1. In addition, vapor-pressure data, high-pressure melting data, and specific volumes have been obtained. It is demonstrated that form II is intrinsically monotropic in relation to form I and the latter would thus be the best polymorph to use for drug formulations. This result has been obtained by experimental means, involving high-pressure measurements. Furthermore, it has been shown that with very limited experimental and statistical data, the same conclusion can be obtained, demonstrating that in first instance topological pressure-temperature phase diagrams can be obtained without necessarily measuring any high-pressure data. It provides a quick method to verify the phase behavior of the known phases of an active pharmaceutical ingredient under different pressure and temperature conditions.
机译:了解活性药物成分的相行为对于剂型配方和监管原因很重要。尼美舒利是一种抗炎药,已知具有双态性。但是到目前为止,由于尚缺乏热力学数据,其稳定性尚不清楚。因此,获得了量热熔化数据,发现其为TI-L = 422.4±1.0 K,I = LH = 117.5±5.2 J g-1,TII-L = 419.8±1.0 K,II = LH = 108.6±3.3 J g-1。另外,获得了蒸气压数据,高压熔融数据和比容。已经证明形式II相对于形式I本质上是单向的,因此后者将是用于药物制剂的最佳多晶型物。该结果已通过涉及高压测量的实验手段获得。此外,已经表明,利用非常有限的实验和统计数据,可以获得相同的结论,这表明,在第一实例中,无需测量任何高压数据即可获得拓扑压力-温度相图。它提供了一种快速的方法来验证活性药物成分已知相在不同压力和温度条件下的相行为。

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