布洛芬与乙酰水杨酸的溶剂化和水化特性。

AAPS PharmSci Pub Date : 2004-01-26 DOI:10.1208/ps060103
German L Perlovich, Sergey V Kurkov, Andrey N Kinchin, Annette Bauer-Brandl
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引用次数: 27

摘要

采用热分析方法:升华量热法、溶液量热法和溶解度法对布洛芬和乙酰水杨酸进行了研究。通过测量饱和蒸汽压的温度依赖性,计算出升华焓δ δ(0)(次)和升华熵δ δ(0)(次)及其在整个过程中的相对分量。研究了脂肪醇的吉布斯溶剂化能及其焓和熵分数,并与模型物质和其他非甾体类抗炎药(苯甲酸、双氟尼拉、氟比洛芬、酮洛芬和萘普生)的各自性质进行了比较。在所有情况下,发现焓是溶剂化过程的驱动力。得到了辛醇溶剂化的吉布斯能DeltaG(Oct) (solv)与水向辛醇转移的吉布斯能DeltaG(0) (tr)之间的相关关系。讨论了辛醇和水的相互溶解度对分划驱动力的影响。在辛醇中观察到焓-熵-补偿效应,并讨论了偏离一般趋势的后果。
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Solvation and hydration characteristics of ibuprofen and acetylsalicylic acid.

Ibuprofen and acetylsalicylic acid were studied by thermoanalytical methods: sublimation calorimetry, solution calorimetry, and with respect to solubility. Upon measuring the temperature dependences of the saturated vapor pressure, enthalpies of sublimation, DeltaH(0) (sub), as well as the entropies of sublimation, DeltaS(0) (sub), and their respective relative fractions in the total process were calculated. The Gibbs energy of solvation in aliphatic alcohols as well as the enthalpic and entropic fractions thereof were also studied and compared with the respective properties of model substances and other nonsteroidal antiinflammatory drugs (benzoic acid, diflunisal, flurbiprofen, ketoprofen, and naproxen). In all cases, enthalpy was found to be the driving force of the solvation process. Correlations were derived between Gibbs energy of solvation in octanol, DeltaG(Oct) (solv), and the transfer Gibbs energy from water to octanol, DeltaG(0) (tr). Influence of mutual octanol and water solubilities on the driving force of partitioning is discussed. An enthalpy-entropy-compensation effect in octanol was observed, and consequences of deviation from the general trend are also discussed.

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