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首页> 外文期刊>The Journal of Chemical Physics >Thermodynamic scaling of molecular dynamics in supercooled liquid state of pharmaceuticals: Itraconazole and ketoconazole
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Thermodynamic scaling of molecular dynamics in supercooled liquid state of pharmaceuticals: Itraconazole and ketoconazole

机译:药物过冷液体状态下分子动力学的热力学定标:伊曲康唑和酮康唑

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Pressure-Volume-Temperature (PVT) measurements and broadband dielectric spectroscopy were carried out to investigate molecular dynamics and to test the validity of thermodynamic scaling of two homologous compounds of pharmaceutical activity: itraconazole and ketoconazole in the wide range of thermodynamic conditions. The pressure coefficients of the glass transition temperature (dT(g)/dp) for itraconazole and ketoconazole were determined to be equal to 183 and 228 K/GPa, respectively. However, for itraconazole, the additional transition to the nematic phase was observed and characterized by the pressure coefficient dT(n)/dp = 258 K/GPa. From PVT and dielectric data, we obtained that the liquid-nematic phase transition is governed by the relaxation time since it occurred at constant tau(alpha) = 10(-5) s. Furthermore, we plotted the obtained relaxation times as a function of T-1 nu(-gamma), which has revealed that the validity of thermodynamic scaling with the. exponent equals to 3.69 +/- 0.04 and 3.64 +/- 0.03 for itraconazole and ketoconazole, respectively. Further analysis of the scaling parameter in itraconazole revealed that it unexpectedly decreases with increasing relaxation time, which resulted in dramatic change of the shape of the thermodynamic scaling master curve. While in the case of ketoconazole, it remained the same within entire range of data (within experimental uncertainty). We suppose that in case of itraconazole, this peculiar behavior is related to the liquid crystals' properties of itraconazole molecule. (C) 2015 AIP Publishing LLC.
机译:进行了压力-体积-温度(PVT)测量和宽带介电谱研究,以研究分子动力学并测试在广泛的热力学条件下两种具有药物活性的同源化合物:伊曲康唑和酮康唑的热力学定标的有效性。确定伊曲康唑和酮康唑的玻璃化转变温度的压力系数(dT(g)/ dp)分别等于183 K / GPa和228 K / GPa。然而,对于伊曲康唑,观察到向向列相的额外转变,其特征在于压力系数dT(n)/ dp = 258 K / GPa。从PVT和介电数据中,我们获得了液相向列相变受弛豫时间控制,因为它发生在恒定的tauα= 10(-5)s处。此外,我们绘制了获得的弛豫时间与T-1 nu(-γ)的函数关系图,这表明热力学定标的有效性。伊曲康唑和酮康唑的指数分别等于3.69 +/- 0.04和3.64 +/- 0.03。对伊曲康唑中的定标参数的进一步分析表明,它随松弛时间的增加而出乎意料地降低,这导致了热力学定标主曲线形状的急剧变化。对于酮康唑,在整个数据范围内(在实验不确定性范围内)它保持不变。我们假设在伊曲康唑的情况下,这种特殊行为与伊曲康唑分子的液晶性质有关。 (C)2015 AIP Publishing LLC。

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