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叔丁醇对盐酸吉西他滨在冷冻水溶液中结晶动力学的影响。

Impact of tert-butyl alcohol on crystallization kinetics of gemcitabine hydrochloride in frozen aqueous solutions.

作者信息

Munjal Bhushan, Bansal Arvind K

机构信息

Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), SAS Nagar, Punjab, India.

出版信息

J Pharm Sci. 2015 Jan;104(1):87-97. doi: 10.1002/jps.24245. Epub 2014 Nov 12.

Abstract

The effect of tert-butyl alcohol (TBA) on isothermal crystallization kinetics of gemcitabine hydrochloride (GHCl) in frozen aqueous solutions was assessed by cold-stage microscopy. Addition of TBA (0%-5%, w/w) increased the value of Johnson-Mehl-Avrami rate constant (1.3-33.3 h⁻¹) and reduced the Avrami exponent (2.5-1.0). Thermodynamic parameters [enthalpy (ΔH(‡)), entropy (ΔS(‡)), and free energy (ΔG(‡)) of activation], calculated using Arrhenius and Eyring-Polanyi equations, established that TBA (2%, w/w) accelerated GHCl crystallization by reducing its ΔH(‡) (53.9 cf. 96.5 kJ/mol⁻¹) and ΔG(‡) (68.5 cf. 74.9 kJ/mol⁻¹). Further, to explore insights into the effect of TBA on nucleation and crystal growth of GHCl, crystallization kinetics data were deconvolved using Finke-Watzky model. This revealed that addition of TBA decreased ΔH(‡) of nucleation and increased ΔS(‡) of crystal growth, thereby reducing ΔG(‡) of nucleation and crystal growth by 11.7% and 4.2%, respectively. Finkey-Watzky model also predicted a reduction in the crystal size upon TBA addition, which was confirmed by comparing particle size of GHCl lyophilized in the presence and absence of TBA. In conclusion, TBA reduces ΔG(‡) of nucleation and crystal growth in a differential manner, thereby enhancing the crystallization kinetics of GHCl and affecting its morphological features.

摘要

通过冷台显微镜评估了叔丁醇(TBA)对冷冻水溶液中盐酸吉西他滨(GHCl)等温结晶动力学的影响。添加TBA(0%-5%,w/w)可提高约翰逊-梅耳-阿弗拉米速率常数的值(1.3-33.3 h⁻¹)并降低阿弗拉米指数(2.5-1.0)。使用阿伦尼乌斯方程和艾林-波兰尼方程计算的热力学参数[活化焓(ΔH(‡))、熵(ΔS(‡))和自由能(ΔG(‡))]表明,TBA(2%,w/w)通过降低其ΔH(‡)(53.9对比96.5 kJ/mol⁻¹)和ΔG(‡)(68.5对比74.9 kJ/mol⁻¹)加速了GHCl的结晶。此外,为了深入了解TBA对GHCl成核和晶体生长的影响,使用芬克-瓦茨基模型对结晶动力学数据进行了反卷积处理。结果表明,添加TBA降低了成核的ΔH(‡)并增加了晶体生长的ΔS(‡),从而分别使成核和晶体生长的ΔG(‡)降低了11.7%和4.2%。芬克-瓦茨基模型还预测添加TBA后晶体尺寸会减小,这通过比较在有和没有TBA的情况下冻干的GHCl的粒径得到了证实。总之,TBA以不同的方式降低了成核和晶体生长的ΔG(‡),从而增强了GHCl的结晶动力学并影响其形态特征。

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