首页> 外文期刊>Journal of pharmaceutical sciences. >Relationship between the crystallization rates of amorphous nifedipine, phenobarbital, and flopropione, and their molecular mobility as measured by their enthalpy relaxation and (1)H NMR relaxation times.
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Relationship between the crystallization rates of amorphous nifedipine, phenobarbital, and flopropione, and their molecular mobility as measured by their enthalpy relaxation and (1)H NMR relaxation times.

机译:非晶态硝苯地平,苯巴比妥和氟虫的结晶速率与分子迁移率之间的关系,通过焓焓弛豫和(1)H NMR弛豫时间测量。

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摘要

Isothermal crystallization of amorphous nifedipine, phenobarbital, and flopropione was studied at temperatures above and below their glass transition temperatures (T(g)). A sharp decrease in the crystallization rate with decreasing temperature was observed for phenobarbital and flopropione, such that no crystallization was observed at temperatures 20-30 degrees C lower than their T(g) within ordinary experimental time periods. In contrast, the crystallization rate of nifedipine decreased moderately with decreasing temperature, and considerable crystallization was observed at 40 degrees C below its T(g) within 4 months. The molecular mobility of these amorphous drugs was assessed by enthalpy relaxation and (1)H-NMR relaxation measurements. The enthalpy relaxation time of nifedipine was smaller than that of phenobarbital or flopropinone at the same T - T(g) values, suggesting higher molecular mobility of nifedipine. The spin-lattice relaxation time in the rotating frame (T(1rho)) decreased markedly at temperature above T(g). The slope of the Arrhenius type plot of the T(1rho) for nifedipine protons changed at about 10 degrees C below the T(g), whereas the slope for phenobarbital protons became discontinuous at about 10 degrees C above the T(g). Even at temperatures below its T(g), the spin-spin relaxation process of nifedipine could be described by the sum of its Gaussian relaxation, which is characteristic of solid protons, and its Lorentzian relaxation, which is characteristic of protons with higher mobility. In contrast, no Lorentzian relaxation was observed for phenobarbital or flopropione at temperatures below their T(g). These results also suggest that nifedipine has higher molecular mobility than phenobarbital and flopropione at temperatures below T(g). The faster crystallization of nifedipine than that of phenobarbital or flopropione observed at temperatures below its T(g) may be partly ascribed to its higher molecular mobility at these temperatures.
机译:在高于和低于其玻璃化转变温度(T(g))的温度下研究了非晶态硝苯地平,苯巴比妥和氟虫的等温结晶。对于苯巴比妥和氟虫,观察到结晶速率随温度降低而急剧下降,因此在正常实验时间内,在比其T(g)低20-30摄氏度的温度下未观察到结晶。相反,硝苯地平的结晶速率随温度降低而适度下降,并且在低于其T(g)40℃的4个月内观察到大量结晶。这些无定形药物的分子迁移率是通过焓弛豫和(1)H-NMR弛豫测量来评估的。在相同的T-T(g)值下,硝苯地平的焓弛豫时间小于苯巴比妥或氟哌丁酮的焓弛豫时间,表明硝苯地平的分子迁移性更高。在高于T(g)的温度下,旋转框架(T(1rho))中的自旋晶格弛豫时间显着减少。硝苯地平质子的T(1rho)的Arrhenius型图的斜率在T(g)之下约10摄氏度时变化,而苯巴比妥质子的斜率在T(g)之上约10摄氏度时变得不连续。即使在低于其T(g)的温度下,硝苯地平的自旋自旋弛豫过程也可以用高斯弛豫和固态洛伦兹弛豫的总和来描述。高斯弛豫是固体质子的特征,洛伦兹弛豫是高质子的特征。相反,在低于其T(g)的温度下未观察到苯巴比妥或氟虫的洛伦兹弛豫。这些结果还表明,在低于T(g)的温度下,硝苯地平比苯巴比妥和氟虫酮具有更高的分子迁移率。在低于其T(g)的温度下观察到的硝苯地平的结晶速度比苯巴比妥或氟虫的结晶快,这可能部分归因于在这些温度下其较高的分子迁移率。

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