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Calorimetric investigation of the structural relaxation of amorphous materials: Evaluating validity of the methodologies.

机译:非晶态材料结构弛豫的量热研究:评估方法的有效性。

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Although the potential advantages of the amorphous solid state is widely recognized among pharmaceutical researchers, its industrial applications have been mainly limited to freeze-dried injectable formulations where the amorphous form is naturally produced. Applications in oral dosage forms have been limited due, at least in part, to the poor state of knowledge regarding physical properties and stability of amorphous materials. Relaxation behavior is perhaps one of the most important physical characteristics of amorphous materials because relaxation kinetics are closely related to physical and chemical stability. Although recent developments in calorimetry methodology have facilitated detailed characterization of relaxation behavior, some experimental difficulties remain, and quantitative analysis of structural relaxation is still under development. This review focuses on the calorimetric investigation of the structural relaxation of drugs and excipients, and discusses the difficulties in the experimental evaluation of the relaxation time by those methods. We also present an original investigation of the impact of increases in relaxation time during an annealing experiment on the values of relaxation time, tau, and stretched exponential constant, beta, obtained from analysis of the experiment according to the Kohlraush-Williams-Watts kinetic model. Using results from a numerical simulation, we find that the values of tau and beta obtained from the data analysis are too large and too small, respectively, but the value of stretched relaxation time, tau(beta), remains reliable. The time dependence of the relaxation time is likely to play an important role in the non-Arrhenius behavior of pharmaceutical glasses. (c) 2005 Wiley-Liss, Inc. and the American Pharmacists Association J Pharm Sci 94:948-965, 2005.
机译:尽管无定形固态的潜在优势在药物研究人员中得到了广泛认可,但其工业应用主要限于天然形成无定形形式的冻干注射剂。至少部分由于对非晶态材料的物理性质和稳定性的了解不足,限制了在口服剂型中的应用。弛豫行为可能是非晶材料最重要的物理特性之一,因为弛豫动力学与物理和化学稳定性密切相关。尽管量热法的最新发展促进了弛豫行为的详细表征,但仍然存在一些实验困难,并且结构弛豫的定量分析仍在发展中。这篇综述着重于药物和赋形剂的结构弛豫的量热研究,并讨论了用这些方法对弛豫时间进行实验评估的困难。我们还提出了对退火实验期间弛豫时间增加对弛豫时间tau和拉伸指数常数β值的影响的原始调查,该值是根据Kohlraush-Williams-Watts动力学模型从实验分析中获得的。使用数值模拟的结果,我们发现从数据分析获得的tau和beta值分别太大和太小,但是拉伸弛豫时间tauβ的值仍然可靠。弛豫时间的时间依赖性很可能在药物玻璃的非阿伦尼乌斯行为中起重要作用。 (c)2005 Wiley-Liss,Inc.和美国药剂师协会J Pharm Sci 94:948-965,2005。

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