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药物固体中非晶态/晶态相定量分析技术。

Analytical techniques for quantification of amorphous/crystalline phases in pharmaceutical solids.

作者信息

Shah Birju, Kakumanu Vasu Kumar, Bansal Arvind K

机构信息

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

出版信息

J Pharm Sci. 2006 Aug;95(8):1641-65. doi: 10.1002/jps.20644.

Abstract

The existence of different solid-state forms such as polymorphs, solvates, hydrates, and amorphous form in pharmaceutical drug substances and excipients, along with their downstream consequences in drug products and biological systems, is well documented. Out of these solid states, amorphous systems have attracted considerable attention of formulation scientists for their specific advantages, and their presence, either by accident or design is known to incorporate distinct properties in the drug product. Identification of different solid-state forms is crucial to anticipate changes in the performance of the material upon storage and/or handling. Quantitative analysis of physical state is imperative from the viewpoint of both the manufacturing and the regulatory control aimed at assuring safety and efficacy of drug products. Numerous analytical techniques have been reported for the quantification of amorphous/crystalline phase, and implicit in all quantitative options are issues of accuracy, precision, and suitability. These quantitative techniques mainly vary in the properties evaluated, thus yielding divergent values of crystallinity for a given sample. The present review provides a compilation of the theoretical and practical aspects of existing techniques, thereby facilitating the selection of an appropriate technique to accomplish various objectives of quantification of amorphous systems.

摘要

药物原料药和辅料中存在不同的固态形式,如多晶型物、溶剂化物、水合物和无定形形式,以及它们在药品和生物系统中的下游影响,都有充分的文献记载。在这些固态形式中,无定形系统因其特定优势而引起了制剂科学家的极大关注,而且无论是偶然还是有意存在,都已知其会使药品具有独特的性质。识别不同的固态形式对于预测材料在储存和/或处理过程中的性能变化至关重要。从旨在确保药品安全性和有效性的制造和监管控制角度来看,对物理状态进行定量分析势在必行。已经报道了许多用于定量无定形/结晶相的分析技术,并且所有定量方法都存在准确性、精密度和适用性问题。这些定量技术主要在评估的性质方面有所不同,因此对于给定样品会得出不同的结晶度值。本综述汇编了现有技术的理论和实践方面,从而便于选择合适的技术来实现无定形系统定量的各种目标。

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