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Journal ArticleDOI

Applications of thermal analysis and coupled techniques in pharmaceutical industry

D. Giron
- 01 May 2002 - 
- Vol. 68, Iss: 2, pp 335-357
TLDR
The current use of thermal analysis and combined techniques in research and development and in production is reviewed and the advantage of commercially coupled techniques to thermogravimetry is emphasized with some examples.
Abstract
Thermal analysis methods are well-established techniques in research laboratories of pharmaceutical industry. The robustness and sensitivity of instrumentation, the introduction of automation and of reliable software according to the industrial needs widened considerably the areas of applications inthe last decade. Calibration of instruments and validation of results follow the state of the art of cGMP as for other analytical techniques. Thermal analysis techniques are especially useful for the study of the behavior of the poly-phasic systems drug substances and excipients and find a unique place for new delivery systems. Since change of temperature and moisture occur by processing and storage, changes of the solid state may have a considerable effect on activity, toxicity and stability of compounds. Current requirements of the International Conference of Harmonisation for the characterization and the quantitation of polymorphism in new entities re-enforce the position of thermal analysis techniques. This challenging task needs the use of complementary methods. Combined techniques and microcalorimetry demonstrate their advantages. This article reviews the current use of thermal analysis and combined techniques in research and development and in production. The advantage of commercially coupled techniques to thermogravimetry is emphasized with some examples.

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Citations
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Study of thermal behaviour of sugar alcohols

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Recent progress in the determination of volatile impurities in pharmaceuticals

TL;DR: In this article, a review and discussion of recent developments and the main trends in the determination of volatile impurities in drugs, with literature references and applications, is presented, along with an overview of regulatory and pharmacopeial status and trends.
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TL;DR: It was demonstrated that chitosan micelles were able to stabilize camptothecin, protecting up to 75% of the drug from hydrolysis, preserving its active lactone form.
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Study of thermal behavior of phytic acid

TL;DR: In this paper, a caracterizacao and comportamento termico dessa especie, empregando a analise termica (TG/DTG e DSC) and associando os resultados obtidos with aqueles de analise elementar (AE) and espectroscopia de absorcao na regiao do infravermelho.
References
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Book

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TL;DR: RACEMATE and their ENANTIOMER CONSTITUENTS Types of Crystalline Racemates Binary Mixtures of Enantiomers Solution Properties as mentioned in this paper.
Journal ArticleDOI

Characteristics and Significance of the Amorphous State in Pharmaceutical Systems

TL;DR: The amorphous state is critical in determining the solid-state physical and chemical properties of many pharmaceutical dosage forms and some of the most common methods that can be used to measure them are described.
Journal ArticleDOI

Solid dispersion of poorly water‐soluble drugs: Early promises, subsequent problems, and recent breakthroughs

TL;DR: Commercial use of solid dispersion systems during the past four decades has been very limited, primarily because of manufacturing difficulties and stability problems, but this has been changing in recent years because of the availability of surface-active and self-emulsifying carriers and the development of technologies to encapsulate solid dispersions directly into hard gelatin capsules as melts.
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Book ChapterDOI

Crystalline Polymorphism of Organic Compounds

TL;DR: A wide variety of techniques appropriate to the study of organic crystalline polymorphism and pseu-dopolymorphism is then surveyed, ranging from simple crystal density measurement to observation of polymorphic transformations using variable-temperature synchrotron X-ray diffraction methods.
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