Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions

Carbamazepine (CBZ), a widely used anticonvulsant drug, can crystallize and exhibits four polymorphic forms and one dihydrate. Anhydrous CBZ can spontaneously absorb water and convert to the hydrate form whose different crystallinity leads to lower biological activity. The present study was concerne...

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Main Authors: Mônia Aparecida Lemos Pinto, Beatriz Ambrozini, Ana Paula Garcia Ferreira, Éder Tadeu Gomes Cavalheiro
Format: Article
Language:English
Published: Universidade de São Paulo 2014-12-01
Series:Brazilian Journal of Pharmaceutical Sciences
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502014000400877&lng=en&tlng=en
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spelling doaj-5798571aba394398ab4098d9432573eb2020-11-25T01:06:53ZengUniversidade de São PauloBrazilian Journal of Pharmaceutical Sciences2175-97902014-12-0150487788410.1590/S1984-82502014000400023S1984-82502014000400877Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitionsMônia Aparecida Lemos PintoBeatriz AmbroziniAna Paula Garcia FerreiraÉder Tadeu Gomes CavalheiroCarbamazepine (CBZ), a widely used anticonvulsant drug, can crystallize and exhibits four polymorphic forms and one dihydrate. Anhydrous CBZ can spontaneously absorb water and convert to the hydrate form whose different crystallinity leads to lower biological activity. The present study was concerned to the possibility of recovering the hydrated form by heating. The thermal behavior of spontaneously hydrated carbamazepine was investigated by TG/DTG-DTA and DSC in dynamic atmospheres of air and nitrogen, which revealed that the spontaneous hydration of this pharmaceutical resulted in a Form III hydrate with 1.5 water molecules. After dehydration, this anhydrous Form III converted to Form I, which melted and decomposed in a single event, releasing isocyanic acid, as shown by evolved gas analysis using TG-FTIR. Differential scanning calorimetry analyses revealed that Form III melted and crystallized as Form I, and that subsequent cooling cycles only generated Form I by crystallization. Solid state decomposition kinetic studies showed that there was no change in the substance after the elimination of water by heating to 120 °C. Activation energies of 98 ± 2 and 93 ± 2 kJ mol-1 were found for the hydrated and dried samples, respectively, and similar profiles of activation energy as a function of conversion factor were observed for these samples.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502014000400877&lng=en&tlng=enCarbamazepina/análise térmicaPolimorfismoHidrataçãoDesidratação
collection DOAJ
language English
format Article
sources DOAJ
author Mônia Aparecida Lemos Pinto
Beatriz Ambrozini
Ana Paula Garcia Ferreira
Éder Tadeu Gomes Cavalheiro
spellingShingle Mônia Aparecida Lemos Pinto
Beatriz Ambrozini
Ana Paula Garcia Ferreira
Éder Tadeu Gomes Cavalheiro
Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions
Brazilian Journal of Pharmaceutical Sciences
Carbamazepina/análise térmica
Polimorfismo
Hidratação
Desidratação
author_facet Mônia Aparecida Lemos Pinto
Beatriz Ambrozini
Ana Paula Garcia Ferreira
Éder Tadeu Gomes Cavalheiro
author_sort Mônia Aparecida Lemos Pinto
title Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions
title_short Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions
title_full Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions
title_fullStr Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions
title_full_unstemmed Thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions
title_sort thermoanalytical studies of carbamazepine: hydration/dehydration, thermal decomposition, and solid phase transitions
publisher Universidade de São Paulo
series Brazilian Journal of Pharmaceutical Sciences
issn 2175-9790
publishDate 2014-12-01
description Carbamazepine (CBZ), a widely used anticonvulsant drug, can crystallize and exhibits four polymorphic forms and one dihydrate. Anhydrous CBZ can spontaneously absorb water and convert to the hydrate form whose different crystallinity leads to lower biological activity. The present study was concerned to the possibility of recovering the hydrated form by heating. The thermal behavior of spontaneously hydrated carbamazepine was investigated by TG/DTG-DTA and DSC in dynamic atmospheres of air and nitrogen, which revealed that the spontaneous hydration of this pharmaceutical resulted in a Form III hydrate with 1.5 water molecules. After dehydration, this anhydrous Form III converted to Form I, which melted and decomposed in a single event, releasing isocyanic acid, as shown by evolved gas analysis using TG-FTIR. Differential scanning calorimetry analyses revealed that Form III melted and crystallized as Form I, and that subsequent cooling cycles only generated Form I by crystallization. Solid state decomposition kinetic studies showed that there was no change in the substance after the elimination of water by heating to 120 °C. Activation energies of 98 ± 2 and 93 ± 2 kJ mol-1 were found for the hydrated and dried samples, respectively, and similar profiles of activation energy as a function of conversion factor were observed for these samples.
topic Carbamazepina/análise térmica
Polimorfismo
Hidratação
Desidratação
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502014000400877&lng=en&tlng=en
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