A study of the heat-mediated phase transformations of praziquantel hydrates. Evaluation of their impact on the dissolution rate

Comprehensive knowledge of the critical properties of the active pharmaceutical ingredients is a requirement within the modern concept of quality. Praziquantel hemihydrate (HH) and monohydrate (MH) are new solid forms of this antihelmintic agent, which have better solubility properties than the co...

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Autores principales: Salazar Rojas, Duvernis, Kaufman, Teodoro Saúl, Maggio, Rubén Mariano
Formato: article artículo publishedVersion
Lenguaje:Inglés
Publicado: Elsevier 2022
Materias:
Acceso en línea:http://hdl.handle.net/2133/25041
http://hdl.handle.net/2133/25041
Aporte de:
id I15-R121-2133-25041
record_format dspace
institution Universidad Nacional de Rosario
institution_str I-15
repository_str R-121
collection Repositorio Hipermedial de la Universidad Nacional de Rosario (UNR)
language Inglés
topic Chemometrics
Hot-stage-MIR
Hydrates
Polymorphism
Praziquantel
spellingShingle Chemometrics
Hot-stage-MIR
Hydrates
Polymorphism
Praziquantel
Salazar Rojas, Duvernis
Kaufman, Teodoro Saúl
Maggio, Rubén Mariano
A study of the heat-mediated phase transformations of praziquantel hydrates. Evaluation of their impact on the dissolution rate
topic_facet Chemometrics
Hot-stage-MIR
Hydrates
Polymorphism
Praziquantel
description Comprehensive knowledge of the critical properties of the active pharmaceutical ingredients is a requirement within the modern concept of quality. Praziquantel hemihydrate (HH) and monohydrate (MH) are new solid forms of this antihelmintic agent, which have better solubility properties than the commercial anhydrous solid form (polymorph A). The thermal stability of the hydrates was evaluated, aiming to understand any possible transformation (amorphization, change to a less soluble form). Therefore, HH and MH were prepared along with the related anhydrous solid forms A and B, and characterized employing solid-state nuclear magnetic resonance, powder X-ray diffraction, mid and near infrared spectroscopy, thermal methods and the intrinsic dissolution rate. The transformations of HH and MH under thermal stress conditions were monitored through a variable temperature infrared spectroscopy approach, assisted by multivariate curve resolution with alternating least squares (MCR-ALS), finding that HH undergoes a two-step transformation (HH→B→A) to form A, whereas MH dehydrates directly into form A. This was further confirmed by conventional calorimetric methods (differential scanning calorimetry and thermogravimetry) and powder X-ray diffractometry. The impact of changes in the stressed solid forms and their dissolution rates was also assessed. Significant differences in dissolution performance were found regarding the solid forms produced as a consequence of thermally-induced dehydration.
format article
artículo
publishedVersion
author Salazar Rojas, Duvernis
Kaufman, Teodoro Saúl
Maggio, Rubén Mariano
author_facet Salazar Rojas, Duvernis
Kaufman, Teodoro Saúl
Maggio, Rubén Mariano
author_sort Salazar Rojas, Duvernis
title A study of the heat-mediated phase transformations of praziquantel hydrates. Evaluation of their impact on the dissolution rate
title_short A study of the heat-mediated phase transformations of praziquantel hydrates. Evaluation of their impact on the dissolution rate
title_full A study of the heat-mediated phase transformations of praziquantel hydrates. Evaluation of their impact on the dissolution rate
title_fullStr A study of the heat-mediated phase transformations of praziquantel hydrates. Evaluation of their impact on the dissolution rate
title_full_unstemmed A study of the heat-mediated phase transformations of praziquantel hydrates. Evaluation of their impact on the dissolution rate
title_sort study of the heat-mediated phase transformations of praziquantel hydrates. evaluation of their impact on the dissolution rate
publisher Elsevier
publishDate 2022
url http://hdl.handle.net/2133/25041
http://hdl.handle.net/2133/25041
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