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Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide

Polyamorphism has been a controversial and highly debated solid-state phenomenon in both material and pharmaceutical communities. Although some evidence of this fascinating phenomenon has been reported for several inorganic systems, and more recently also for a few organic compounds, the occurrence...

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Autores principales: Martins, Inês C. B., Larsen, Anders S., Madsen, Anders Ø., Frederiksen, Olivia Aalling, Correia, Alexandra, Jensen, Kirsten M. Ø., Jeppesen, Henrik S., Rades, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10599472/
https://www.ncbi.nlm.nih.gov/pubmed/37886102
http://dx.doi.org/10.1039/d3sc02802j
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author Martins, Inês C. B.
Larsen, Anders S.
Madsen, Anders Ø.
Frederiksen, Olivia Aalling
Correia, Alexandra
Jensen, Kirsten M. Ø.
Jeppesen, Henrik S.
Rades, Thomas
author_facet Martins, Inês C. B.
Larsen, Anders S.
Madsen, Anders Ø.
Frederiksen, Olivia Aalling
Correia, Alexandra
Jensen, Kirsten M. Ø.
Jeppesen, Henrik S.
Rades, Thomas
author_sort Martins, Inês C. B.
collection PubMed
description Polyamorphism has been a controversial and highly debated solid-state phenomenon in both material and pharmaceutical communities. Although some evidence of this fascinating phenomenon has been reported for several inorganic systems, and more recently also for a few organic compounds, the occurrence of polyamorphism is poorly understood and the molecular-level organization of polyamorphic forms is still unknown. Here we have investigated the occurrence of polyamorphism and polyamorphic interconversions in hydrochlorothiazide (HCT), using both experimental and computational methods. Three distinct HCT polyamorphs, presenting distinct physical and thermal stabilities as well as distinct relaxation properties, were systematically prepared using spray-drying (SD), quench-cooling (QC) and ball milling (BM) methods. HCT polyamorph II (obtained by QC) was found to be more physically stable than polyamorphs I and III (obtained by SD and BM, respectively). Furthermore, polyamorphs I and III could be converted into polyamorph II after QC, while polyamorph II did not convert to any other polyamorph after SD or BM. Molecular dynamics simulations show that HCT dihedral angle distributions are significantly different for polyamorphs I and II, which is postulated as a possible explanation for their different physicochemical properties.
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spelling pubmed-105994722023-10-26 Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide Martins, Inês C. B. Larsen, Anders S. Madsen, Anders Ø. Frederiksen, Olivia Aalling Correia, Alexandra Jensen, Kirsten M. Ø. Jeppesen, Henrik S. Rades, Thomas Chem Sci Chemistry Polyamorphism has been a controversial and highly debated solid-state phenomenon in both material and pharmaceutical communities. Although some evidence of this fascinating phenomenon has been reported for several inorganic systems, and more recently also for a few organic compounds, the occurrence of polyamorphism is poorly understood and the molecular-level organization of polyamorphic forms is still unknown. Here we have investigated the occurrence of polyamorphism and polyamorphic interconversions in hydrochlorothiazide (HCT), using both experimental and computational methods. Three distinct HCT polyamorphs, presenting distinct physical and thermal stabilities as well as distinct relaxation properties, were systematically prepared using spray-drying (SD), quench-cooling (QC) and ball milling (BM) methods. HCT polyamorph II (obtained by QC) was found to be more physically stable than polyamorphs I and III (obtained by SD and BM, respectively). Furthermore, polyamorphs I and III could be converted into polyamorph II after QC, while polyamorph II did not convert to any other polyamorph after SD or BM. Molecular dynamics simulations show that HCT dihedral angle distributions are significantly different for polyamorphs I and II, which is postulated as a possible explanation for their different physicochemical properties. The Royal Society of Chemistry 2023-09-28 /pmc/articles/PMC10599472/ /pubmed/37886102 http://dx.doi.org/10.1039/d3sc02802j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Martins, Inês C. B.
Larsen, Anders S.
Madsen, Anders Ø.
Frederiksen, Olivia Aalling
Correia, Alexandra
Jensen, Kirsten M. Ø.
Jeppesen, Henrik S.
Rades, Thomas
Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide
title Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide
title_full Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide
title_fullStr Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide
title_full_unstemmed Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide
title_short Unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide
title_sort unveiling polyamorphism and polyamorphic interconversions in pharmaceuticals: the peculiar case of hydrochlorothiazide
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10599472/
https://www.ncbi.nlm.nih.gov/pubmed/37886102
http://dx.doi.org/10.1039/d3sc02802j
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