Cargando…

An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars

The formation of pharmacobezoars from suspensions of spray-dried amorphous solid dispersions (SD-ASDs) of new chemical entities (NCEs) and hydroxypropyl methylcellulose acetate succinate (HPMC-AS) represents a non-compound related adverse effect in preclinical oral toxicity studies in rodents. Where...

Descripción completa

Detalles Bibliográficos
Autores principales: Gierke, Hannes, Schaefer, Kerstin, Gerlich, Lukas, Willmann, Ann-Cathrin, Bialetzki, Verena, Boeck, Georg, Pfrommer, Teresa, Nolte, Thomas, Weitschies, Werner
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785156/
https://www.ncbi.nlm.nih.gov/pubmed/36559103
http://dx.doi.org/10.3390/pharmaceutics14122608
_version_ 1784857980408168448
author Gierke, Hannes
Schaefer, Kerstin
Gerlich, Lukas
Willmann, Ann-Cathrin
Bialetzki, Verena
Boeck, Georg
Pfrommer, Teresa
Nolte, Thomas
Weitschies, Werner
author_facet Gierke, Hannes
Schaefer, Kerstin
Gerlich, Lukas
Willmann, Ann-Cathrin
Bialetzki, Verena
Boeck, Georg
Pfrommer, Teresa
Nolte, Thomas
Weitschies, Werner
author_sort Gierke, Hannes
collection PubMed
description The formation of pharmacobezoars from suspensions of spray-dried amorphous solid dispersions (SD-ASDs) of new chemical entities (NCEs) and hydroxypropyl methylcellulose acetate succinate (HPMC-AS) represents a non-compound related adverse effect in preclinical oral toxicity studies in rodents. Whereas the contribution of the insolubility of the carrier polymer to this process taking place in the acidic environment of the rodent stomach is conclusive, unawareness of the extent of in vivo pharmacobezoar formation is adverse. In order to evaluate the risk of pharmacobezoar formation before in vivo administration, we subsequently introduce an in vitro model to assess the agglomeration potential of solid dispersions. To verify that the pharmacobezoar formation potential can be assessed based on the observed agglomeration potential, we conducted a sequence of experiments with two HPMC-AS-based SD-ASD formulations. In vitro, we found their different in vivo pharmacobezoar formation potential reflected by a significantly increased agglomerated mass of formulation 1 per day compared to formulation 2. In order to find an approach to reduce the agglomeration potential of solid dispersion from suspensions, we further applied the model to investigate the impact of the viscosity of the vehicle used to prepare suspensions on agglomerate formation.
format Online
Article
Text
id pubmed-9785156
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97851562022-12-24 An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars Gierke, Hannes Schaefer, Kerstin Gerlich, Lukas Willmann, Ann-Cathrin Bialetzki, Verena Boeck, Georg Pfrommer, Teresa Nolte, Thomas Weitschies, Werner Pharmaceutics Article The formation of pharmacobezoars from suspensions of spray-dried amorphous solid dispersions (SD-ASDs) of new chemical entities (NCEs) and hydroxypropyl methylcellulose acetate succinate (HPMC-AS) represents a non-compound related adverse effect in preclinical oral toxicity studies in rodents. Whereas the contribution of the insolubility of the carrier polymer to this process taking place in the acidic environment of the rodent stomach is conclusive, unawareness of the extent of in vivo pharmacobezoar formation is adverse. In order to evaluate the risk of pharmacobezoar formation before in vivo administration, we subsequently introduce an in vitro model to assess the agglomeration potential of solid dispersions. To verify that the pharmacobezoar formation potential can be assessed based on the observed agglomeration potential, we conducted a sequence of experiments with two HPMC-AS-based SD-ASD formulations. In vitro, we found their different in vivo pharmacobezoar formation potential reflected by a significantly increased agglomerated mass of formulation 1 per day compared to formulation 2. In order to find an approach to reduce the agglomeration potential of solid dispersion from suspensions, we further applied the model to investigate the impact of the viscosity of the vehicle used to prepare suspensions on agglomerate formation. MDPI 2022-11-26 /pmc/articles/PMC9785156/ /pubmed/36559103 http://dx.doi.org/10.3390/pharmaceutics14122608 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gierke, Hannes
Schaefer, Kerstin
Gerlich, Lukas
Willmann, Ann-Cathrin
Bialetzki, Verena
Boeck, Georg
Pfrommer, Teresa
Nolte, Thomas
Weitschies, Werner
An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars
title An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars
title_full An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars
title_fullStr An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars
title_full_unstemmed An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars
title_short An In Vitro Model to Investigate the Potential of Solid Dispersions to Form Pharmacobezoars
title_sort in vitro model to investigate the potential of solid dispersions to form pharmacobezoars
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785156/
https://www.ncbi.nlm.nih.gov/pubmed/36559103
http://dx.doi.org/10.3390/pharmaceutics14122608
work_keys_str_mv AT gierkehannes aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT schaeferkerstin aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT gerlichlukas aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT willmannanncathrin aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT bialetzkiverena aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT boeckgeorg aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT pfrommerteresa aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT noltethomas aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT weitschieswerner aninvitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT gierkehannes invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT schaeferkerstin invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT gerlichlukas invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT willmannanncathrin invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT bialetzkiverena invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT boeckgeorg invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT pfrommerteresa invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT noltethomas invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars
AT weitschieswerner invitromodeltoinvestigatethepotentialofsoliddispersionstoformpharmacobezoars