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Evaluation and Prediction of the physical stability of amorphous drugs

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Resumo:The formulation of amorphous solids dispersion (ASDs) is a vanguard strategy used for the improvement of aqueous solubility and bioavailability of poorly water-soluble drugs. During formulation development it is very important to evaluate and predict long term physical stability of ASDs, particularly in supersaturated systems, since these forms are thermodynamically unstable. This project focuses not only on the evaluation of different thermodynamic and kinetics parameters that govern physical stability, but also on the development of a model that can effectively predict long term stability. Six amorphous drugs and three amorphous solid dispersions were studied and parameters such as glass transition, fragility, relaxation and Kauzmann temperature were evaluated. A stability study was also conducted at 30 ºC to investigate potential correlations between the parameters and the onset of crystallization, which was monitored by X-ray Powder Diffraction (XRPD). Differential Scanning Calorimetry (DSC) and Dielectric Spectroscopy (DRS) were also used to determine all parameters abovementioned. The study revealed that glass transition is not indicative of the physical stability of ASDs and, simultaneously, that the fragility index is not enough to rank the physical stability of amorphous drugs. Furthermore, a predictive model, that combines thermodynamic parameters with the kinetics of relaxation, was developed and showed to be a good indicator of physical stability. This approach was successfully employed allowing not only an early-stage assessment of physical stability, during the pre-formulation stage, but also an advanced analytical characterization.
Autores principais:Veiga, Cíntia Leonora Semedo
Assunto:Amorphous solid dispersion physical stability Kauzmann temperature relaxation crystallization glass transition temperature
Ano:2019
País:Portugal
Tipo de documento:dissertação de mestrado
Tipo de acesso:acesso aberto
Instituição associada:Universidade Nova de Lisboa
Idioma:inglês
Origem:Repositório Institucional da UNL
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author Veiga, Cíntia Leonora Semedo
author_facet Veiga, Cíntia Leonora Semedo
Veiga, Cíntia Leonora Semedo
author_role author
contributor_name_str_mv Sousa, Luís
RUN
country_str PT
creators_json_str [{\"Person.name\":\"Veiga, Cíntia Leonora Semedo\"}]
datacite.contributors.contributor.contributorName.fl_str_mv Sousa, Luís
RUN
datacite.creators.creator.creatorName.fl_str_mv Veiga, Cíntia Leonora Semedo
datacite.date.Accepted.fl_str_mv 2019-11-07T00:00:00Z
datacite.date.available.fl_str_mv 2022-10-01T00:30:47Z
datacite.date.embargoed.fl_str_mv 2022-10-01T00:30:47Z
datacite.rights.fl_str_mv http://purl.org/coar/access_right/c_abf2
datacite.subjects.subject.fl_str_mv Amorphous solid dispersion
physical stability
Kauzmann temperature
relaxation
crystallization
glass transition temperature
datacite.titles.title.fl_str_mv Evaluation and Prediction of the physical stability of amorphous drugs
dc.contributor.none.fl_str_mv Sousa, Luís
RUN
dc.creator.none.fl_str_mv Veiga, Cíntia Leonora Semedo
dc.date.Accepted.fl_str_mv 2019-11-07T00:00:00Z
dc.date.available.fl_str_mv 2022-10-01T00:30:47Z
dc.date.embargoed.fl_str_mv 2022-10-01T00:30:47Z
dc.format.none.fl_str_mv application/pdf
dc.identifier.none.fl_str_mv http://hdl.handle.net/10362/89611
dc.language.none.fl_str_mv eng
dc.rights.none.fl_str_mv http://purl.org/coar/access_right/c_abf2
dc.subject.none.fl_str_mv Amorphous solid dispersion
physical stability
Kauzmann temperature
relaxation
crystallization
glass transition temperature
dc.title.fl_str_mv Evaluation and Prediction of the physical stability of amorphous drugs
dc.type.none.fl_str_mv http://purl.org/coar/resource_type/c_bdcc
description The formulation of amorphous solids dispersion (ASDs) is a vanguard strategy used for the improvement of aqueous solubility and bioavailability of poorly water-soluble drugs. During formulation development it is very important to evaluate and predict long term physical stability of ASDs, particularly in supersaturated systems, since these forms are thermodynamically unstable. This project focuses not only on the evaluation of different thermodynamic and kinetics parameters that govern physical stability, but also on the development of a model that can effectively predict long term stability. Six amorphous drugs and three amorphous solid dispersions were studied and parameters such as glass transition, fragility, relaxation and Kauzmann temperature were evaluated. A stability study was also conducted at 30 ºC to investigate potential correlations between the parameters and the onset of crystallization, which was monitored by X-ray Powder Diffraction (XRPD). Differential Scanning Calorimetry (DSC) and Dielectric Spectroscopy (DRS) were also used to determine all parameters abovementioned. The study revealed that glass transition is not indicative of the physical stability of ASDs and, simultaneously, that the fragility index is not enough to rank the physical stability of amorphous drugs. Furthermore, a predictive model, that combines thermodynamic parameters with the kinetics of relaxation, was developed and showed to be a good indicator of physical stability. This approach was successfully employed allowing not only an early-stage assessment of physical stability, during the pre-formulation stage, but also an advanced analytical characterization.
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instname_str Universidade Nova de Lisboa
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person_str_mv Veiga, Cíntia Leonora Semedo
publishDate 2019
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spelling engpt_PTThe formulation of amorphous solids dispersion (ASDs) is a vanguard strategy used for the improvement of aqueous solubility and bioavailability of poorly water-soluble drugs. During formulation development it is very important to evaluate and predict long term physical stability of ASDs, particularly in supersaturated systems, since these forms are thermodynamically unstable. This project focuses not only on the evaluation of different thermodynamic and kinetics parameters that govern physical stability, but also on the development of a model that can effectively predict long term stability. Six amorphous drugs and three amorphous solid dispersions were studied and parameters such as glass transition, fragility, relaxation and Kauzmann temperature were evaluated. A stability study was also conducted at 30 ºC to investigate potential correlations between the parameters and the onset of crystallization, which was monitored by X-ray Powder Diffraction (XRPD). Differential Scanning Calorimetry (DSC) and Dielectric Spectroscopy (DRS) were also used to determine all parameters abovementioned. The study revealed that glass transition is not indicative of the physical stability of ASDs and, simultaneously, that the fragility index is not enough to rank the physical stability of amorphous drugs. Furthermore, a predictive model, that combines thermodynamic parameters with the kinetics of relaxation, was developed and showed to be a good indicator of physical stability. This approach was successfully employed allowing not only an early-stage assessment of physical stability, during the pre-formulation stage, but also an advanced analytical characterization.application/pdfpt_PTEvaluation and Prediction of the physical stability of amorphous drugsVeiga, Cíntia Leonora SemedoSousa, LuísHostingInstitutionOrganizationalRUNe-mailmailto:run@unl.ptrun@unl.pt2022-10-01T00:30:47Z2019-11-0720192019-11-07T00:00:00ZHandlehttp://hdl.handle.net/10362/89611http://purl.org/coar/access_right/c_abf2open accessAmorphous solid dispersionphysical stabilityKauzmann temperaturerelaxationcrystallizationglass transition temperature41661636 bytesliteraturehttp://purl.org/coar/resource_type/c_bdccmaster thesishttp://purl.org/coar/access_right/c_abf2application/pdffulltexthttps://run.unl.pt/bitstreams/2df0a21e-933a-412c-b894-2beb4d688a83/download
spellingShingle Evaluation and Prediction of the physical stability of amorphous drugs
Evaluation and Prediction of the physical stability of amorphous drugs
Veiga, Cíntia Leonora Semedo
Amorphous solid dispersion
physical stability
Kauzmann temperature
relaxation
crystallization
glass transition temperature
Veiga, Cíntia Leonora Semedo
Amorphous solid dispersion
physical stability
Kauzmann temperature
relaxation
crystallization
glass transition temperature
status NEW
subject.fl_str_mv Amorphous solid dispersion
physical stability
Kauzmann temperature
relaxation
crystallization
glass transition temperature
title Evaluation and Prediction of the physical stability of amorphous drugs
title_full Evaluation and Prediction of the physical stability of amorphous drugs
title_fullStr Evaluation and Prediction of the physical stability of amorphous drugs
Evaluation and Prediction of the physical stability of amorphous drugs
title_full_unstemmed Evaluation and Prediction of the physical stability of amorphous drugs
Evaluation and Prediction of the physical stability of amorphous drugs
title_short Evaluation and Prediction of the physical stability of amorphous drugs
title_sort Evaluation and Prediction of the physical stability of amorphous drugs
topic Amorphous solid dispersion
physical stability
Kauzmann temperature
relaxation
crystallization
glass transition temperature
topic_facet Amorphous solid dispersion
physical stability
Kauzmann temperature
relaxation
crystallization
glass transition temperature
url http://hdl.handle.net/10362/89611
visible 1