Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach

Amorphous solid dispersions (ASDs) of lumefantrine, which has low aqueous solubility, have been shown to improve bioavailability relative to crystalline formulations. Herein, the crystallization tendency and release properties of a variety of lumefantrine ASD granules, formed on a blend of microcrys...

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Main Authors: Niraj S. Trasi, Sonal V. Bhujbal, Dmitry Y. Zemlyanov, Qi (Tony) Zhou, Lynne S. Taylor
Format: Article
Language:English
Published: Elsevier 2020-12-01
Series:International Journal of Pharmaceutics: X
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590156720300141
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spelling doaj-92f7ad4eeab44655b464207f3a51a8c32020-12-19T05:11:01ZengElsevierInternational Journal of Pharmaceutics: X2590-15672020-12-012100052Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approachNiraj S. Trasi0Sonal V. Bhujbal1Dmitry Y. Zemlyanov2Qi (Tony) Zhou3Lynne S. Taylor4Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907, USADepartment of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907, USABirck Nanotechnology Center, Purdue University, West Lafayette, Indiana 47907, USADepartment of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907, USADepartment of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907, USA; Corresponding author at: Department of Industrial and Physical Pharmacy, Purdue University, 575 Stadium Mall Drive, West Lafayette, Indiana 47907, USA.Amorphous solid dispersions (ASDs) of lumefantrine, which has low aqueous solubility, have been shown to improve bioavailability relative to crystalline formulations. Herein, the crystallization tendency and release properties of a variety of lumefantrine ASD granules, formed on a blend of microcrystalline cellulose and anhydrous lactose, prepared using a simple solvent evaporation method, were evaluated. Several polymers, a majority of which contained acidic moieties, and different drug loadings were assessed. Crystallinity as a function of time following exposure to stress storage conditions of 40 °C and 75% relative humidity was monitored for the various dispersions. Release testing was performed and ASD characteristics were further evaluated using infrared and X-ray photoelectron spectroscopy (XPS). A large difference in stability to crystallization was observed between the various ASDs, most notably depending on polymer chemistry. This could be largely rationalized based on the extent of drug-polymer interactions, specifically the degree of lumefantrine-polymer salt formation, which could be readily assessed with XPS spectroscopy. Lumefantrine release from the ASDs also varied considerably, whereby the best polymer for promoting physical stability did not lead to the highest extent of drug release. Several formulations led to concentrations above the amorphous solubility of lumefantrine, with the formation of nano-sized drug-rich aggregates. A balance between the ability of a given polymer to promote physical stability and drug release may need to be sought.http://www.sciencedirect.com/science/article/pii/S2590156720300141LumefantrineAmorphous solid dispersionsSalt formationPhysical stabilityRelease
collection DOAJ
language English
format Article
sources DOAJ
author Niraj S. Trasi
Sonal V. Bhujbal
Dmitry Y. Zemlyanov
Qi (Tony) Zhou
Lynne S. Taylor
spellingShingle Niraj S. Trasi
Sonal V. Bhujbal
Dmitry Y. Zemlyanov
Qi (Tony) Zhou
Lynne S. Taylor
Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach
International Journal of Pharmaceutics: X
Lumefantrine
Amorphous solid dispersions
Salt formation
Physical stability
Release
author_facet Niraj S. Trasi
Sonal V. Bhujbal
Dmitry Y. Zemlyanov
Qi (Tony) Zhou
Lynne S. Taylor
author_sort Niraj S. Trasi
title Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach
title_short Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach
title_full Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach
title_fullStr Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach
title_full_unstemmed Physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach
title_sort physical stability and release properties of lumefantrine amorphous solid dispersion granules prepared by a simple solvent evaporation approach
publisher Elsevier
series International Journal of Pharmaceutics: X
issn 2590-1567
publishDate 2020-12-01
description Amorphous solid dispersions (ASDs) of lumefantrine, which has low aqueous solubility, have been shown to improve bioavailability relative to crystalline formulations. Herein, the crystallization tendency and release properties of a variety of lumefantrine ASD granules, formed on a blend of microcrystalline cellulose and anhydrous lactose, prepared using a simple solvent evaporation method, were evaluated. Several polymers, a majority of which contained acidic moieties, and different drug loadings were assessed. Crystallinity as a function of time following exposure to stress storage conditions of 40 °C and 75% relative humidity was monitored for the various dispersions. Release testing was performed and ASD characteristics were further evaluated using infrared and X-ray photoelectron spectroscopy (XPS). A large difference in stability to crystallization was observed between the various ASDs, most notably depending on polymer chemistry. This could be largely rationalized based on the extent of drug-polymer interactions, specifically the degree of lumefantrine-polymer salt formation, which could be readily assessed with XPS spectroscopy. Lumefantrine release from the ASDs also varied considerably, whereby the best polymer for promoting physical stability did not lead to the highest extent of drug release. Several formulations led to concentrations above the amorphous solubility of lumefantrine, with the formation of nano-sized drug-rich aggregates. A balance between the ability of a given polymer to promote physical stability and drug release may need to be sought.
topic Lumefantrine
Amorphous solid dispersions
Salt formation
Physical stability
Release
url http://www.sciencedirect.com/science/article/pii/S2590156720300141
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