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Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes

New carriers of phytosterols; acylglycerols containing natural myristic acid at sn-1 and sn-3 positions and stigmasterol residue linked to sn-2 position by carbonate and succinate linker have been designed and synthesized in three-step synthesis from dihydroxyacetone (DHA). The synthetic pathway inv...

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Autores principales: Gładkowski, Witold, Włoch, Aleksandra, Pruchnik, Hanna, Chojnacka, Anna, Grudniewska, Aleksandra, Wysota, Agnieszka, Dunal, Anna, Rubiano Castro, Daniel, Rudzińska, Magdalena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182174/
https://www.ncbi.nlm.nih.gov/pubmed/35684341
http://dx.doi.org/10.3390/molecules27113406
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author Gładkowski, Witold
Włoch, Aleksandra
Pruchnik, Hanna
Chojnacka, Anna
Grudniewska, Aleksandra
Wysota, Agnieszka
Dunal, Anna
Rubiano Castro, Daniel
Rudzińska, Magdalena
author_facet Gładkowski, Witold
Włoch, Aleksandra
Pruchnik, Hanna
Chojnacka, Anna
Grudniewska, Aleksandra
Wysota, Agnieszka
Dunal, Anna
Rubiano Castro, Daniel
Rudzińska, Magdalena
author_sort Gładkowski, Witold
collection PubMed
description New carriers of phytosterols; acylglycerols containing natural myristic acid at sn-1 and sn-3 positions and stigmasterol residue linked to sn-2 position by carbonate and succinate linker have been designed and synthesized in three-step synthesis from dihydroxyacetone (DHA). The synthetic pathway involved Steglich esterification of DHA with myristic acid; reduction of carbonyl group of 1,3-dimyristoylpropanone and esterification of 1,3-dimyristoylglicerol with stigmasterol chloroformate or stigmasterol hemisuccinate. The structure of the obtained hybrids was established by the spectroscopic methods (NMR; IR; HRMS). Obtained hybrid molecules were used to form new liposomes in the mixture with model phospholipid and their effect on their physicochemical properties was determined, including the polarity, fluidity, and main phase transition of liposomes using differential scanning calorimetry and fluorimetric methods. The results confirm the significant effect of both stigmasterol-containing acylglycerols on the hydrophilic and hydrophobic region of liposome membranes. They significantly increase the order in the polar heads of the lipid bilayer and increase the rigidity in the hydrophobic region. Moreover, the presence of both acylglycerols in the membranes shifts the temperature of the main phase transition towards higher temperatures. Our results indicate stabilization of the bilayer over a wide temperature range (above and below the phase transition temperature), which in addition to the beneficial effects of phytosterols on human health makes them more attractive components of novel lipid nanocarriers compared to cholesterol.
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spelling pubmed-91821742022-06-10 Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes Gładkowski, Witold Włoch, Aleksandra Pruchnik, Hanna Chojnacka, Anna Grudniewska, Aleksandra Wysota, Agnieszka Dunal, Anna Rubiano Castro, Daniel Rudzińska, Magdalena Molecules Article New carriers of phytosterols; acylglycerols containing natural myristic acid at sn-1 and sn-3 positions and stigmasterol residue linked to sn-2 position by carbonate and succinate linker have been designed and synthesized in three-step synthesis from dihydroxyacetone (DHA). The synthetic pathway involved Steglich esterification of DHA with myristic acid; reduction of carbonyl group of 1,3-dimyristoylpropanone and esterification of 1,3-dimyristoylglicerol with stigmasterol chloroformate or stigmasterol hemisuccinate. The structure of the obtained hybrids was established by the spectroscopic methods (NMR; IR; HRMS). Obtained hybrid molecules were used to form new liposomes in the mixture with model phospholipid and their effect on their physicochemical properties was determined, including the polarity, fluidity, and main phase transition of liposomes using differential scanning calorimetry and fluorimetric methods. The results confirm the significant effect of both stigmasterol-containing acylglycerols on the hydrophilic and hydrophobic region of liposome membranes. They significantly increase the order in the polar heads of the lipid bilayer and increase the rigidity in the hydrophobic region. Moreover, the presence of both acylglycerols in the membranes shifts the temperature of the main phase transition towards higher temperatures. Our results indicate stabilization of the bilayer over a wide temperature range (above and below the phase transition temperature), which in addition to the beneficial effects of phytosterols on human health makes them more attractive components of novel lipid nanocarriers compared to cholesterol. MDPI 2022-05-25 /pmc/articles/PMC9182174/ /pubmed/35684341 http://dx.doi.org/10.3390/molecules27113406 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
Gładkowski, Witold
Włoch, Aleksandra
Pruchnik, Hanna
Chojnacka, Anna
Grudniewska, Aleksandra
Wysota, Agnieszka
Dunal, Anna
Rubiano Castro, Daniel
Rudzińska, Magdalena
Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes
title Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes
title_full Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes
title_fullStr Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes
title_full_unstemmed Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes
title_short Acylglycerols of Myristic Acid as New Candidates for Effective Stigmasterol Delivery—Design, Synthesis, and the Influence on Physicochemical Properties of Liposomes
title_sort acylglycerols of myristic acid as new candidates for effective stigmasterol delivery—design, synthesis, and the influence on physicochemical properties of liposomes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9182174/
https://www.ncbi.nlm.nih.gov/pubmed/35684341
http://dx.doi.org/10.3390/molecules27113406
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