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Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein

ABSTRACT: The self-assembling and gelation properties of a bioactive peptide derived from bovine casein (FFVAPFPEVFGK) were studied in the peptide's natural form (uncapped, uncapFFV) and capped with protecting groups added to both termini (capped, capFFV). Although the natural peptide (uncapFFV...

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Autores principales: Petit, Noémie, Dyer, Jolon M., Gerrard, Juliet A., Domigan, Laura J., Clerens, Stefan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10291039/
https://www.ncbi.nlm.nih.gov/pubmed/37378356
http://dx.doi.org/10.1016/j.bbadva.2023.100086
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author Petit, Noémie
Dyer, Jolon M.
Gerrard, Juliet A.
Domigan, Laura J.
Clerens, Stefan
author_facet Petit, Noémie
Dyer, Jolon M.
Gerrard, Juliet A.
Domigan, Laura J.
Clerens, Stefan
author_sort Petit, Noémie
collection PubMed
description ABSTRACT: The self-assembling and gelation properties of a bioactive peptide derived from bovine casein (FFVAPFPEVFGK) were studied in the peptide's natural form (uncapped, uncapFFV) and capped with protecting groups added to both termini (capped, capFFV). Although the natural peptide (uncapFFV) did not demonstrate self-assembly, the capped peptide (capFFV) spontaneously self-assembled and formed a self-supporting gel. Variations in peptide concentration and incubation time influenced the gel's mechanical properties, suggesting the peptide's properties could be tuned and exploited for different applications. These results suggest that food-derived bioactive peptides have good potential for self-assembly and therefore utilisation as gels in functional foods and nutraceuticals. BACKGROUND: Self-assembly is a natural phenomenon that occurs in many fundamental biological processes. Some peptides can self-assemble and form gels with tunable properties under given conditions. These properties, along with peptide bioactivity, can be combined to make unique biomaterials. Instead of synthesising the self-assembling bioactive peptides, we aim to extract them from natural sources. In order to use these peptides for different applications, it is essential to understand how we can trigger self-assembly and optimise the assembly conditions of these peptide gels. SCOPE: The self-assembling and gelation properties of a bioactive peptide derived from bovine casein (FFVAPFPEVFGK) were studied in the peptide's natural form (uncapped, uncapFFV) and capped with protecting groups added to both termini (capped, capFFV). MAJOR CONCLUSIONS: Although the natural peptide (uncapFFV) did not demonstrate self-assembly, the capped peptide (capFFV) spontaneously self-assembled and formed a self-supporting gel. Variations in peptide concentration and incubation time influenced the gel's mechanical properties, suggesting the peptide's properties could be tuned and exploited for different applications. GENERAL SIGNIFICANCE: These results suggest that food-derived bioactive peptides have good potential for self-assembly and therefore utilisation as gels in functional foods and nutraceuticals.
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spelling pubmed-102910392023-06-27 Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein Petit, Noémie Dyer, Jolon M. Gerrard, Juliet A. Domigan, Laura J. Clerens, Stefan BBA Adv Research Article ABSTRACT: The self-assembling and gelation properties of a bioactive peptide derived from bovine casein (FFVAPFPEVFGK) were studied in the peptide's natural form (uncapped, uncapFFV) and capped with protecting groups added to both termini (capped, capFFV). Although the natural peptide (uncapFFV) did not demonstrate self-assembly, the capped peptide (capFFV) spontaneously self-assembled and formed a self-supporting gel. Variations in peptide concentration and incubation time influenced the gel's mechanical properties, suggesting the peptide's properties could be tuned and exploited for different applications. These results suggest that food-derived bioactive peptides have good potential for self-assembly and therefore utilisation as gels in functional foods and nutraceuticals. BACKGROUND: Self-assembly is a natural phenomenon that occurs in many fundamental biological processes. Some peptides can self-assemble and form gels with tunable properties under given conditions. These properties, along with peptide bioactivity, can be combined to make unique biomaterials. Instead of synthesising the self-assembling bioactive peptides, we aim to extract them from natural sources. In order to use these peptides for different applications, it is essential to understand how we can trigger self-assembly and optimise the assembly conditions of these peptide gels. SCOPE: The self-assembling and gelation properties of a bioactive peptide derived from bovine casein (FFVAPFPEVFGK) were studied in the peptide's natural form (uncapped, uncapFFV) and capped with protecting groups added to both termini (capped, capFFV). MAJOR CONCLUSIONS: Although the natural peptide (uncapFFV) did not demonstrate self-assembly, the capped peptide (capFFV) spontaneously self-assembled and formed a self-supporting gel. Variations in peptide concentration and incubation time influenced the gel's mechanical properties, suggesting the peptide's properties could be tuned and exploited for different applications. GENERAL SIGNIFICANCE: These results suggest that food-derived bioactive peptides have good potential for self-assembly and therefore utilisation as gels in functional foods and nutraceuticals. Elsevier 2023-03-17 /pmc/articles/PMC10291039/ /pubmed/37378356 http://dx.doi.org/10.1016/j.bbadva.2023.100086 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Petit, Noémie
Dyer, Jolon M.
Gerrard, Juliet A.
Domigan, Laura J.
Clerens, Stefan
Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein
title Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein
title_full Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein
title_fullStr Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein
title_full_unstemmed Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein
title_short Insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein
title_sort insight into the self-assembly and gel formation of a bioactive peptide derived from bovine casein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10291039/
https://www.ncbi.nlm.nih.gov/pubmed/37378356
http://dx.doi.org/10.1016/j.bbadva.2023.100086
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