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Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs

The exploitation of self-assembled systems to improve the solubility of drugs is getting more and more attention. Among the different types of self-assembled biomaterials, peptides and in particular peptides containing non-coded amino acids (NCAPs) are promising because their use opens the door to m...

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Autores principales: Locarno, Silvia, Argentiere, Simona, Ruffoni, Alessandro, Maggioni, Daniela, Soave, Raffaella, Bucci, Raffaella, Erba, Emanuela, Lenardi, Cristina, Gelmi, Maria Luisa, Clerici, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9050355/
https://www.ncbi.nlm.nih.gov/pubmed/35498617
http://dx.doi.org/10.1039/c9ra10981a
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author Locarno, Silvia
Argentiere, Simona
Ruffoni, Alessandro
Maggioni, Daniela
Soave, Raffaella
Bucci, Raffaella
Erba, Emanuela
Lenardi, Cristina
Gelmi, Maria Luisa
Clerici, Francesca
author_facet Locarno, Silvia
Argentiere, Simona
Ruffoni, Alessandro
Maggioni, Daniela
Soave, Raffaella
Bucci, Raffaella
Erba, Emanuela
Lenardi, Cristina
Gelmi, Maria Luisa
Clerici, Francesca
author_sort Locarno, Silvia
collection PubMed
description The exploitation of self-assembled systems to improve the solubility of drugs is getting more and more attention. Among the different types of self-assembled biomaterials, peptides and in particular peptides containing non-coded amino acids (NCAPs) are promising because their use opens the door to more stable materials inducing increased stability to proteolysis. New classes of NCAP, Ac-Ala-X-Ala-Aib-AlaCONH(2) (X = alpha-aminoisobutyric acid (Aib) or X = cyclopentane amino acid (Ac5c)) have been prepared and the correlation between the different secondary peptide structure and solvent (i.e. CD(3)CN, CD(3)OH, H(2)O/D(2)O) verified by NMR. Furthermore, the formation of a nanocolloidal system in water was deeply studied by DLS and the morphology of the obtained spherical aggregates with nanometric dimensions was assessed by TEM. Aib containing pentapeptide was selected for greater ease of synthesis. Its ability to encapsulate curcumin, as a model insoluble drug molecule, was investigated using fluorescence emission and confocal microscopy analyses. Two different approaches were used to study the interaction between curcumin and peptide aggregates. In the first approach peptide aggregates were formed in the presence of curcumin, while in the second approach curcumin was added to the already formed peptide aggregates. We succeeded in our challenge by using the second approach and 53.8% of added curcumin had been encapsulated.
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spelling pubmed-90503552022-04-29 Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs Locarno, Silvia Argentiere, Simona Ruffoni, Alessandro Maggioni, Daniela Soave, Raffaella Bucci, Raffaella Erba, Emanuela Lenardi, Cristina Gelmi, Maria Luisa Clerici, Francesca RSC Adv Chemistry The exploitation of self-assembled systems to improve the solubility of drugs is getting more and more attention. Among the different types of self-assembled biomaterials, peptides and in particular peptides containing non-coded amino acids (NCAPs) are promising because their use opens the door to more stable materials inducing increased stability to proteolysis. New classes of NCAP, Ac-Ala-X-Ala-Aib-AlaCONH(2) (X = alpha-aminoisobutyric acid (Aib) or X = cyclopentane amino acid (Ac5c)) have been prepared and the correlation between the different secondary peptide structure and solvent (i.e. CD(3)CN, CD(3)OH, H(2)O/D(2)O) verified by NMR. Furthermore, the formation of a nanocolloidal system in water was deeply studied by DLS and the morphology of the obtained spherical aggregates with nanometric dimensions was assessed by TEM. Aib containing pentapeptide was selected for greater ease of synthesis. Its ability to encapsulate curcumin, as a model insoluble drug molecule, was investigated using fluorescence emission and confocal microscopy analyses. Two different approaches were used to study the interaction between curcumin and peptide aggregates. In the first approach peptide aggregates were formed in the presence of curcumin, while in the second approach curcumin was added to the already formed peptide aggregates. We succeeded in our challenge by using the second approach and 53.8% of added curcumin had been encapsulated. The Royal Society of Chemistry 2020-03-09 /pmc/articles/PMC9050355/ /pubmed/35498617 http://dx.doi.org/10.1039/c9ra10981a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Locarno, Silvia
Argentiere, Simona
Ruffoni, Alessandro
Maggioni, Daniela
Soave, Raffaella
Bucci, Raffaella
Erba, Emanuela
Lenardi, Cristina
Gelmi, Maria Luisa
Clerici, Francesca
Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs
title Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs
title_full Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs
title_fullStr Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs
title_full_unstemmed Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs
title_short Self-assembled hydrophobic Ala-Aib peptide encapsulating curcumin: a convenient system for water insoluble drugs
title_sort self-assembled hydrophobic ala-aib peptide encapsulating curcumin: a convenient system for water insoluble drugs
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9050355/
https://www.ncbi.nlm.nih.gov/pubmed/35498617
http://dx.doi.org/10.1039/c9ra10981a
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