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Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug

Breast cancer is one of the most diffuse cancers in the world and despite the availability of the different drugs employed against it, the need for new and particularly more specific molecules is ever growing. In this framework, natural products are increasingly assuming an important role as new ant...

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Autores principales: Stringaro, Annarita, Serra, Stefano, Gori, Alessandro, Calcabrini, Annarica, Colone, Marisa, Dupuis, Maria Luisa, Spadaro, Francesca, Cecchetti, Serena, Vitali, Alberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9320513/
https://www.ncbi.nlm.nih.gov/pubmed/35889487
http://dx.doi.org/10.3390/molecules27144615
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author Stringaro, Annarita
Serra, Stefano
Gori, Alessandro
Calcabrini, Annarica
Colone, Marisa
Dupuis, Maria Luisa
Spadaro, Francesca
Cecchetti, Serena
Vitali, Alberto
author_facet Stringaro, Annarita
Serra, Stefano
Gori, Alessandro
Calcabrini, Annarica
Colone, Marisa
Dupuis, Maria Luisa
Spadaro, Francesca
Cecchetti, Serena
Vitali, Alberto
author_sort Stringaro, Annarita
collection PubMed
description Breast cancer is one of the most diffuse cancers in the world and despite the availability of the different drugs employed against it, the need for new and particularly more specific molecules is ever growing. In this framework, natural products are increasingly assuming an important role as new anticancer drugs. Aloe-emodin (AE) is one of the best characterized molecules in this field. The functionalization of bioactive natural products with selected peptide sequences to enhance their bioavailability and specificity of action is a powerful and promising strategy. In this study, we analyzed the cell specificity, cell viability effects, intracellular distribution, and immune cell response of a new peptide conjugate of Aloe-emodin in SKBR3 and A549 cell lines by means of viability tests, flow cytometry, and confocal microscopy. The conjugate proved to be more effective at reducing cell viability than AE in both cell lines. Furthermore, the results showed that it was mainly internalized within the SKBR3 cells, showing a nuclear localization, while A459 cells displayed mainly a cytoplasmic distribution. A preserving effect of the conjugate on NKs’ cell function was also observed. The designed conjugate showed a promising specific activity towards HER2-expressing cells coupled with an enhanced water solubility and a higher cytotoxicity; thus, the resulting proof-of-concept molecule can be further improved as an anticancer compound.
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spelling pubmed-93205132022-07-27 Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug Stringaro, Annarita Serra, Stefano Gori, Alessandro Calcabrini, Annarica Colone, Marisa Dupuis, Maria Luisa Spadaro, Francesca Cecchetti, Serena Vitali, Alberto Molecules Article Breast cancer is one of the most diffuse cancers in the world and despite the availability of the different drugs employed against it, the need for new and particularly more specific molecules is ever growing. In this framework, natural products are increasingly assuming an important role as new anticancer drugs. Aloe-emodin (AE) is one of the best characterized molecules in this field. The functionalization of bioactive natural products with selected peptide sequences to enhance their bioavailability and specificity of action is a powerful and promising strategy. In this study, we analyzed the cell specificity, cell viability effects, intracellular distribution, and immune cell response of a new peptide conjugate of Aloe-emodin in SKBR3 and A549 cell lines by means of viability tests, flow cytometry, and confocal microscopy. The conjugate proved to be more effective at reducing cell viability than AE in both cell lines. Furthermore, the results showed that it was mainly internalized within the SKBR3 cells, showing a nuclear localization, while A459 cells displayed mainly a cytoplasmic distribution. A preserving effect of the conjugate on NKs’ cell function was also observed. The designed conjugate showed a promising specific activity towards HER2-expressing cells coupled with an enhanced water solubility and a higher cytotoxicity; thus, the resulting proof-of-concept molecule can be further improved as an anticancer compound. MDPI 2022-07-19 /pmc/articles/PMC9320513/ /pubmed/35889487 http://dx.doi.org/10.3390/molecules27144615 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
Stringaro, Annarita
Serra, Stefano
Gori, Alessandro
Calcabrini, Annarica
Colone, Marisa
Dupuis, Maria Luisa
Spadaro, Francesca
Cecchetti, Serena
Vitali, Alberto
Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug
title Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug
title_full Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug
title_fullStr Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug
title_full_unstemmed Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug
title_short Peptide-Mediated Targeted Delivery of Aloe-Emodin as Anticancer Drug
title_sort peptide-mediated targeted delivery of aloe-emodin as anticancer drug
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9320513/
https://www.ncbi.nlm.nih.gov/pubmed/35889487
http://dx.doi.org/10.3390/molecules27144615
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