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H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair

The improvement of solubility and/or dissolution rate of poorly soluble natural compounds is an ideal strategy to make them optimal candidates as new potential drugs. Accordingly, the allyl sulfur compounds and omega-3 fatty acids are natural hydrophobic compounds that exhibit two important combined...

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Autores principales: Ciocci, Matteo, Iorio, Egidio, Carotenuto, Felicia, Khashoggi, Haneen A., Nanni, Francesca, Melino, Sonia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5356665/
https://www.ncbi.nlm.nih.gov/pubmed/27741519
http://dx.doi.org/10.18632/oncotarget.12609
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author Ciocci, Matteo
Iorio, Egidio
Carotenuto, Felicia
Khashoggi, Haneen A.
Nanni, Francesca
Melino, Sonia
author_facet Ciocci, Matteo
Iorio, Egidio
Carotenuto, Felicia
Khashoggi, Haneen A.
Nanni, Francesca
Melino, Sonia
author_sort Ciocci, Matteo
collection PubMed
description The improvement of solubility and/or dissolution rate of poorly soluble natural compounds is an ideal strategy to make them optimal candidates as new potential drugs. Accordingly, the allyl sulfur compounds and omega-3 fatty acids are natural hydrophobic compounds that exhibit two important combined properties: cardiovascular protection and antitumor activity. Here, we have synthesized and characterized a novel formulation of diallyl disulfide (DADS) and α-linolenic acid (ALA) as protein-nanoemulsions (BAD-NEs), using ultrasounds. BAD-NEs are stable over time at room temperature and show antioxidant and radical scavenging property. These NEs are also optimal H(2)S slow-release donors and show a significant anti-proliferative effect on different human cancer cell lines: MCF-7 breast cancer and HuT 78 T-cell lymphoma cells. BAD-NEs are able to regulate the ERK1/2 pathway, inducing apoptosis and cell cycle arrest at the G(0)/G(1) phase. We have also investigated their effect on cell proliferation of human adult stem/progenitor cells. Interestingly, BAD-NEs are able to improve the Lin(–) Sca1(+) human cardiac progenitor cells (hCPC) proliferation. This stem cell growth stimulation is combined with the expression and activation of proteins involved in tissue-repair, such as P-AKT, α-sma and connexin 43. Altogether, our results suggest that these antioxidant nanoemulsions might have potential application in selective cancer therapy and for promoting the muscle tissue repair.
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spelling pubmed-53566652017-04-26 H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair Ciocci, Matteo Iorio, Egidio Carotenuto, Felicia Khashoggi, Haneen A. Nanni, Francesca Melino, Sonia Oncotarget Research Paper The improvement of solubility and/or dissolution rate of poorly soluble natural compounds is an ideal strategy to make them optimal candidates as new potential drugs. Accordingly, the allyl sulfur compounds and omega-3 fatty acids are natural hydrophobic compounds that exhibit two important combined properties: cardiovascular protection and antitumor activity. Here, we have synthesized and characterized a novel formulation of diallyl disulfide (DADS) and α-linolenic acid (ALA) as protein-nanoemulsions (BAD-NEs), using ultrasounds. BAD-NEs are stable over time at room temperature and show antioxidant and radical scavenging property. These NEs are also optimal H(2)S slow-release donors and show a significant anti-proliferative effect on different human cancer cell lines: MCF-7 breast cancer and HuT 78 T-cell lymphoma cells. BAD-NEs are able to regulate the ERK1/2 pathway, inducing apoptosis and cell cycle arrest at the G(0)/G(1) phase. We have also investigated their effect on cell proliferation of human adult stem/progenitor cells. Interestingly, BAD-NEs are able to improve the Lin(–) Sca1(+) human cardiac progenitor cells (hCPC) proliferation. This stem cell growth stimulation is combined with the expression and activation of proteins involved in tissue-repair, such as P-AKT, α-sma and connexin 43. Altogether, our results suggest that these antioxidant nanoemulsions might have potential application in selective cancer therapy and for promoting the muscle tissue repair. Impact Journals LLC 2016-10-12 /pmc/articles/PMC5356665/ /pubmed/27741519 http://dx.doi.org/10.18632/oncotarget.12609 Text en Copyright: © 2016 Ciocci et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Ciocci, Matteo
Iorio, Egidio
Carotenuto, Felicia
Khashoggi, Haneen A.
Nanni, Francesca
Melino, Sonia
H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair
title H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair
title_full H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair
title_fullStr H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair
title_full_unstemmed H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair
title_short H(2)S-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair
title_sort h(2)s-releasing nanoemulsions: a new formulation to inhibit tumor cells proliferation and improve tissue repair
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5356665/
https://www.ncbi.nlm.nih.gov/pubmed/27741519
http://dx.doi.org/10.18632/oncotarget.12609
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