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Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches

The beneficial effects of coffee on human diseases are well documented, but the molecular mechanisms of its bioactive compounds on cancer are not completely elucidated. This is likely due to the large heterogeneity of coffee preparations and different coffee-based beverages, but also to the choice o...

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Autores principales: Tabolacci, Claudio, Cordella, Martina, Rossi, Stefania, Bonaccio, Marialaura, Eramo, Adriana, Mischiati, Carlo, Beninati, Simone, Iacoviello, Licia, Facchiano, Antonio, Facchiano, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8231844/
https://www.ncbi.nlm.nih.gov/pubmed/34199192
http://dx.doi.org/10.3390/molecules26123619
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author Tabolacci, Claudio
Cordella, Martina
Rossi, Stefania
Bonaccio, Marialaura
Eramo, Adriana
Mischiati, Carlo
Beninati, Simone
Iacoviello, Licia
Facchiano, Antonio
Facchiano, Francesco
author_facet Tabolacci, Claudio
Cordella, Martina
Rossi, Stefania
Bonaccio, Marialaura
Eramo, Adriana
Mischiati, Carlo
Beninati, Simone
Iacoviello, Licia
Facchiano, Antonio
Facchiano, Francesco
author_sort Tabolacci, Claudio
collection PubMed
description The beneficial effects of coffee on human diseases are well documented, but the molecular mechanisms of its bioactive compounds on cancer are not completely elucidated. This is likely due to the large heterogeneity of coffee preparations and different coffee-based beverages, but also to the choice of experimental models where proliferation, differentiation and immune responses are differently affected. The aim of the present study was to investigate the effects of one of the most interesting bioactive compounds in coffee, i.e., caffeine, using a cellular model of melanoma at a defined differentiation level. A preliminary in silico analysis carried out on public gene-expression databases identified genes potentially involved in caffeine’s effects and suggested some specific molecular targets, including tyrosinase. Proliferation was investigated in vitro on human melanoma initiating cells (MICs) and cytokine expression was measured in conditioned media. Tyrosinase was revealed as a key player in caffeine’s mechanisms of action, suggesting a crucial role in immunomodulation through the reduction in IL-1β, IP-10, MIP-1α, MIP-1β and RANTES secretion onto MICs conditioned media. The potent antiproliferative effects of caffeine on MICs are likely to occur by promoting melanin production and reducing inflammatory signals’ secretion. These data suggest tyrosinase as a key player mediating the effects of caffeine on melanoma.
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spelling pubmed-82318442021-06-26 Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches Tabolacci, Claudio Cordella, Martina Rossi, Stefania Bonaccio, Marialaura Eramo, Adriana Mischiati, Carlo Beninati, Simone Iacoviello, Licia Facchiano, Antonio Facchiano, Francesco Molecules Article The beneficial effects of coffee on human diseases are well documented, but the molecular mechanisms of its bioactive compounds on cancer are not completely elucidated. This is likely due to the large heterogeneity of coffee preparations and different coffee-based beverages, but also to the choice of experimental models where proliferation, differentiation and immune responses are differently affected. The aim of the present study was to investigate the effects of one of the most interesting bioactive compounds in coffee, i.e., caffeine, using a cellular model of melanoma at a defined differentiation level. A preliminary in silico analysis carried out on public gene-expression databases identified genes potentially involved in caffeine’s effects and suggested some specific molecular targets, including tyrosinase. Proliferation was investigated in vitro on human melanoma initiating cells (MICs) and cytokine expression was measured in conditioned media. Tyrosinase was revealed as a key player in caffeine’s mechanisms of action, suggesting a crucial role in immunomodulation through the reduction in IL-1β, IP-10, MIP-1α, MIP-1β and RANTES secretion onto MICs conditioned media. The potent antiproliferative effects of caffeine on MICs are likely to occur by promoting melanin production and reducing inflammatory signals’ secretion. These data suggest tyrosinase as a key player mediating the effects of caffeine on melanoma. MDPI 2021-06-13 /pmc/articles/PMC8231844/ /pubmed/34199192 http://dx.doi.org/10.3390/molecules26123619 Text en © 2021 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
Tabolacci, Claudio
Cordella, Martina
Rossi, Stefania
Bonaccio, Marialaura
Eramo, Adriana
Mischiati, Carlo
Beninati, Simone
Iacoviello, Licia
Facchiano, Antonio
Facchiano, Francesco
Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches
title Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches
title_full Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches
title_fullStr Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches
title_full_unstemmed Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches
title_short Targeting Melanoma-Initiating Cells by Caffeine: In Silico and In Vitro Approaches
title_sort targeting melanoma-initiating cells by caffeine: in silico and in vitro approaches
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8231844/
https://www.ncbi.nlm.nih.gov/pubmed/34199192
http://dx.doi.org/10.3390/molecules26123619
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