Cargando…

Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds

Chenopodium quinoa Wild is a “pseudocereal” grain which attracts a lot of attention in the scientific community as it has a positive effect on health. Here, we investigate the presence of biologically active O-prenylated phenylpropanoids in the ethanol extract of commercially available quinoa seeds....

Descripción completa

Detalles Bibliográficos
Autores principales: Franceschelli, Sara, Gatta, Daniela Maria Pia, Pesce, Mirko, Ferrone, Alessio, Quiles, José Luis, Genovese, Salvatore, Epifano, Francesco, Fiorito, Serena, Taddeo, Vito Alessandro, Patruno, Antonia, Grilli, Alfredo, Felaco, Mario, Speranza, Lorenza
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6650945/
https://www.ncbi.nlm.nih.gov/pubmed/31269760
http://dx.doi.org/10.3390/ijms20133262
_version_ 1783438233773801472
author Franceschelli, Sara
Gatta, Daniela Maria Pia
Pesce, Mirko
Ferrone, Alessio
Quiles, José Luis
Genovese, Salvatore
Epifano, Francesco
Fiorito, Serena
Taddeo, Vito Alessandro
Patruno, Antonia
Grilli, Alfredo
Felaco, Mario
Speranza, Lorenza
author_facet Franceschelli, Sara
Gatta, Daniela Maria Pia
Pesce, Mirko
Ferrone, Alessio
Quiles, José Luis
Genovese, Salvatore
Epifano, Francesco
Fiorito, Serena
Taddeo, Vito Alessandro
Patruno, Antonia
Grilli, Alfredo
Felaco, Mario
Speranza, Lorenza
author_sort Franceschelli, Sara
collection PubMed
description Chenopodium quinoa Wild is a “pseudocereal” grain which attracts a lot of attention in the scientific community as it has a positive effect on health. Here, we investigate the presence of biologically active O-prenylated phenylpropanoids in the ethanol extract of commercially available quinoa seeds. We claim that 4′-Geranyloxyferulic acid (GOFA) was the only phytochemical product found that belongs to quinoa’s group secondary metabolites. We studied the changes in the oxidative and inflammatory status of the cellular environment in HCT 116 cell line processed with quinoa extract and its component GOFA; the implementation was done through the analysis of the antioxidant enzymes (SOD and CAT), the pro-inflammatory components (iNOS, IL-6 and TNF-α), and the products of intermediary metabolism (ONOO(−), O(2)(−)). Moreover, the l-arginine uptake was proposed as a target of the tested compounds. We demonstrated that the GOFA, through a decrease of the CAT-2B expression, leads to a reduction of the l-arginine uptake, downregulating the harmful iNOS and restoring the altered redox state. These results propose a new molecular target involved in the reduction of the critical inflammatory process responsible for the cancer progression.
format Online
Article
Text
id pubmed-6650945
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-66509452019-08-07 Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds Franceschelli, Sara Gatta, Daniela Maria Pia Pesce, Mirko Ferrone, Alessio Quiles, José Luis Genovese, Salvatore Epifano, Francesco Fiorito, Serena Taddeo, Vito Alessandro Patruno, Antonia Grilli, Alfredo Felaco, Mario Speranza, Lorenza Int J Mol Sci Article Chenopodium quinoa Wild is a “pseudocereal” grain which attracts a lot of attention in the scientific community as it has a positive effect on health. Here, we investigate the presence of biologically active O-prenylated phenylpropanoids in the ethanol extract of commercially available quinoa seeds. We claim that 4′-Geranyloxyferulic acid (GOFA) was the only phytochemical product found that belongs to quinoa’s group secondary metabolites. We studied the changes in the oxidative and inflammatory status of the cellular environment in HCT 116 cell line processed with quinoa extract and its component GOFA; the implementation was done through the analysis of the antioxidant enzymes (SOD and CAT), the pro-inflammatory components (iNOS, IL-6 and TNF-α), and the products of intermediary metabolism (ONOO(−), O(2)(−)). Moreover, the l-arginine uptake was proposed as a target of the tested compounds. We demonstrated that the GOFA, through a decrease of the CAT-2B expression, leads to a reduction of the l-arginine uptake, downregulating the harmful iNOS and restoring the altered redox state. These results propose a new molecular target involved in the reduction of the critical inflammatory process responsible for the cancer progression. MDPI 2019-07-02 /pmc/articles/PMC6650945/ /pubmed/31269760 http://dx.doi.org/10.3390/ijms20133262 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Franceschelli, Sara
Gatta, Daniela Maria Pia
Pesce, Mirko
Ferrone, Alessio
Quiles, José Luis
Genovese, Salvatore
Epifano, Francesco
Fiorito, Serena
Taddeo, Vito Alessandro
Patruno, Antonia
Grilli, Alfredo
Felaco, Mario
Speranza, Lorenza
Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds
title Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds
title_full Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds
title_fullStr Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds
title_full_unstemmed Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds
title_short Modulation of CAT-2B-Mediated l-Arginine Uptake and Nitric Oxide Biosynthesis in HCT116 Cell Line Through Biological Activity of 4′-Geranyloxyferulic Acid Extract from Quinoa Seeds
title_sort modulation of cat-2b-mediated l-arginine uptake and nitric oxide biosynthesis in hct116 cell line through biological activity of 4′-geranyloxyferulic acid extract from quinoa seeds
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6650945/
https://www.ncbi.nlm.nih.gov/pubmed/31269760
http://dx.doi.org/10.3390/ijms20133262
work_keys_str_mv AT franceschellisara modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT gattadanielamariapia modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT pescemirko modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT ferronealessio modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT quilesjoseluis modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT genovesesalvatore modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT epifanofrancesco modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT fioritoserena modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT taddeovitoalessandro modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT patrunoantonia modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT grillialfredo modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT felacomario modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds
AT speranzalorenza modulationofcat2bmediatedlarginineuptakeandnitricoxidebiosynthesisinhct116celllinethroughbiologicalactivityof4geranyloxyferulicacidextractfromquinoaseeds