Cargando…

Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model

Obesity is associated with an increased incidence and aggressiveness of breast cancer and is estimated to increment the development of this tumor by 50 to 86%. These associations are driven, in part, by changes in the serum molecules. Epidemiological studies have reported that Metformin reduces the...

Descripción completa

Detalles Bibliográficos
Autores principales: Flores-García, Laura C., Ventura-Gallegos, José L., Romero-Córdoba, Sandra L., Hernández-Juárez, Alfredo J., Naranjo-Meneses, María A., García-García, Eduardo, Méndez, Juan Pablo, Cabrera-Quintero, Alberto J., Ramírez-Ruíz, Antonio, Pedraza-Sánchez, Sigifredo, Meraz-Cruz, Noemi, Vadillo-Ortega, Felipe, Zentella-Dehesa, Alejandro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9004774/
https://www.ncbi.nlm.nih.gov/pubmed/35413055
http://dx.doi.org/10.1371/journal.pone.0266073
_version_ 1784686330904576000
author Flores-García, Laura C.
Ventura-Gallegos, José L.
Romero-Córdoba, Sandra L.
Hernández-Juárez, Alfredo J.
Naranjo-Meneses, María A.
García-García, Eduardo
Méndez, Juan Pablo
Cabrera-Quintero, Alberto J.
Ramírez-Ruíz, Antonio
Pedraza-Sánchez, Sigifredo
Meraz-Cruz, Noemi
Vadillo-Ortega, Felipe
Zentella-Dehesa, Alejandro
author_facet Flores-García, Laura C.
Ventura-Gallegos, José L.
Romero-Córdoba, Sandra L.
Hernández-Juárez, Alfredo J.
Naranjo-Meneses, María A.
García-García, Eduardo
Méndez, Juan Pablo
Cabrera-Quintero, Alberto J.
Ramírez-Ruíz, Antonio
Pedraza-Sánchez, Sigifredo
Meraz-Cruz, Noemi
Vadillo-Ortega, Felipe
Zentella-Dehesa, Alejandro
author_sort Flores-García, Laura C.
collection PubMed
description Obesity is associated with an increased incidence and aggressiveness of breast cancer and is estimated to increment the development of this tumor by 50 to 86%. These associations are driven, in part, by changes in the serum molecules. Epidemiological studies have reported that Metformin reduces the incidence of obesity-associated cancer, probably by regulating the metabolic state. In this study, we evaluated in a breast cancer in-vitro model the activation of the IR-β/Akt/p70S6K pathway by exposure to human sera with different metabolic and hormonal characteristics. Furthermore, we evaluated the effect of brief Metformin treatment on sera of obese postmenopausal women and its impact on Akt and NF-κB activation. We demonstrated that MCF-7 cells represent a robust cellular model to differentiate Akt pathway activation influenced by the stimulation with sera from obese women, resulting in increased cell viability rates compared to cells stimulated with sera from normal-weight women. In particular, stimulation with sera from postmenopausal obese women showed an increase in the phosphorylation of IR-β and Akt proteins. These effects were reversed after exposure of MCF-7 cells to sera from postmenopausal obese women with insulin resistance with Metformin treatment. Whereas sera from women without insulin resistance affected NF-κB regulation. We further demonstrated that sera from post-Metformin obese women induced an increase in p38 phosphorylation, independent of insulin resistance. Our results suggest a possible mechanism in which obesity-mediated serum molecules could enhance the development of luminal A-breast cancer by increasing Akt activation. Further, we provided evidence that the phenomenon was reversed by Metformin treatment in a subgroup of women.
format Online
Article
Text
id pubmed-9004774
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-90047742022-04-13 Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model Flores-García, Laura C. Ventura-Gallegos, José L. Romero-Córdoba, Sandra L. Hernández-Juárez, Alfredo J. Naranjo-Meneses, María A. García-García, Eduardo Méndez, Juan Pablo Cabrera-Quintero, Alberto J. Ramírez-Ruíz, Antonio Pedraza-Sánchez, Sigifredo Meraz-Cruz, Noemi Vadillo-Ortega, Felipe Zentella-Dehesa, Alejandro PLoS One Research Article Obesity is associated with an increased incidence and aggressiveness of breast cancer and is estimated to increment the development of this tumor by 50 to 86%. These associations are driven, in part, by changes in the serum molecules. Epidemiological studies have reported that Metformin reduces the incidence of obesity-associated cancer, probably by regulating the metabolic state. In this study, we evaluated in a breast cancer in-vitro model the activation of the IR-β/Akt/p70S6K pathway by exposure to human sera with different metabolic and hormonal characteristics. Furthermore, we evaluated the effect of brief Metformin treatment on sera of obese postmenopausal women and its impact on Akt and NF-κB activation. We demonstrated that MCF-7 cells represent a robust cellular model to differentiate Akt pathway activation influenced by the stimulation with sera from obese women, resulting in increased cell viability rates compared to cells stimulated with sera from normal-weight women. In particular, stimulation with sera from postmenopausal obese women showed an increase in the phosphorylation of IR-β and Akt proteins. These effects were reversed after exposure of MCF-7 cells to sera from postmenopausal obese women with insulin resistance with Metformin treatment. Whereas sera from women without insulin resistance affected NF-κB regulation. We further demonstrated that sera from post-Metformin obese women induced an increase in p38 phosphorylation, independent of insulin resistance. Our results suggest a possible mechanism in which obesity-mediated serum molecules could enhance the development of luminal A-breast cancer by increasing Akt activation. Further, we provided evidence that the phenomenon was reversed by Metformin treatment in a subgroup of women. Public Library of Science 2022-04-12 /pmc/articles/PMC9004774/ /pubmed/35413055 http://dx.doi.org/10.1371/journal.pone.0266073 Text en © 2022 Flores-García et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Flores-García, Laura C.
Ventura-Gallegos, José L.
Romero-Córdoba, Sandra L.
Hernández-Juárez, Alfredo J.
Naranjo-Meneses, María A.
García-García, Eduardo
Méndez, Juan Pablo
Cabrera-Quintero, Alberto J.
Ramírez-Ruíz, Antonio
Pedraza-Sánchez, Sigifredo
Meraz-Cruz, Noemi
Vadillo-Ortega, Felipe
Zentella-Dehesa, Alejandro
Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model
title Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model
title_full Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model
title_fullStr Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model
title_full_unstemmed Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model
title_short Sera from women with different metabolic and menopause states differentially regulate cell viability and Akt activation in a breast cancer in-vitro model
title_sort sera from women with different metabolic and menopause states differentially regulate cell viability and akt activation in a breast cancer in-vitro model
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9004774/
https://www.ncbi.nlm.nih.gov/pubmed/35413055
http://dx.doi.org/10.1371/journal.pone.0266073
work_keys_str_mv AT floresgarcialaurac serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT venturagallegosjosel serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT romerocordobasandral serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT hernandezjuarezalfredoj serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT naranjomenesesmariaa serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT garciagarciaeduardo serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT mendezjuanpablo serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT cabreraquinteroalbertoj serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT ramirezruizantonio serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT pedrazasanchezsigifredo serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT merazcruznoemi serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT vadilloortegafelipe serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel
AT zentelladehesaalejandro serafromwomenwithdifferentmetabolicandmenopausestatesdifferentiallyregulatecellviabilityandaktactivationinabreastcancerinvitromodel