Cargando…

KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages

Among the strategies adopted by glioma to successfully invade the brain parenchyma is turning the infiltrating microglia/macrophages (M/MΦ) into allies, by shifting them toward an anti-inflammatory, pro-tumor phenotype. Both glioma and infiltrating M/MΦ cells express the Ca(2+)-activated K(+) channe...

Descripción completa

Detalles Bibliográficos
Autores principales: Grimaldi, A, D'Alessandro, G, Golia, M T, Grössinger, E M, Di Angelantonio, S, Ragozzino, D, Santoro, A, Esposito, V, Wulff, H, Catalano, M, Limatola, C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4855657/
https://www.ncbi.nlm.nih.gov/pubmed/27054329
http://dx.doi.org/10.1038/cddis.2016.73
_version_ 1782430388700839936
author Grimaldi, A
D'Alessandro, G
Golia, M T
Grössinger, E M
Di Angelantonio, S
Ragozzino, D
Santoro, A
Esposito, V
Wulff, H
Catalano, M
Limatola, C
author_facet Grimaldi, A
D'Alessandro, G
Golia, M T
Grössinger, E M
Di Angelantonio, S
Ragozzino, D
Santoro, A
Esposito, V
Wulff, H
Catalano, M
Limatola, C
author_sort Grimaldi, A
collection PubMed
description Among the strategies adopted by glioma to successfully invade the brain parenchyma is turning the infiltrating microglia/macrophages (M/MΦ) into allies, by shifting them toward an anti-inflammatory, pro-tumor phenotype. Both glioma and infiltrating M/MΦ cells express the Ca(2+)-activated K(+) channel (KCa3.1), and the inhibition of KCa3.1 activity on glioma cells reduces tumor infiltration in the healthy brain parenchyma. We wondered whether KCa3.1 inhibition could prevent the acquisition of a pro-tumor phenotype by M/MΦ cells, thus contributing to reduce glioma development. With this aim, we studied microglia cultured in glioma-conditioned medium or treated with IL-4, as well as M/MΦ cells acutely isolated from glioma-bearing mice and from human glioma biopsies. Under these different conditions, M/MΦ were always polarized toward an anti-inflammatory state, and preventing KCa3.1 activation by 1-[(2-Chlorophenyl)diphenylmethyl]-1H-pyrazole (TRAM-34), we observed a switch toward a pro-inflammatory, antitumor phenotype. We identified FAK and PI3K/AKT as the molecular mechanisms involved in this phenotype switch, activated in sequence after KCa3.1. Anti-inflammatory M/MΦ have higher expression levels of KCa3.1 mRNA (kcnn4) that are reduced by KCa3.1 inhibition. In line with these findings, TRAM-34 treatment, in vivo, significantly reduced the size of tumors in glioma-bearing mice. Our data indicate that KCa3.1 channels are involved in the inhibitory effects exerted by the glioma microenvironment on infiltrating M/MΦ, suggesting a possible role as therapeutic targets in glioma.
format Online
Article
Text
id pubmed-4855657
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-48556572016-05-10 KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages Grimaldi, A D'Alessandro, G Golia, M T Grössinger, E M Di Angelantonio, S Ragozzino, D Santoro, A Esposito, V Wulff, H Catalano, M Limatola, C Cell Death Dis Original Article Among the strategies adopted by glioma to successfully invade the brain parenchyma is turning the infiltrating microglia/macrophages (M/MΦ) into allies, by shifting them toward an anti-inflammatory, pro-tumor phenotype. Both glioma and infiltrating M/MΦ cells express the Ca(2+)-activated K(+) channel (KCa3.1), and the inhibition of KCa3.1 activity on glioma cells reduces tumor infiltration in the healthy brain parenchyma. We wondered whether KCa3.1 inhibition could prevent the acquisition of a pro-tumor phenotype by M/MΦ cells, thus contributing to reduce glioma development. With this aim, we studied microglia cultured in glioma-conditioned medium or treated with IL-4, as well as M/MΦ cells acutely isolated from glioma-bearing mice and from human glioma biopsies. Under these different conditions, M/MΦ were always polarized toward an anti-inflammatory state, and preventing KCa3.1 activation by 1-[(2-Chlorophenyl)diphenylmethyl]-1H-pyrazole (TRAM-34), we observed a switch toward a pro-inflammatory, antitumor phenotype. We identified FAK and PI3K/AKT as the molecular mechanisms involved in this phenotype switch, activated in sequence after KCa3.1. Anti-inflammatory M/MΦ have higher expression levels of KCa3.1 mRNA (kcnn4) that are reduced by KCa3.1 inhibition. In line with these findings, TRAM-34 treatment, in vivo, significantly reduced the size of tumors in glioma-bearing mice. Our data indicate that KCa3.1 channels are involved in the inhibitory effects exerted by the glioma microenvironment on infiltrating M/MΦ, suggesting a possible role as therapeutic targets in glioma. Nature Publishing Group 2016-04 2016-04-07 /pmc/articles/PMC4855657/ /pubmed/27054329 http://dx.doi.org/10.1038/cddis.2016.73 Text en Copyright © 2016 Macmillan Publishers Limited http://creativecommons.org/licenses/by/4.0/ Cell Death and Disease is an open-access journal published by Nature Publishing Group. This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Grimaldi, A
D'Alessandro, G
Golia, M T
Grössinger, E M
Di Angelantonio, S
Ragozzino, D
Santoro, A
Esposito, V
Wulff, H
Catalano, M
Limatola, C
KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages
title KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages
title_full KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages
title_fullStr KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages
title_full_unstemmed KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages
title_short KCa3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages
title_sort kca3.1 inhibition switches the phenotype of glioma-infiltrating microglia/macrophages
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4855657/
https://www.ncbi.nlm.nih.gov/pubmed/27054329
http://dx.doi.org/10.1038/cddis.2016.73
work_keys_str_mv AT grimaldia kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT dalessandrog kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT goliamt kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT grossingerem kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT diangelantonios kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT ragozzinod kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT santoroa kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT espositov kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT wulffh kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT catalanom kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages
AT limatolac kca31inhibitionswitchesthephenotypeofgliomainfiltratingmicrogliamacrophages