Cargando…

Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages

Glutamine synthetase (GS) generates glutamine from glutamate and controls the release of inflammatory mediators. In macrophages, GS activity, driven by IL10, associates to the acquisition of M2‐like functions. Conditional deletion of GS in macrophages inhibits metastasis by boosting the formation of...

Descripción completa

Detalles Bibliográficos
Autores principales: Menga, Alessio, Serra, Marina, Todisco, Simona, Riera‐Domingo, Carla, Ammarah, Ummi, Ehling, Manuel, Palmieri, Erika M, Di Noia, Maria Antonietta, Gissi, Rosanna, Favia, Maria, Pierri, Ciro L, Porporato, Paolo E, Castegna, Alessandra, Mazzone, Massimiliano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7539200/
https://www.ncbi.nlm.nih.gov/pubmed/32885605
http://dx.doi.org/10.15252/emmm.201911210
_version_ 1783591016106819584
author Menga, Alessio
Serra, Marina
Todisco, Simona
Riera‐Domingo, Carla
Ammarah, Ummi
Ehling, Manuel
Palmieri, Erika M
Di Noia, Maria Antonietta
Gissi, Rosanna
Favia, Maria
Pierri, Ciro L
Porporato, Paolo E
Castegna, Alessandra
Mazzone, Massimiliano
author_facet Menga, Alessio
Serra, Marina
Todisco, Simona
Riera‐Domingo, Carla
Ammarah, Ummi
Ehling, Manuel
Palmieri, Erika M
Di Noia, Maria Antonietta
Gissi, Rosanna
Favia, Maria
Pierri, Ciro L
Porporato, Paolo E
Castegna, Alessandra
Mazzone, Massimiliano
author_sort Menga, Alessio
collection PubMed
description Glutamine synthetase (GS) generates glutamine from glutamate and controls the release of inflammatory mediators. In macrophages, GS activity, driven by IL10, associates to the acquisition of M2‐like functions. Conditional deletion of GS in macrophages inhibits metastasis by boosting the formation of anti‐tumor, M1‐like, tumor‐associated macrophages (TAMs). From this basis, we evaluated the pharmacological potential of GS inhibitors in targeting metastasis, identifying glufosinate as a specific human GS inhibitor. Glufosinate was tested in both cultured macrophages and on mice bearing metastatic lung, skin and breast cancer. We found that glufosinate rewires macrophages toward an M1‐like phenotype both at the primary tumor and metastatic site, countering immunosuppression and promoting vessel sprouting. This was also accompanied to a reduction in cancer cell intravasation and extravasation, leading to synchronous and metachronous metastasis growth inhibition, but no effects on primary tumor growth. Glufosinate treatment was well‐tolerated, without liver and brain toxicity, nor hematopoietic defects. These results identify GS as a druggable enzyme to rewire macrophage functions and highlight the potential of targeting metabolic checkpoints in macrophages to treat cancer metastasis.
format Online
Article
Text
id pubmed-7539200
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-75392002020-10-09 Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages Menga, Alessio Serra, Marina Todisco, Simona Riera‐Domingo, Carla Ammarah, Ummi Ehling, Manuel Palmieri, Erika M Di Noia, Maria Antonietta Gissi, Rosanna Favia, Maria Pierri, Ciro L Porporato, Paolo E Castegna, Alessandra Mazzone, Massimiliano EMBO Mol Med Articles Glutamine synthetase (GS) generates glutamine from glutamate and controls the release of inflammatory mediators. In macrophages, GS activity, driven by IL10, associates to the acquisition of M2‐like functions. Conditional deletion of GS in macrophages inhibits metastasis by boosting the formation of anti‐tumor, M1‐like, tumor‐associated macrophages (TAMs). From this basis, we evaluated the pharmacological potential of GS inhibitors in targeting metastasis, identifying glufosinate as a specific human GS inhibitor. Glufosinate was tested in both cultured macrophages and on mice bearing metastatic lung, skin and breast cancer. We found that glufosinate rewires macrophages toward an M1‐like phenotype both at the primary tumor and metastatic site, countering immunosuppression and promoting vessel sprouting. This was also accompanied to a reduction in cancer cell intravasation and extravasation, leading to synchronous and metachronous metastasis growth inhibition, but no effects on primary tumor growth. Glufosinate treatment was well‐tolerated, without liver and brain toxicity, nor hematopoietic defects. These results identify GS as a druggable enzyme to rewire macrophage functions and highlight the potential of targeting metabolic checkpoints in macrophages to treat cancer metastasis. John Wiley and Sons Inc. 2020-09-04 2020-10-07 /pmc/articles/PMC7539200/ /pubmed/32885605 http://dx.doi.org/10.15252/emmm.201911210 Text en © 2020 The Authors. Published under the terms of the CC BY 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Menga, Alessio
Serra, Marina
Todisco, Simona
Riera‐Domingo, Carla
Ammarah, Ummi
Ehling, Manuel
Palmieri, Erika M
Di Noia, Maria Antonietta
Gissi, Rosanna
Favia, Maria
Pierri, Ciro L
Porporato, Paolo E
Castegna, Alessandra
Mazzone, Massimiliano
Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages
title Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages
title_full Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages
title_fullStr Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages
title_full_unstemmed Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages
title_short Glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages
title_sort glufosinate constrains synchronous and metachronous metastasis by promoting anti‐tumor macrophages
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7539200/
https://www.ncbi.nlm.nih.gov/pubmed/32885605
http://dx.doi.org/10.15252/emmm.201911210
work_keys_str_mv AT mengaalessio glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT serramarina glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT todiscosimona glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT rieradomingocarla glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT ammarahummi glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT ehlingmanuel glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT palmierierikam glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT dinoiamariaantonietta glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT gissirosanna glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT faviamaria glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT pierricirol glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT porporatopaoloe glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT castegnaalessandra glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages
AT mazzonemassimiliano glufosinateconstrainssynchronousandmetachronousmetastasisbypromotingantitumormacrophages