Cargando…

Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population

Cervical cancer, caused by high oncogenic risk Human Papillomavirus (HPV) infection, continues to be a public health problem, mainly in developing countries. Using peptide phage display as a tool to identify potential molecular targets in HPV associated tumors, we identified α-mannosidase, among oth...

Descripción completa

Detalles Bibliográficos
Autores principales: Silveira, Caio Raony Farina, Cipelli, Marcella, Manzine, Carolina, Rabelo-Santos, Silvia Helena, Zeferino, Luiz Carlos, Rodríguez Rodríguez, Gretel, de Assis, Josiane Betim, Hebster, Suellen, Bernadinelli, Isabel, Laginha, Fabio, Boccardo, Enrique, Villa, Luisa Lina, Termini, Lara, Lepique, Ana Paula
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6402676/
https://www.ncbi.nlm.nih.gov/pubmed/30840689
http://dx.doi.org/10.1371/journal.pone.0213184
_version_ 1783400444304818176
author Silveira, Caio Raony Farina
Cipelli, Marcella
Manzine, Carolina
Rabelo-Santos, Silvia Helena
Zeferino, Luiz Carlos
Rodríguez Rodríguez, Gretel
de Assis, Josiane Betim
Hebster, Suellen
Bernadinelli, Isabel
Laginha, Fabio
Boccardo, Enrique
Villa, Luisa Lina
Termini, Lara
Lepique, Ana Paula
author_facet Silveira, Caio Raony Farina
Cipelli, Marcella
Manzine, Carolina
Rabelo-Santos, Silvia Helena
Zeferino, Luiz Carlos
Rodríguez Rodríguez, Gretel
de Assis, Josiane Betim
Hebster, Suellen
Bernadinelli, Isabel
Laginha, Fabio
Boccardo, Enrique
Villa, Luisa Lina
Termini, Lara
Lepique, Ana Paula
author_sort Silveira, Caio Raony Farina
collection PubMed
description Cervical cancer, caused by high oncogenic risk Human Papillomavirus (HPV) infection, continues to be a public health problem, mainly in developing countries. Using peptide phage display as a tool to identify potential molecular targets in HPV associated tumors, we identified α-mannosidase, among other enriched sequences. This enzyme is expressed in both tumor and inflammatory compartment of the tumor microenvironment. Several studies in experimental models have shown that its inhibition by swainsonine (SW) led to inhibition of tumor growth and metastasis directly and indirectly, through activation of macrophages and NK cells, promoting anti-tumor activity. Therefore, the aim of this work was to test if swainsonine treatment could modulate anti-tumor immune responses and therefore interfere in HPV associated tumor growth. Validation of our biopanning results showed that cervical tumors, both tumor cells and leukocytes, expressed α-mannosidase. Ex vivo experiments with tumor associated macrophages showed that SW could partially modulate macrophage phenotype, decreasing CCL2 secretion and impairing IL-10 and IL-6 upregulation, which prompted us to proceed to in vivo tests. However, in vivo, SW treatment increased tumor growth. Investigation of the mechanisms leading to this result showed that SW treatment significantly induced the accumulation of myeloid derived suppressor cells in the spleen of tumor bearing mice, which inhibited T cell activation. Our results suggested that SW contributes to cervical cancer progression by favoring proliferation and accumulation of myeloid cells in the spleen, thus exacerbating these tumors systemic effects on the immune system, therefore facilitating tumor growth.
format Online
Article
Text
id pubmed-6402676
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-64026762019-03-17 Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population Silveira, Caio Raony Farina Cipelli, Marcella Manzine, Carolina Rabelo-Santos, Silvia Helena Zeferino, Luiz Carlos Rodríguez Rodríguez, Gretel de Assis, Josiane Betim Hebster, Suellen Bernadinelli, Isabel Laginha, Fabio Boccardo, Enrique Villa, Luisa Lina Termini, Lara Lepique, Ana Paula PLoS One Research Article Cervical cancer, caused by high oncogenic risk Human Papillomavirus (HPV) infection, continues to be a public health problem, mainly in developing countries. Using peptide phage display as a tool to identify potential molecular targets in HPV associated tumors, we identified α-mannosidase, among other enriched sequences. This enzyme is expressed in both tumor and inflammatory compartment of the tumor microenvironment. Several studies in experimental models have shown that its inhibition by swainsonine (SW) led to inhibition of tumor growth and metastasis directly and indirectly, through activation of macrophages and NK cells, promoting anti-tumor activity. Therefore, the aim of this work was to test if swainsonine treatment could modulate anti-tumor immune responses and therefore interfere in HPV associated tumor growth. Validation of our biopanning results showed that cervical tumors, both tumor cells and leukocytes, expressed α-mannosidase. Ex vivo experiments with tumor associated macrophages showed that SW could partially modulate macrophage phenotype, decreasing CCL2 secretion and impairing IL-10 and IL-6 upregulation, which prompted us to proceed to in vivo tests. However, in vivo, SW treatment increased tumor growth. Investigation of the mechanisms leading to this result showed that SW treatment significantly induced the accumulation of myeloid derived suppressor cells in the spleen of tumor bearing mice, which inhibited T cell activation. Our results suggested that SW contributes to cervical cancer progression by favoring proliferation and accumulation of myeloid cells in the spleen, thus exacerbating these tumors systemic effects on the immune system, therefore facilitating tumor growth. Public Library of Science 2019-03-06 /pmc/articles/PMC6402676/ /pubmed/30840689 http://dx.doi.org/10.1371/journal.pone.0213184 Text en © 2019 Silveira et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://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
Silveira, Caio Raony Farina
Cipelli, Marcella
Manzine, Carolina
Rabelo-Santos, Silvia Helena
Zeferino, Luiz Carlos
Rodríguez Rodríguez, Gretel
de Assis, Josiane Betim
Hebster, Suellen
Bernadinelli, Isabel
Laginha, Fabio
Boccardo, Enrique
Villa, Luisa Lina
Termini, Lara
Lepique, Ana Paula
Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population
title Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population
title_full Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population
title_fullStr Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population
title_full_unstemmed Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population
title_short Swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population
title_sort swainsonine, an alpha-mannosidase inhibitor, may worsen cervical cancer progression through the increase in myeloid derived suppressor cells population
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6402676/
https://www.ncbi.nlm.nih.gov/pubmed/30840689
http://dx.doi.org/10.1371/journal.pone.0213184
work_keys_str_mv AT silveiracaioraonyfarina swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT cipellimarcella swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT manzinecarolina swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT rabelosantossilviahelena swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT zeferinoluizcarlos swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT rodriguezrodriguezgretel swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT deassisjosianebetim swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT hebstersuellen swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT bernadinelliisabel swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT laginhafabio swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT boccardoenrique swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT villaluisalina swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT terminilara swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation
AT lepiqueanapaula swainsonineanalphamannosidaseinhibitormayworsencervicalcancerprogressionthroughtheincreaseinmyeloidderivedsuppressorcellspopulation