Cargando…

Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis

The most common properties of oncogenes are cell proliferation and the prevention of apoptosis in malignant cells, which, as a consequence, induce tumor formation and dissemination. However, the effects of oncogenes on the tumor microenvironment (TME) have not yet been examined in detail. The accumu...

Descripción completa

Detalles Bibliográficos
Autores principales: Yoshida, Mitsuyo, Taguchi, Ayumi, Kawana, Kei, Adachi, Katsuyuki, Kawata, Akira, Ogishima, Juri, Nakamura, Hiroe, Fujimoto, Asaha, Sato, Masakazu, Inoue, Tomoko, Nishida, Haruka, Furuya, Hitomi, Tomio, Kensuke, Arimoto, Takahide, Koga, Kaori, Wada-Hiraike, Osamu, Oda, Katsutoshi, Nagamatsu, Takeshi, Kiyono, Tohru, Osuga, Yutaka, Fujii, Tomoyuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4970724/
https://www.ncbi.nlm.nih.gov/pubmed/27483433
http://dx.doi.org/10.1371/journal.pone.0160330
_version_ 1782446005877211136
author Yoshida, Mitsuyo
Taguchi, Ayumi
Kawana, Kei
Adachi, Katsuyuki
Kawata, Akira
Ogishima, Juri
Nakamura, Hiroe
Fujimoto, Asaha
Sato, Masakazu
Inoue, Tomoko
Nishida, Haruka
Furuya, Hitomi
Tomio, Kensuke
Arimoto, Takahide
Koga, Kaori
Wada-Hiraike, Osamu
Oda, Katsutoshi
Nagamatsu, Takeshi
Kiyono, Tohru
Osuga, Yutaka
Fujii, Tomoyuki
author_facet Yoshida, Mitsuyo
Taguchi, Ayumi
Kawana, Kei
Adachi, Katsuyuki
Kawata, Akira
Ogishima, Juri
Nakamura, Hiroe
Fujimoto, Asaha
Sato, Masakazu
Inoue, Tomoko
Nishida, Haruka
Furuya, Hitomi
Tomio, Kensuke
Arimoto, Takahide
Koga, Kaori
Wada-Hiraike, Osamu
Oda, Katsutoshi
Nagamatsu, Takeshi
Kiyono, Tohru
Osuga, Yutaka
Fujii, Tomoyuki
author_sort Yoshida, Mitsuyo
collection PubMed
description The most common properties of oncogenes are cell proliferation and the prevention of apoptosis in malignant cells, which, as a consequence, induce tumor formation and dissemination. However, the effects of oncogenes on the tumor microenvironment (TME) have not yet been examined in detail. The accumulation of ascites accompanied by chronic inflammation and elevated concentrations of VEGF is a hallmark of the progression of ovarian cancer. We herein demonstrated the mechanisms by which oncogenes contribute to modulating the ovarian cancer microenvironment. c-MYC and KRAS were transduced into the mouse ovarian cancer cell line ID8. ID8, ID8-c-MYC, or ID8-KRAS cells were then injected into the peritoneal cavities of C57/BL6 mice and the production of ascites was assessed. ID8-c-MYC and ID8-KRAS both markedly accelerated ovarian cancer progression in vivo, whereas no significant differences were observed in proliferative activity in vitro. ID8-KRAS in particular induced the production of ascites, which accumulated between approximately two to three weeks after the injection, more rapidly than ID8 and ID8-c-MYC (between nine and ten weeks and between six and seven weeks, respectively). VEGF concentrations in ascites significantly increased in c-MYC-induced ovarian cancer, whereas the concentrations of inflammatory cytokines in ascites were significantly high in KRAS-induced ovarian cancer and were accompanied by an increased number of neutrophils in ascites. A cytokine array revealed that KRAS markedly induced the expression of granulocyte macrophage colony-stimulating factor (GM-CSF) in ID8 cells. These results suggest that oncogenes promote cancer progression by modulating the TME in favor of cancer progression.
format Online
Article
Text
id pubmed-4970724
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-49707242016-08-18 Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis Yoshida, Mitsuyo Taguchi, Ayumi Kawana, Kei Adachi, Katsuyuki Kawata, Akira Ogishima, Juri Nakamura, Hiroe Fujimoto, Asaha Sato, Masakazu Inoue, Tomoko Nishida, Haruka Furuya, Hitomi Tomio, Kensuke Arimoto, Takahide Koga, Kaori Wada-Hiraike, Osamu Oda, Katsutoshi Nagamatsu, Takeshi Kiyono, Tohru Osuga, Yutaka Fujii, Tomoyuki PLoS One Research Article The most common properties of oncogenes are cell proliferation and the prevention of apoptosis in malignant cells, which, as a consequence, induce tumor formation and dissemination. However, the effects of oncogenes on the tumor microenvironment (TME) have not yet been examined in detail. The accumulation of ascites accompanied by chronic inflammation and elevated concentrations of VEGF is a hallmark of the progression of ovarian cancer. We herein demonstrated the mechanisms by which oncogenes contribute to modulating the ovarian cancer microenvironment. c-MYC and KRAS were transduced into the mouse ovarian cancer cell line ID8. ID8, ID8-c-MYC, or ID8-KRAS cells were then injected into the peritoneal cavities of C57/BL6 mice and the production of ascites was assessed. ID8-c-MYC and ID8-KRAS both markedly accelerated ovarian cancer progression in vivo, whereas no significant differences were observed in proliferative activity in vitro. ID8-KRAS in particular induced the production of ascites, which accumulated between approximately two to three weeks after the injection, more rapidly than ID8 and ID8-c-MYC (between nine and ten weeks and between six and seven weeks, respectively). VEGF concentrations in ascites significantly increased in c-MYC-induced ovarian cancer, whereas the concentrations of inflammatory cytokines in ascites were significantly high in KRAS-induced ovarian cancer and were accompanied by an increased number of neutrophils in ascites. A cytokine array revealed that KRAS markedly induced the expression of granulocyte macrophage colony-stimulating factor (GM-CSF) in ID8 cells. These results suggest that oncogenes promote cancer progression by modulating the TME in favor of cancer progression. Public Library of Science 2016-08-02 /pmc/articles/PMC4970724/ /pubmed/27483433 http://dx.doi.org/10.1371/journal.pone.0160330 Text en © 2016 Yoshida 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
Yoshida, Mitsuyo
Taguchi, Ayumi
Kawana, Kei
Adachi, Katsuyuki
Kawata, Akira
Ogishima, Juri
Nakamura, Hiroe
Fujimoto, Asaha
Sato, Masakazu
Inoue, Tomoko
Nishida, Haruka
Furuya, Hitomi
Tomio, Kensuke
Arimoto, Takahide
Koga, Kaori
Wada-Hiraike, Osamu
Oda, Katsutoshi
Nagamatsu, Takeshi
Kiyono, Tohru
Osuga, Yutaka
Fujii, Tomoyuki
Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis
title Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis
title_full Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis
title_fullStr Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis
title_full_unstemmed Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis
title_short Modification of the Tumor Microenvironment in KRAS or c-MYC-Induced Ovarian Cancer-Associated Peritonitis
title_sort modification of the tumor microenvironment in kras or c-myc-induced ovarian cancer-associated peritonitis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4970724/
https://www.ncbi.nlm.nih.gov/pubmed/27483433
http://dx.doi.org/10.1371/journal.pone.0160330
work_keys_str_mv AT yoshidamitsuyo modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT taguchiayumi modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT kawanakei modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT adachikatsuyuki modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT kawataakira modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT ogishimajuri modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT nakamurahiroe modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT fujimotoasaha modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT satomasakazu modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT inouetomoko modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT nishidaharuka modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT furuyahitomi modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT tomiokensuke modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT arimototakahide modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT kogakaori modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT wadahiraikeosamu modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT odakatsutoshi modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT nagamatsutakeshi modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT kiyonotohru modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT osugayutaka modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis
AT fujiitomoyuki modificationofthetumormicroenvironmentinkrasorcmycinducedovariancancerassociatedperitonitis