Cargando…

The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro

Melanoma is one of the most malignant and aggressive types of cancer worldwide. Fibroblast growth factor 2 (FGF2) is one of the critical regulators of melanoma angiogenesis and metastasis; thus, it might be an effective anti-cancer strategy to explore FGF2-targeting drug candidates from existing dru...

Descripción completa

Detalles Bibliográficos
Autores principales: Ma, He, Qiu, Peiju, Xu, Huixin, Xu, Ximing, Xin, Meng, Chu, Yanyan, Guan, Huashi, Li, Chunxia, Yang, Jinbo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562581/
https://www.ncbi.nlm.nih.gov/pubmed/31035725
http://dx.doi.org/10.3390/md17050257
_version_ 1783426334335172608
author Ma, He
Qiu, Peiju
Xu, Huixin
Xu, Ximing
Xin, Meng
Chu, Yanyan
Guan, Huashi
Li, Chunxia
Yang, Jinbo
author_facet Ma, He
Qiu, Peiju
Xu, Huixin
Xu, Ximing
Xin, Meng
Chu, Yanyan
Guan, Huashi
Li, Chunxia
Yang, Jinbo
author_sort Ma, He
collection PubMed
description Melanoma is one of the most malignant and aggressive types of cancer worldwide. Fibroblast growth factor 2 (FGF2) is one of the critical regulators of melanoma angiogenesis and metastasis; thus, it might be an effective anti-cancer strategy to explore FGF2-targeting drug candidates from existing drugs. In this study, we evaluate the effect of the marine drug propylene glycol alginate sodium sulfate (PSS) on FGF2-mediated angiogenesis and invasion. The data shows that FGF2 selectively bound to PSS with high affinity. PSS inhibited FGF2-mediated angiogenesis in a rat aortic ring model and suppressed FGF2-mediated invasion, but not the migration of murine melanoma B16-F10 cells. The further mechanism study indicates that PSS decreased the expression of activated matrix metalloproteinase 2 (MMP-2) and matrix metalloproteinase 9 (MMP-9), and also suppressed their activity. In addition, PSS was found to decrease the level of Vimentin in B16-F10 cells, which is known to participate in the epithelial–mesenchymal transition. Notably, PSS did not elicit any changes in cancer cell viability. Based on the results above, we conclude that PSS might be a potential drug to regulate the tumor microenvironment in order to facilitate the recovery of melanoma patients.
format Online
Article
Text
id pubmed-6562581
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-65625812019-06-17 The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro Ma, He Qiu, Peiju Xu, Huixin Xu, Ximing Xin, Meng Chu, Yanyan Guan, Huashi Li, Chunxia Yang, Jinbo Mar Drugs Article Melanoma is one of the most malignant and aggressive types of cancer worldwide. Fibroblast growth factor 2 (FGF2) is one of the critical regulators of melanoma angiogenesis and metastasis; thus, it might be an effective anti-cancer strategy to explore FGF2-targeting drug candidates from existing drugs. In this study, we evaluate the effect of the marine drug propylene glycol alginate sodium sulfate (PSS) on FGF2-mediated angiogenesis and invasion. The data shows that FGF2 selectively bound to PSS with high affinity. PSS inhibited FGF2-mediated angiogenesis in a rat aortic ring model and suppressed FGF2-mediated invasion, but not the migration of murine melanoma B16-F10 cells. The further mechanism study indicates that PSS decreased the expression of activated matrix metalloproteinase 2 (MMP-2) and matrix metalloproteinase 9 (MMP-9), and also suppressed their activity. In addition, PSS was found to decrease the level of Vimentin in B16-F10 cells, which is known to participate in the epithelial–mesenchymal transition. Notably, PSS did not elicit any changes in cancer cell viability. Based on the results above, we conclude that PSS might be a potential drug to regulate the tumor microenvironment in order to facilitate the recovery of melanoma patients. MDPI 2019-04-29 /pmc/articles/PMC6562581/ /pubmed/31035725 http://dx.doi.org/10.3390/md17050257 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ma, He
Qiu, Peiju
Xu, Huixin
Xu, Ximing
Xin, Meng
Chu, Yanyan
Guan, Huashi
Li, Chunxia
Yang, Jinbo
The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro
title The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro
title_full The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro
title_fullStr The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro
title_full_unstemmed The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro
title_short The Inhibitory Effect of Propylene Glycol Alginate Sodium Sulfate on Fibroblast Growth Factor 2-Mediated Angiogenesis and Invasion in Murine Melanoma B16-F10 Cells In Vitro
title_sort inhibitory effect of propylene glycol alginate sodium sulfate on fibroblast growth factor 2-mediated angiogenesis and invasion in murine melanoma b16-f10 cells in vitro
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6562581/
https://www.ncbi.nlm.nih.gov/pubmed/31035725
http://dx.doi.org/10.3390/md17050257
work_keys_str_mv AT mahe theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT qiupeiju theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT xuhuixin theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT xuximing theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT xinmeng theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT chuyanyan theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT guanhuashi theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT lichunxia theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT yangjinbo theinhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT mahe inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT qiupeiju inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT xuhuixin inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT xuximing inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT xinmeng inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT chuyanyan inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT guanhuashi inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT lichunxia inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro
AT yangjinbo inhibitoryeffectofpropyleneglycolalginatesodiumsulfateonfibroblastgrowthfactor2mediatedangiogenesisandinvasioninmurinemelanomab16f10cellsinvitro