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Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells

Cancer cell invasion is crucial for metastasis. A major factor in the capacity of cancer cell invasion is the activation of matrix metalloproteinase-9 (MMP-9), which degrades the extracellular matrix. Salvia miltiorrhiza has been used as a promotion for blood circulation to remove blood stasis. Nume...

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Autores principales: Kim, Jeong-Mi, Noh, Eun-Mi, Song, Hyun-Kyung, Lee, Minok, Lee, Soo Ho, Park, Sueng Hyuk, Ahn, Chan-Keun, Lee, Guem-San, Byun, Eui-Baek, Jang, Beom-Su, Kwon, Kang-Beom, Lee, Young-Rae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5588011/
https://www.ncbi.nlm.nih.gov/pubmed/28927117
http://dx.doi.org/10.3892/ol.2017.6638
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author Kim, Jeong-Mi
Noh, Eun-Mi
Song, Hyun-Kyung
Lee, Minok
Lee, Soo Ho
Park, Sueng Hyuk
Ahn, Chan-Keun
Lee, Guem-San
Byun, Eui-Baek
Jang, Beom-Su
Kwon, Kang-Beom
Lee, Young-Rae
author_facet Kim, Jeong-Mi
Noh, Eun-Mi
Song, Hyun-Kyung
Lee, Minok
Lee, Soo Ho
Park, Sueng Hyuk
Ahn, Chan-Keun
Lee, Guem-San
Byun, Eui-Baek
Jang, Beom-Su
Kwon, Kang-Beom
Lee, Young-Rae
author_sort Kim, Jeong-Mi
collection PubMed
description Cancer cell invasion is crucial for metastasis. A major factor in the capacity of cancer cell invasion is the activation of matrix metalloproteinase-9 (MMP-9), which degrades the extracellular matrix. Salvia miltiorrhiza has been used as a promotion for blood circulation to remove blood stasis. Numerous previous studies have demonstrated that S. miltiorrhiza extracts (SME) decrease lipid levels and inhibit inflammation. However, the mechanism behind the effect of SME on breast cancer invasion has not been identified. The inhibitory effects of SME on 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced MMP-9 expression were assessed using western blotting, reverse transcription-quantitative polymerase chain reaction and zymography assays. MMP-9 upstream signal proteins, including mitogen-activated protein kinases and activator protein 1 (AP-1) were also investigated. Cell invasion was assessed using a matrigel invasion assay. The present study demonstrated the inhibitory effects of the SME ethanol solution on MMP-9 expression and cell invasion in TPA-treated MCF-7 breast cancer cells. SME suppressed TPA-induced MMP-9 expression and MCF-7 cell invasion by blocking the transcriptional activation of AP-1. SME may possess therapeutic potential for inhibiting breast cancer cell invasiveness.
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spelling pubmed-55880112017-09-18 Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells Kim, Jeong-Mi Noh, Eun-Mi Song, Hyun-Kyung Lee, Minok Lee, Soo Ho Park, Sueng Hyuk Ahn, Chan-Keun Lee, Guem-San Byun, Eui-Baek Jang, Beom-Su Kwon, Kang-Beom Lee, Young-Rae Oncol Lett Articles Cancer cell invasion is crucial for metastasis. A major factor in the capacity of cancer cell invasion is the activation of matrix metalloproteinase-9 (MMP-9), which degrades the extracellular matrix. Salvia miltiorrhiza has been used as a promotion for blood circulation to remove blood stasis. Numerous previous studies have demonstrated that S. miltiorrhiza extracts (SME) decrease lipid levels and inhibit inflammation. However, the mechanism behind the effect of SME on breast cancer invasion has not been identified. The inhibitory effects of SME on 12-O-tetradecanoylphorbol-13-acetate (TPA)-induced MMP-9 expression were assessed using western blotting, reverse transcription-quantitative polymerase chain reaction and zymography assays. MMP-9 upstream signal proteins, including mitogen-activated protein kinases and activator protein 1 (AP-1) were also investigated. Cell invasion was assessed using a matrigel invasion assay. The present study demonstrated the inhibitory effects of the SME ethanol solution on MMP-9 expression and cell invasion in TPA-treated MCF-7 breast cancer cells. SME suppressed TPA-induced MMP-9 expression and MCF-7 cell invasion by blocking the transcriptional activation of AP-1. SME may possess therapeutic potential for inhibiting breast cancer cell invasiveness. D.A. Spandidos 2017-09 2017-07-20 /pmc/articles/PMC5588011/ /pubmed/28927117 http://dx.doi.org/10.3892/ol.2017.6638 Text en Copyright: © Kim et al. This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Kim, Jeong-Mi
Noh, Eun-Mi
Song, Hyun-Kyung
Lee, Minok
Lee, Soo Ho
Park, Sueng Hyuk
Ahn, Chan-Keun
Lee, Guem-San
Byun, Eui-Baek
Jang, Beom-Su
Kwon, Kang-Beom
Lee, Young-Rae
Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells
title Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells
title_full Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells
title_fullStr Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells
title_full_unstemmed Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells
title_short Salvia miltiorrhiza extract inhibits TPA-induced MMP-9 expression and invasion through the MAPK/AP-1 signaling pathway in human breast cancer MCF-7 cells
title_sort salvia miltiorrhiza extract inhibits tpa-induced mmp-9 expression and invasion through the mapk/ap-1 signaling pathway in human breast cancer mcf-7 cells
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5588011/
https://www.ncbi.nlm.nih.gov/pubmed/28927117
http://dx.doi.org/10.3892/ol.2017.6638
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