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Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion

Glioblastomas are progressive brain tumors with devastating proliferative and invasive characteristics. Ion channels are the second largest target class for drug development. In this study, we investigated the effects of the TRPM7 inhibitor carvacrol on the viability, resistance to apoptosis, migrat...

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Autores principales: Chen, Wen-Liang, Barszczyk, Andrew, Turlova, Ekaterina, Deurloo, Marielle, Liu, Baosong, Yang, Burton B., Rutka, James T., Feng, Zhong-Ping, Sun, Hong-Shuo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599272/
https://www.ncbi.nlm.nih.gov/pubmed/25965832
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author Chen, Wen-Liang
Barszczyk, Andrew
Turlova, Ekaterina
Deurloo, Marielle
Liu, Baosong
Yang, Burton B.
Rutka, James T.
Feng, Zhong-Ping
Sun, Hong-Shuo
author_facet Chen, Wen-Liang
Barszczyk, Andrew
Turlova, Ekaterina
Deurloo, Marielle
Liu, Baosong
Yang, Burton B.
Rutka, James T.
Feng, Zhong-Ping
Sun, Hong-Shuo
author_sort Chen, Wen-Liang
collection PubMed
description Glioblastomas are progressive brain tumors with devastating proliferative and invasive characteristics. Ion channels are the second largest target class for drug development. In this study, we investigated the effects of the TRPM7 inhibitor carvacrol on the viability, resistance to apoptosis, migration, and invasiveness of the human U87 glioblastoma cell line. The expression levels of TRPM7 mRNA and protein in U87 cells were detected by RT-PCR, western blotting and immunofluorescence. TRPM7 currents were recorded using whole-cell patch-clamp techniques. An MTT assay was used to assess cell viability and proliferation. Wound healing and transwell experiments were used to evaluate cell migration and invasion. Protein levels of p-Akt/t-Akt, p-ERK1/2/t-ERK1/2, cleaved caspase-3, MMP-2 and phosphorylated cofilin were also detected. TRPM7 mRNA and protein expression in U87 cells is higher than in normal human astrocytes. Whole-cell patch-clamp recording showed that carvacrol blocks recombinant TRPM7 current in HEK293 cells and endogenous TRPM7-like current in U87 cells. Carvacrol treatment reduced the viability, migration and invasion of U87 cells. Carvacrol also decreased MMP-2 protein expression and promoted the phosphorylation of cofilin. Furthermore, carvacrol inhibited the Ras/MEK/MAPK and PI3K/Akt signaling pathways. Therefore, carvacrol may have therapeutic potential for the treatment of glioblastomas through its inhibition of TRPM7 channels.
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spelling pubmed-45992722015-10-26 Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion Chen, Wen-Liang Barszczyk, Andrew Turlova, Ekaterina Deurloo, Marielle Liu, Baosong Yang, Burton B. Rutka, James T. Feng, Zhong-Ping Sun, Hong-Shuo Oncotarget Research Paper Glioblastomas are progressive brain tumors with devastating proliferative and invasive characteristics. Ion channels are the second largest target class for drug development. In this study, we investigated the effects of the TRPM7 inhibitor carvacrol on the viability, resistance to apoptosis, migration, and invasiveness of the human U87 glioblastoma cell line. The expression levels of TRPM7 mRNA and protein in U87 cells were detected by RT-PCR, western blotting and immunofluorescence. TRPM7 currents were recorded using whole-cell patch-clamp techniques. An MTT assay was used to assess cell viability and proliferation. Wound healing and transwell experiments were used to evaluate cell migration and invasion. Protein levels of p-Akt/t-Akt, p-ERK1/2/t-ERK1/2, cleaved caspase-3, MMP-2 and phosphorylated cofilin were also detected. TRPM7 mRNA and protein expression in U87 cells is higher than in normal human astrocytes. Whole-cell patch-clamp recording showed that carvacrol blocks recombinant TRPM7 current in HEK293 cells and endogenous TRPM7-like current in U87 cells. Carvacrol treatment reduced the viability, migration and invasion of U87 cells. Carvacrol also decreased MMP-2 protein expression and promoted the phosphorylation of cofilin. Furthermore, carvacrol inhibited the Ras/MEK/MAPK and PI3K/Akt signaling pathways. Therefore, carvacrol may have therapeutic potential for the treatment of glioblastomas through its inhibition of TRPM7 channels. Impact Journals LLC 2015-04-19 /pmc/articles/PMC4599272/ /pubmed/25965832 Text en Copyright: © 2015 Chen et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Chen, Wen-Liang
Barszczyk, Andrew
Turlova, Ekaterina
Deurloo, Marielle
Liu, Baosong
Yang, Burton B.
Rutka, James T.
Feng, Zhong-Ping
Sun, Hong-Shuo
Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion
title Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion
title_full Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion
title_fullStr Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion
title_full_unstemmed Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion
title_short Inhibition of TRPM7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion
title_sort inhibition of trpm7 by carvacrol suppresses glioblastoma cell proliferation, migration and invasion
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599272/
https://www.ncbi.nlm.nih.gov/pubmed/25965832
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