Cargando…

Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells

Menthol is a naturally occurring monoterpene alcohol possessing remarkable biological properties including antipruritic, analgesic, antiseptic, anti-inflammatory and cooling effects. Here, we examined the menthol-evoked Ca(2+) signals in breast and prostate cancer cell lines. The effect of menthol (...

Descripción completa

Detalles Bibliográficos
Autores principales: Nazıroğlu, Mustafa, Blum, Walter, Jósvay, Katalin, Çiğ, Bilal, Henzi, Thomas, Oláh, Zoltán, Vizler, Csaba, Schwaller, Beat, Pecze, László
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680524/
https://www.ncbi.nlm.nih.gov/pubmed/29078169
http://dx.doi.org/10.1016/j.redox.2017.10.009
_version_ 1783277779065765888
author Nazıroğlu, Mustafa
Blum, Walter
Jósvay, Katalin
Çiğ, Bilal
Henzi, Thomas
Oláh, Zoltán
Vizler, Csaba
Schwaller, Beat
Pecze, László
author_facet Nazıroğlu, Mustafa
Blum, Walter
Jósvay, Katalin
Çiğ, Bilal
Henzi, Thomas
Oláh, Zoltán
Vizler, Csaba
Schwaller, Beat
Pecze, László
author_sort Nazıroğlu, Mustafa
collection PubMed
description Menthol is a naturally occurring monoterpene alcohol possessing remarkable biological properties including antipruritic, analgesic, antiseptic, anti-inflammatory and cooling effects. Here, we examined the menthol-evoked Ca(2+) signals in breast and prostate cancer cell lines. The effect of menthol (50–500 µM) was predicted to be mediated by the transient receptor potential ion channel melastatin subtype 8 (TRPM8). However, the intensity of menthol-evoked Ca(2+) signals did not correlate with the expression levels of TRPM8 in breast and prostate cancer cells indicating a TRPM8-independent signaling pathway. Menthol-evoked Ca(2+) signals were analyzed in detail in Du 145 prostate cancer cells, as well as in CRISPR/Cas9 TRPM8-knockout Du 145 cells. Menthol (500 µM) induced Ca(2+) oscillations in both cell lines, thus independent of TRPM8, which were however dependent on the production of inositol trisphosphate. Results based on pharmacological tools point to an involvement of the purinergic pathway in menthol-evoked Ca(2+) responses. Finally, menthol (50–500 µM) decreased cell viability and induced oxidative stress independently of the presence of TRPM8 channels, despite that temperature-evoked TRPM8-mediated inward currents were significantly decreased in TRPM8-knockout Du 145 cells compared to wild type Du 145 cells.
format Online
Article
Text
id pubmed-5680524
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-56805242017-11-20 Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells Nazıroğlu, Mustafa Blum, Walter Jósvay, Katalin Çiğ, Bilal Henzi, Thomas Oláh, Zoltán Vizler, Csaba Schwaller, Beat Pecze, László Redox Biol Research Paper Menthol is a naturally occurring monoterpene alcohol possessing remarkable biological properties including antipruritic, analgesic, antiseptic, anti-inflammatory and cooling effects. Here, we examined the menthol-evoked Ca(2+) signals in breast and prostate cancer cell lines. The effect of menthol (50–500 µM) was predicted to be mediated by the transient receptor potential ion channel melastatin subtype 8 (TRPM8). However, the intensity of menthol-evoked Ca(2+) signals did not correlate with the expression levels of TRPM8 in breast and prostate cancer cells indicating a TRPM8-independent signaling pathway. Menthol-evoked Ca(2+) signals were analyzed in detail in Du 145 prostate cancer cells, as well as in CRISPR/Cas9 TRPM8-knockout Du 145 cells. Menthol (500 µM) induced Ca(2+) oscillations in both cell lines, thus independent of TRPM8, which were however dependent on the production of inositol trisphosphate. Results based on pharmacological tools point to an involvement of the purinergic pathway in menthol-evoked Ca(2+) responses. Finally, menthol (50–500 µM) decreased cell viability and induced oxidative stress independently of the presence of TRPM8 channels, despite that temperature-evoked TRPM8-mediated inward currents were significantly decreased in TRPM8-knockout Du 145 cells compared to wild type Du 145 cells. Elsevier 2017-10-12 /pmc/articles/PMC5680524/ /pubmed/29078169 http://dx.doi.org/10.1016/j.redox.2017.10.009 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Nazıroğlu, Mustafa
Blum, Walter
Jósvay, Katalin
Çiğ, Bilal
Henzi, Thomas
Oláh, Zoltán
Vizler, Csaba
Schwaller, Beat
Pecze, László
Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells
title Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells
title_full Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells
title_fullStr Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells
title_full_unstemmed Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells
title_short Menthol evokes Ca(2+) signals and induces oxidative stress independently of the presence of TRPM8 (menthol) receptor in cancer cells
title_sort menthol evokes ca(2+) signals and induces oxidative stress independently of the presence of trpm8 (menthol) receptor in cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5680524/
https://www.ncbi.nlm.nih.gov/pubmed/29078169
http://dx.doi.org/10.1016/j.redox.2017.10.009
work_keys_str_mv AT nazıroglumustafa mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT blumwalter mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT josvaykatalin mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT cigbilal mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT henzithomas mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT olahzoltan mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT vizlercsaba mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT schwallerbeat mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells
AT peczelaszlo mentholevokesca2signalsandinducesoxidativestressindependentlyofthepresenceoftrpm8mentholreceptorincancercells