Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of action

<p>Abstract</p> <p>Background</p> <p>Magnolol, a plant lignan isolated from the bark and seed cones of <it>Magnolia officinalis</it>, has been shown to have chemopreventive effects on chemically-induced skin cancer development. The objectives of this investi...

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Main Authors: Chilampalli Chandeshwari, Guillermo Ruth, Zhang Xiaoying, Kaushik Radhey S, Young Alan, Zeman David, Hildreth Michael B, Fahmy Hesham, Dwivedi Chandradhar
Format: Article
Language:English
Published: BMC 2011-10-01
Series:BMC Cancer
Online Access:http://www.biomedcentral.com/1471-2407/11/456
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spelling doaj-328a2704b8d941bca217c907cab9f4392020-11-25T00:42:04ZengBMCBMC Cancer1471-24072011-10-0111145610.1186/1471-2407-11-456Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of actionChilampalli ChandeshwariGuillermo RuthZhang XiaoyingKaushik Radhey SYoung AlanZeman DavidHildreth Michael BFahmy HeshamDwivedi Chandradhar<p>Abstract</p> <p>Background</p> <p>Magnolol, a plant lignan isolated from the bark and seed cones of <it>Magnolia officinalis</it>, has been shown to have chemopreventive effects on chemically-induced skin cancer development. The objectives of this investigation are to study the anticarcinogenic effects of magnolol on UVB-induced skin tumor development in SKH-1 mice, a model relevant to humans, and determine the possible role of apoptosis and cell cycle arrest involved in the skin tumor development.</p> <p>Methods</p> <p>UVB-induced skin carcinogenesis model in SKH-1 mice was used for determining the preventive effects of magnolol on skin cancer development. Western blottings and flow cytometric analysis were used to study the effects of magnolol on apoptosis and cell cycle.</p> <p>Results</p> <p>Magnolol pretreated groups (30, 60 μ g) before UVB treatments (30 mJ/cm<sup>2</sup>, 5 days/week) resulted in 27-55% reduction in tumor multiplicity as compared to control group in SKH-1 mice. Magnolol pretreatment increased the cleavage of caspase-8 and poly-(-ADP-ribose) polymerase (PARP), increased the expression of p21, a cell cycle inhibitor, and decreased the expression of proteins involved in the G2/M phase of cell cycle in skin samples from SKH-1 mice.</p> <p>Treatment of A431 cells with magnolol decreased cell viability and cell proliferation in a concentration dependent manner. Magnolol induced G2/M phase cell cycle arrest in A431 cells at 12 h with a decreased expression of cell cycle proteins such as cyclin B1, cyclin A, CDK4, Cdc2 and simultaneous increase in the expression of Cip/p21, a cyclin-dependent kinase inhibitor. Magnolol induced apoptosis <it>in vivo </it>and <it>in vitro </it>with an increased cleavage of caspase-8 and PARP. Phospho-signal transducers and activators of transcription 3 (Tyr<sup>705</sup>), B-Raf, p-MEK, and p-AKT were down-regulated, whereas phosphorylation of ERK was induced by magnolol in A431 cells.</p> <p>Conclusions</p> <p>Magnolol pretreatments prevent UVB-induced skin cancer development by enhancing apoptosis, causing cell cycle arrest at G2/M phase, and affecting various signaling pathways. Magnolol could be a potentially safe and potent anticarcinogenic agent against skin cancer.</p> http://www.biomedcentral.com/1471-2407/11/456
collection DOAJ
language English
format Article
sources DOAJ
author Chilampalli Chandeshwari
Guillermo Ruth
Zhang Xiaoying
Kaushik Radhey S
Young Alan
Zeman David
Hildreth Michael B
Fahmy Hesham
Dwivedi Chandradhar
spellingShingle Chilampalli Chandeshwari
Guillermo Ruth
Zhang Xiaoying
Kaushik Radhey S
Young Alan
Zeman David
Hildreth Michael B
Fahmy Hesham
Dwivedi Chandradhar
Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of action
BMC Cancer
author_facet Chilampalli Chandeshwari
Guillermo Ruth
Zhang Xiaoying
Kaushik Radhey S
Young Alan
Zeman David
Hildreth Michael B
Fahmy Hesham
Dwivedi Chandradhar
author_sort Chilampalli Chandeshwari
title Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of action
title_short Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of action
title_full Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of action
title_fullStr Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of action
title_full_unstemmed Effects of magnolol on UVB-induced skin cancer development in mice and its possible mechanism of action
title_sort effects of magnolol on uvb-induced skin cancer development in mice and its possible mechanism of action
publisher BMC
series BMC Cancer
issn 1471-2407
publishDate 2011-10-01
description <p>Abstract</p> <p>Background</p> <p>Magnolol, a plant lignan isolated from the bark and seed cones of <it>Magnolia officinalis</it>, has been shown to have chemopreventive effects on chemically-induced skin cancer development. The objectives of this investigation are to study the anticarcinogenic effects of magnolol on UVB-induced skin tumor development in SKH-1 mice, a model relevant to humans, and determine the possible role of apoptosis and cell cycle arrest involved in the skin tumor development.</p> <p>Methods</p> <p>UVB-induced skin carcinogenesis model in SKH-1 mice was used for determining the preventive effects of magnolol on skin cancer development. Western blottings and flow cytometric analysis were used to study the effects of magnolol on apoptosis and cell cycle.</p> <p>Results</p> <p>Magnolol pretreated groups (30, 60 μ g) before UVB treatments (30 mJ/cm<sup>2</sup>, 5 days/week) resulted in 27-55% reduction in tumor multiplicity as compared to control group in SKH-1 mice. Magnolol pretreatment increased the cleavage of caspase-8 and poly-(-ADP-ribose) polymerase (PARP), increased the expression of p21, a cell cycle inhibitor, and decreased the expression of proteins involved in the G2/M phase of cell cycle in skin samples from SKH-1 mice.</p> <p>Treatment of A431 cells with magnolol decreased cell viability and cell proliferation in a concentration dependent manner. Magnolol induced G2/M phase cell cycle arrest in A431 cells at 12 h with a decreased expression of cell cycle proteins such as cyclin B1, cyclin A, CDK4, Cdc2 and simultaneous increase in the expression of Cip/p21, a cyclin-dependent kinase inhibitor. Magnolol induced apoptosis <it>in vivo </it>and <it>in vitro </it>with an increased cleavage of caspase-8 and PARP. Phospho-signal transducers and activators of transcription 3 (Tyr<sup>705</sup>), B-Raf, p-MEK, and p-AKT were down-regulated, whereas phosphorylation of ERK was induced by magnolol in A431 cells.</p> <p>Conclusions</p> <p>Magnolol pretreatments prevent UVB-induced skin cancer development by enhancing apoptosis, causing cell cycle arrest at G2/M phase, and affecting various signaling pathways. Magnolol could be a potentially safe and potent anticarcinogenic agent against skin cancer.</p>
url http://www.biomedcentral.com/1471-2407/11/456
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