Literature DB >> 26464684

Decreased expression levels of cell cycle regulators and matrix metalloproteinases in melanoma from RET-transgenic mice by single irradiation of non-equilibrium atmospheric pressure plasmas.

Machiko Iida1, Yasuhiro Omata2, Chihiro Nakano2, Ichiro Yajima1, Toyonori Tsuzuki3, Kenji Ishikawa4, Masaru Hori4, Masashi Kato1.   

Abstract

Since effective therapies for melanoma with BRAF(V600E) mutation are being developed, interest has been shown in the development of therapies for melanoma without BRAF(V600E) mutation. Recently, interest has also been shown in medical application of non-nequilibrium atmospheric pressure plasmas (NEAPPs). We previously suggested that repeated NEAPP irradiation to spontaneously developed benign melanocytic tumors in RFP-RET-transgenic mice (RET-mice) not only suppresses tumor growth but also prevents malignant transformation. In this study, we first confirmed that transcript expression levels of tumor growth regulators (CyclinD1, D2, E1, E2, G2 and PCNA but not CyclinG1) and tumor invasion regulators [Matrix metalloproteinase (MMP)-2, -9 and -14 and melanoma cell adhesion molecule (MCAM)] in melanomas were significantly higher than those in benign melanocytic tumors in RET-mice. We then showed that transcript expression levels of CyclinE1, G1 and G2 and MMP-2 and -9 in melanomas from RET-mice were significantly decreased by single NEAPP irradiation, whereas transcript expression levels of CyclinD1, D2, E2, PCNA, MCAM and MMP-14 were comparable in untreated and NEAPP-treated melanomas. Since no Braf(V600E) mutation melanomas have been found in RET-mice, our results suggest that single NEAPP irradiation is a potential therapeutic tool for melanoma without BRAF(V600E) mutation through modulation of the expression levels of tumor growth and invasion regulators.

Entities:  

Keywords:  Melanoma; invasion; non-equilibrium atmospheric pressure plasmas; tumor growth

Mesh:

Substances:

Year:  2015        PMID: 26464684      PMCID: PMC4583916     

Source DB:  PubMed          Journal:  Int J Clin Exp Pathol        ISSN: 1936-2625


  18 in total

Review 1.  Tumor adaptation and resistance to RAF inhibitors.

Authors:  Piro Lito; Neal Rosen; David B Solit
Journal:  Nat Med       Date:  2013-11       Impact factor: 53.440

2.  Distinct sets of genetic alterations in melanoma.

Authors:  John A Curtin; Jane Fridlyand; Toshiro Kageshita; Hetal N Patel; Klaus J Busam; Heinz Kutzner; Kwang-Hyun Cho; Setsuya Aiba; Eva-Bettina Bröcker; Philip E LeBoit; Dan Pinkel; Boris C Bastian
Journal:  N Engl J Med       Date:  2005-11-17       Impact factor: 91.245

3.  Non-equilibrium atmospheric pressure plasmas modulate cell cycle-related gene expressions in melanocytic tumors of RET-transgenic mice.

Authors:  Ichiro Yajima; Machiko Iida; Mayuko Y Kumasaka; Yasuhiro Omata; Nobutaka Ohgami; Jie Chang; Sahoko Ichihara; Masaru Hori; Masashi Kato
Journal:  Exp Dermatol       Date:  2014-06       Impact factor: 3.960

4.  Inhibition of tumor growth by β-elemene through downregulation of the expression of uPA, uPAR, MMP-2, and MMP-9 in a murine intraocular melanoma model.

Authors:  Hong Shi; Lei Liu; Li-Min Liu; Jin Geng; Lei Chen
Journal:  Melanoma Res       Date:  2015-02       Impact factor: 3.599

5.  Expression of Id-1 is regulated by MCAM/MUC18: a missing link in melanoma progression.

Authors:  Maya Zigler; Gabriel J Villares; Andrey S Dobroff; Hua Wang; Li Huang; Russell R Braeuer; Takafumi Kamiya; Vladislava O Melnikova; Renduo Song; Ran Friedman; Rhoda M Alani; Menashe Bar-Eli
Journal:  Cancer Res       Date:  2011-04-05       Impact factor: 12.701

Review 6.  Strategies for MMP inhibition in cancer: innovations for the post-trial era.

Authors:  Christopher Mark Overall; Carlos López-Otín
Journal:  Nat Rev Cancer       Date:  2002-09       Impact factor: 60.716

7.  Transgenic mouse model for skin malignant melanoma.

Authors:  M Kato; M Takahashi; A A Akhand; W Liu; Y Dai; S Shimizu; T Iwamoto; H Suzuki; I Nakashima
Journal:  Oncogene       Date:  1998-10-08       Impact factor: 9.867

8.  Non-thermal atmospheric pressure plasmas as a novel candidate for preventive therapy of melanoma.

Authors:  Yasuhiro Omata; Machiko Iida; Ichiro Yajima; Kozue Takeda; Nobutaka Ohgami; Masaru Hori; Masashi Kato
Journal:  Environ Health Prev Med       Date:  2014-07-19       Impact factor: 3.674

9.  c-Kit-targeting immunotherapy for hereditary melanoma in a mouse model.

Authors:  Masashi Kato; Kozue Takeda; Yoshiyuki Kawamoto; Toyonori Tsuzuki; Khaled Hossain; Akiko Tamakoshi; Takahiro Kunisada; Yasuhiro Kambayashi; Keiki Ogino; Haruhiko Suzuki; Masahide Takahashi; Izumi Nakashima
Journal:  Cancer Res       Date:  2004-02-01       Impact factor: 12.701

10.  Effect of indirect nonequilibrium atmospheric pressure plasma on anti-proliferative activity against chronic chemo-resistant ovarian cancer cells in vitro and in vivo.

Authors:  Fumi Utsumi; Hiroaki Kajiyama; Kae Nakamura; Hiromasa Tanaka; Masaaki Mizuno; Kenji Ishikawa; Hiroki Kondo; Hiroyuki Kano; Masaru Hori; Fumitaka Kikkawa
Journal:  PLoS One       Date:  2013-12-18       Impact factor: 3.240

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