Cyclooxygenase isozymes are expressed in human myeloma cells but not involved in anti-proliferative effect of cyclooxygenase inhibitors

被引:12
|
作者
Ding, J
Tsuboi, K
Hoshikawa, H
Goto, R
Mori, N
Katsukawa, M
Hiraki, E
Yamamoto, S
Abe, M
Ueda, N
机构
[1] Kagawa Univ, Sch Med, Dept Biochem, Miki, Kagawa 7610793, Japan
[2] Kagawa Univ, Sch Med, Dept Otolaryngol, Kagawa, Japan
[3] Kyoto Womens Univ, Fac Home Econ, Dept Food & Nutr, Kyoto, Japan
[4] Univ Tokushima, Grad Sch Med, Dept Med & Bioregulatory Sci, Tokushima 770, Japan
关键词
prostaglandin (PG); eicosanoid; non-steroidal anti-inflammatory drug (NSAID); cell proliferation;
D O I
10.1002/mc.20175
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Considering possible tumorigenic activity of cyclooxygenase (COX) isozymes in myeloma, we examined expression levels of COX-1 and -2 in seven human myeloma cell lines (ARH-77, IM-9, RPMI-8226, HPC, HS-Sultan, TSPC-1, and U-266). As analyzed by reverse transcriptase-polymerase chain reaction (RT-PCR), all the cell lines constitutively expressed COX-1, while COX-2 levels markedly varied among different cell lines. Induction of COX-2 by phorbol ester was observed in RPMI-8226 and HPC cells. In contrast, COX-2 was constitutively expressed in ARH-77 and IM-9 cells. Moreover, the high expression level of COX-2 protein in ARH-77 cells was verified by Western blotting. Intact cells of ARH-77 converted C-14-labeled arachidonic acid to prostaglandin E-2, F-2 alpha, and D-2, and this activity was close-dependently inhibited by selective COX-2 inhibitors (SC-58125 and NS-398), a non-selective COX inhibitor (indomethacin), and relatively high concentrations of a selective COX-1 inhibitor (SC-560). These COX inhibitors also suppressed the proliferation of ARH-77 cells, but significant suppression was seen only at 100 mu M, a much higher concentration than those sufficient for the COX inhibition. Moreover, proliferation of the myeloma cells lacking COX-2 was also suppressed by 100 mu M of SC-58125. These results suggested that the anti-proliferative effect of the COX inhibitors is independent of the inhibition of COX-2. (c) 2005 Wiley-Liss, Inc.
引用
收藏
页码:250 / 259
页数:10
相关论文
共 50 条
  • [21] Apoptosis is involved in the anti-proliferative effect of corticosterone in non-tumoral ACTH pituitary cells
    Montero, M. C.
    Vazquez, R.
    Rubio, M.
    Blanco, E.
    Riesco, J. M.
    Herrero, J. J.
    Vazquez, G.
    Riesco-Lopez, J. M.
    Gonzalez, R.
    Carretero, M.
    Basco, M.
    Carretero, J.
    [J]. EUROPEAN JOURNAL OF ANATOMY, 2006, 10 (03) : 143 - 149
  • [22] Cyclooxygenase-1 and-2 are expressed by human T cells
    Pablos, JL
    Santiago, B
    Carreira, PE
    Galindo, M
    Gomez-Reino, JJ
    [J]. CLINICAL AND EXPERIMENTAL IMMUNOLOGY, 1999, 115 (01): : 86 - 90
  • [23] Prostaglandins contribute to the anti-proliferative effect of isoenzyme-selective phosphodiesterase 4 inhibitors but not theophylline in human mononuclear cells
    Banner, KH
    Page, CP
    [J]. BRITISH JOURNAL OF PHARMACOLOGY, 1997, 120 : P11 - P11
  • [24] Anti-inflammatory, anti-proliferative and antioxidant profiles of selective cyclooxygenase-2 inhibition as chemoprevention for rat bladder carcinogenesis
    Parada, Belmiro
    Sereno, Jose
    Reis, Flavio
    Teixeira-Lemos, Edite
    Garrido, Patricia
    Pinto, Angela Filipa
    Cunha, Maria Fernanda
    Pinto, Rui
    Mota, Alfredo
    Figueiredo, Arnaldo
    Teixeira, Frederico
    [J]. CANCER BIOLOGY & THERAPY, 2009, 8 (17) : 1622 - 1629
  • [25] Anti-Proliferative Effects of Evodiamine on Human Breast Cancer Cells
    Wang, Kai-Lee
    Hsia, Shih-Min
    Yeh, Jiun-Yih
    Cheng, Shao-Chi
    Wang, Paulus S.
    Wang, Shyi-Wu
    [J]. PLOS ONE, 2013, 8 (06):
  • [26] Anti-proliferative effect of Euphorbia stenoclada in human airway smooth muscle cells in culture
    Chaabi, M.
    Freund-Michel, V.
    Frossard, N.
    Randriantsoa, A.
    Andriantsitohaina, R.
    Lobstein, A.
    [J]. JOURNAL OF ETHNOPHARMACOLOGY, 2007, 109 (01) : 134 - 139
  • [27] Anti-Proliferative Effect of Copper Oxide Nanorods Against Human Cervical Carcinoma Cells
    Muthuraman Pandurangan
    P. C. Nagajyothi
    Jaesool Shim
    Doo Hwan Kim
    [J]. Biological Trace Element Research, 2016, 173 : 62 - 70
  • [28] Anti-proliferative effect of germinated djulis (Chenopodium formosanum) in human colorectal cancer cells
    Hsieh, Mei-Chi
    Xiao, Qian
    Shen, Chia-An
    Shih, Hung-Yu
    Shih, Chun-Kuang
    [J]. ANNALS OF NUTRITION AND METABOLISM, 2023, 79 : 1049 - 1049
  • [29] Anti-proliferative effects of anandamide in human hepatocellular carcinoma cells
    Xie, Chengzhi
    Liu, Guoxing
    Liu, Jiefeng
    Huang, Zhao
    Wang, Fusheng
    Lei, Xiaohua
    Wu, Xiaolong
    Huang, Shengfu
    Zhong, Dewu
    Xu, Xundi
    [J]. ONCOLOGY LETTERS, 2012, 4 (03) : 403 - 407
  • [30] Anti-proliferative effect of astragalosides on human gastric cancer SGC-7901 cells
    Xu, Baoli
    Han, Ping
    Dong, Shuxiao
    Qi, Jian
    Feng, Haomiao
    Zi, Li
    Wang, Weijia
    [J]. BIOMEDICAL RESEARCH-INDIA, 2016, 27 (01): : 263 - 267