Interaction between stromal fibroblasts and colorectal cancer cells in the expression of vascular endothelial growth factor

被引:23
作者
Koshida, Yoshitomo [1 ]
Kuranami, Masaru [1 ]
Watanabe, Masahiko [1 ]
机构
[1] Kitasato Univ, Sch Med, Dept Surg, Sagamihara, Kanagawa 2288555, Japan
关键词
VEGF; stromal fibroblasts; colorectal cancer cells; co-culture; cell cycle; TGF-beta;
D O I
10.1016/j.jss.2006.02.025
中图分类号
R61 [外科手术学];
学科分类号
摘要
Background. Vascular endothelial growth factor (VEGF), a potent angiogenic factor, has been implicated in metastasis of colorectal cancer (CRC). The present study aimed to clarify whether cancer-stromal interaction induces the production of VEGF. Materials and methods. Human colonic fibroblasts (CCD-18Co) and CRC (SW480, SW620) cells were analyzed in this study. The cell cycle of colonic fibroblasts during co-culture was analyzed by flow cytometry. VEGF and TGF-131 released into the conditioned media in co-culture models were measured. Northern blot with human specific VEGF probe was performed to identify the expression of VEGF in this model. Results. Co-culture of colonic fibroblasts with CRC cells increased the viability of fibroblasts during coculture. Cell cycle analysis revealed that most of the fibroblasts co-cultured with CRC cells were arrested at G1 phase and few cells were in sub-G1 phase that indicates apoptosis. Although VEGF protein was detected in the culture media of all of the monocultures, co-cultivation of CRC with fibroblasts resulted in synergistic increase of VEGF production compared with monocultures. However TGF-131 protein was not detected in any conditioned medium. VEGF mRNA was detected in both CRC and fibroblasts. Under co-culture condition, an abundance of VEGF mRNA expression was noted in fibroblasts relative to CRC cells. Conclusions. The present study suggests that CRC manipulates the host stroma to suppress apoptosis and up-regulate VEGF production. (c) 2006 Elsevier Inc. All rights reserved.
引用
收藏
页码:270 / 277
页数:8
相关论文
共 35 条
[1]   CELL INACTIVATION AND CELL-CYCLE INHIBITION AS INDUCED BY EXTREME HYPOXIA - THE POSSIBLE ROLE OF CELL-CYCLE ARREST AS A PROTECTION AGAINST HYPOXIA-INDUCED LETHAL DAMAGE [J].
AMELLEM, O ;
PETTERSEN, EO .
CELL PROLIFERATION, 1991, 24 (02) :127-141
[2]   EXPRESSION OF VASCULAR-PERMEABILITY FACTOR (VASCULAR ENDOTHELIAL GROWTH-FACTOR) BY EPIDERMAL-KERATINOCYTES DURING WOUND-HEALING [J].
BROWN, LF ;
YEO, KT ;
BERSE, B ;
YEO, TK ;
SENGER, DR ;
DVORAK, HF ;
VANDEWATER, L .
JOURNAL OF EXPERIMENTAL MEDICINE, 1992, 176 (05) :1375-1379
[3]  
Davies MM, 2000, BRIT J CANCER, V82, P1004
[4]   Hypoxia regulates the expression of vascular permeability factor vascular endothelial growth factor (VPF/VEGF) and its receptors in human skin [J].
Detmar, M ;
Brown, LF ;
Berse, B ;
Jackman, RW ;
Elicker, BM ;
Dvorak, HF ;
Claffey, KP .
JOURNAL OF INVESTIGATIVE DERMATOLOGY, 1997, 108 (03) :263-268
[5]   Hypoxic regulation of vascular endothelial growth factor mRNA stability requires the cooperation of multiple RNA elements [J].
Dibbens, JA ;
Miller, DL ;
Damert, A ;
Risau, W ;
Vadas, MA ;
Goodall, GJ .
MOLECULAR BIOLOGY OF THE CELL, 1999, 10 (04) :907-919
[6]   Role of vascular endothelial growth factor in Physiologic and Pathologic angiogenesis: Therapeutic implications [J].
Ferrara, N .
SEMINARS IN ONCOLOGY, 2002, 29 (06) :10-14
[7]   The biology of VEGF and its receptors [J].
Ferrara, N ;
Gerber, HP ;
LeCouter, J .
NATURE MEDICINE, 2003, 9 (06) :669-676
[8]   The biology of vascular endothelial growth factor [J].
Ferrara, N ;
DavisSmyth, T .
ENDOCRINE REVIEWS, 1997, 18 (01) :4-25
[9]   Coculture of endothelial cells and smooth muscle cells in bilayer and conditioned media models [J].
Fillinger, MF ;
Sampson, LN ;
Cronenwett, JL ;
Powell, RJ ;
Wagner, RJ .
JOURNAL OF SURGICAL RESEARCH, 1997, 67 (02) :169-178
[10]   Towards optimization of an organotypic assay system that imitates human hair follicle-like epithelial-mesenchymal interactions [J].
Havlickova, B ;
Bíró, T ;
Mescalchin, A ;
Arenberger, P ;
Paus, R .
BRITISH JOURNAL OF DERMATOLOGY, 2004, 151 (04) :753-765