Hepatoma-derived growth factor induces tumorigenesis in vivo through both direct angiogenic activity and induction of vascular endothelial growth factor

被引:84
作者
Okuda, Y
Nakamura, H
Yoshida, K
Enomoto, H
Uyama, H
Hirotani, T
Funamoto, M
Ito, H
Everett, AD
Hada, T
Kawase, I
机构
[1] Hyogo Med Univ, Div Hepatobiliary & Pancreat Med, Dept Internal Med, Nishinomiya, Hyogo 6638501, Japan
[2] Osaka Univ, Grad Sch Med, Dept Mol Med, Suita, Osaka 5650871, Japan
[3] Univ Virginia, Hlth Sci Ctr, Dept Pediat, Charlottesville, VA USA
关键词
D O I
10.1111/j.1349-7006.2003.tb01397.x
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Hepatoma-derived growth factor (HDGF) is highly expressed in tumor cells, and stimulates their proliferation. In the present study, we investigated the role of HDGF in tumorigenesis and elucidated the mechanism of action. Stable transfectants of NIH3T3 cells overexpressing HDGF did not show significant anchorage-independent growth in soft agar assay. However, these stable transfectants overexpressing HDGF generated sarcomatous tumors in nude mice. These tumors were red-colored macroscopically, and histologically showed a rich vascularity. Immunohistochemical analysis using CD31 antibody showed new vessel formation. Recombinant HDGF stimulated proliferation of human umbilical vein endothelial cells in a dose-dependent manner, and stimulated tubule formation. Furthermore, vascular endothelial growth factor (VEGF) was detected immunohistochemically in the tumor tissues. Transient expression of HDGF induced both VEGF gene and protein expression as demonstrated by a reporter assay using VEGF gene promoter. The administration of anti-VEGF neutralizing antibody significantly suppressed, but did not block, the tumor growth of HDGF-overexpressing cells in nude mice. Thus, these findings suggested that HDGF-induced tumor formation in vivo involves induction of VEGF as well as direct angiogenic activity.
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收藏
页码:1034 / 1041
页数:8
相关论文
共 41 条
  • [1] Baba I, 2000, CANCER RES, V60, P6886
  • [2] MAP kinases and hypoxia in the control of VEGF expression
    Berra, E
    Pagès, G
    Pouysségur, J
    [J]. CANCER AND METASTASIS REVIEWS, 2000, 19 (1-2) : 139 - 145
  • [3] An in vitro model of angiogenesis: Basic features
    Bishop E.T.
    Bell G.T.
    Bloor S.
    Broom I.J.
    Hendry N.F.K.
    Wheatley D.N.
    [J]. Angiogenesis, 1999, 3 (4) : 335 - 344
  • [4] Stat3 as an oncogene
    Bromberg, JF
    Wrzeszczynska, MH
    Devgan, G
    Zhao, YX
    Pestell, RG
    Albanese, C
    Darnell, JE
    [J]. CELL, 1999, 98 (03) : 295 - 303
  • [5] ONCOGENES AND SIGNAL TRANSDUCTION
    CANTLEY, LC
    AUGER, KR
    CARPENTER, C
    DUCKWORTH, B
    GRAZIANI, A
    KAPELLER, R
    SOLTOFF, S
    [J]. CELL, 1991, 64 (02) : 281 - 302
  • [6] Chu JS, 2003, MOL CANCER THER, V2, P1
  • [7] Up-regulation of cyclooxygenase 2 gene expression correlates with tumor angiogenesis in human colorectal cancer
    Cianchi, F
    Cortesini, C
    Bechi, P
    Fantappié, O
    Messerini, L
    Vannacci, A
    Sardi, I
    Baroni, G
    Boddi, V
    Mazzanti, R
    Masini, E
    [J]. GASTROENTEROLOGY, 2001, 121 (06) : 1339 - 1347
  • [8] rsc: A novel oncogene with structural and functional homology with the gene family of exchange factors for Ral
    DAdamo, DR
    Novick, S
    Kahn, JM
    Leonardi, P
    Pellicer, A
    [J]. ONCOGENE, 1997, 14 (11) : 1295 - 1305
  • [9] Knockout mouse models and mammary tumorigenesis
    Deng, CX
    Brodie, SG
    [J]. SEMINARS IN CANCER BIOLOGY, 2001, 11 (05) : 387 - 394
  • [10] Hepatoma-derived growth factor is highly expressed in developing liver and promotes fetal hepatocyte proliferation
    Enomoto, H
    Yoshida, K
    Kishima, Y
    Kinoshita, T
    Yamamoto, M
    Everett, AD
    Miyajima, A
    Nakamura, H
    [J]. HEPATOLOGY, 2002, 36 (06) : 1519 - 1527