TUMOR-GROWTH DEPENDENT ON KAPOSIS SARCOMA-DERIVED FIBROBLAST GROWTH-FACTOR INHIBITED BY PENTOSAN POLYSULFATE

被引:105
作者
WELLSTEIN, A
ZUGMAIER, G
CALIFANO, JA
KERN, F
PAIK, SM
LIPPMAN, ME
机构
[1] Vincent T. Lombardi Cancer Research Center, Georgetown University Medical Center, WA, DC
来源
JNCI-JOURNAL OF THE NATIONAL CANCER INSTITUTE | 1991年 / 83卷 / 10期
关键词
D O I
10.1093/jnci/83.10.716
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
A neoangiogenic response is critical for the unrestricted growth of solid tumors beyond a few millimeters in diameter. Release of adequate growth-stimulating activity from tumor cells is obviously required for the stimulation of blood vessel growth, and blockade of such stimulatory activity should repress tumor growth at the microscopic level. To test this hypothesis and to study appropriate inhibitors, we used a human adrenal cancer cell line (SW-13/K-fgf) engineered to secrete Kaposi's sarcoma-derived fibroblast growth factor (K-FGF), which we previously showed to induce growth of highly vascularized subcutaneous tumors in animals by autocrine and paracrine stimuli. In the present study, we tested different polysulfates for their selective inhibition of proliferation induced by K-FGF versus proliferation independent of K-FGF. Suramin and dextran sulfate showed slight selective inhibtion of K-FGF-induced proliferation, ie, inhibition three- and five-fold greater, respectively, than the inhibtion of proliferation independent of K-FGF. In contrast, heparin was inactive. The heparin analogue pentosan polysulfate (PPS), however, showed selective inhibition that was more than 2000-fold greater. The inhibitory effects of PPS on growth of SW-13/K-fgf cells, as well as endothelial cells, were fully reversible by an excess of added FGF. Daily intraperitoneal injections of PPS were tolerated well by athymic nude mice and prevented growth of subcutaneous SW-13/K-fgf tumor xenografts. PPS will be a useful tool to elucidate the effects of FGFs in vitro and in vivo and appears to be a prototype for the development of tumoricidal therapy based on targeting of growth factors.
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页码:716 / 720
页数:5
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