Pancreatic cancer growth is inhibited by blockade of VEGF-RII

被引:47
作者
Büchler, P
Reber, HA
Urich, A
Shiroiki, M
Roth, M
Büchler, MW
Lavey, RS
Friess, H
Hines, OJ
机构
[1] Univ Calif Los Angeles, Sch Med, Sect Gastrointestinal Surg, Dept Surg, Los Angeles, CA 90095 USA
[2] Univ So Calif, Sch Med, Childrens Hosp Los Angeles, Dept Radiat Oncol, Los Angeles, CA 90095 USA
[3] Univ Heidelberg, Dept Surg, Martinsried, Germany
[4] Max Planck Inst Biochem, D-82152 Martinsried, Germany
关键词
D O I
10.1016/S0039-6060(03)00296-4
中图分类号
R61 [外科手术学];
学科分类号
摘要
Background. Angiogenesis is important in the development and progression of pancreatic cancer. Therefore antiangiogenic therapy targeting endothelial cells may represent a promising therapeutic option. The aim of the study was to evaluate antiangiogenic therapy as a potential therapeutic option in pancreatic cancer. Methods. Replication-deficient retroviruses encoding truncated VEGF-RII were used to block vascular endothelial growth factor (VEGF) signaling. Tumor growth of 3 pancreatic cancer cell lines was assayed in a nude mouse model in which each pancreatic cancer cell line was subcutaneously inoculated together with retrovirus-producing cells. Expression of VEGF was assayed by RT-PCR and by enzyme-linked immunosorbent assay. Oxygen tension in tumors was determined polarographically. Results. All 3 pancreatic cancer cell lines expressed VEGF mRNA, with the highest VEGF secretion seen in MIA PaCa-2 cells. In vivo therapeutic intervention through dominant negative inhibition of VEGF-RII significantly reduced the growth rate Of subcutaneous tumors and inhibited tumor neoangiogenesis. Tumor oxygenation, however, was not altered in xenograft tumors treated with dominant negative retroviruses. Conclusion. The ligand/receptor system consisting of VEGF and VEGFRII seems to be of biologic significance in the pathogenesis of pancreatic cancer growth. Therefore therapeutic intervention in this angiogenic system by a retroviral-based gene transfer technology represents a rational and feasible new technique to inhibit tumor growth.
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页码:772 / 782
页数:11
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