4.8 Article

Tumor VEGF:VEGFR2 autocrine feed-forward loop triggers angiogenesis in lung cancer

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 123, 期 4, 页码 1732-1740

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI65385

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资金

  1. Sanofi-Aventis
  2. Merck KGaA
  3. Bayer
  4. Lilly
  5. Roche
  6. Boehringer Ingelheim
  7. Johnson Johnson
  8. AstraZeneca
  9. ATLAS Biolabs
  10. Daiichi-Sankyo
  11. Blackfield
  12. Merck
  13. EOS
  14. German Ministry of Science and Education (BMBF) as part of the NGFNplus program [01GS08100]
  15. Fritz-Thyssen-Stiftung [10.08.2.175]
  16. Max Planck Society [M.IF.A.NEUR8061]
  17. Deutsche Forschungsgemeinschaft (DFG) [SFB 832]

向作者/读者索取更多资源

The molecular mechanisms that control the balance between antiangiogenic and proangiogenic factors and initiate the angiogenic switch in tumors remain poorly defined. By combining chemical genetics with multimodal imaging, we have identified an autocrine feed-forward loop in tumor cells in which tumor-derived VEGF stimulates VEGF production via VEGFR2-dependent activation of mTOR, substantially amplifying the initial proangiogenic signal. Disruption of this feed-forward loop by chemical perturbation or knockdown of VEGFR2 in tumor cells dramatically inhibited production of VEGF in vitro and in vivo. This disruption was sufficient to prevent tumor growth in vivo. In patients with lung cancer, we found that this VEGF:VEGFR2 feed-forward loop was active, as the level of VEGF/VEGFR2 binding in tumor cells was highly correlated to tumor angiogenesis. We further demonstrated that inhibition of tumor cell VEGFR2 induces feedback activation of the IRS/MAPK signaling cascade. Most strikingly, combined pharmacological inhibition of VEGFR2 (ZD6474) and MEK (PD0325901) in tumor cells resulted in dramatic tumor shrinkage, whereas monotherapy only modestly slowed tumor growth. Thus, a tumor cell-autonomous VEGF:VEGFR2 feed-forward loop provides signal amplification required for the establishment of fully angiogenic tumors in lung cancer. Interrupting this feed-forward loop switches tumor cells from an angiogenic to a proliferative phenotype that sensitizes tumor cells to MAPK inhibition.

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