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Anti-VEGF agents confer survival advantages to tumor-bearing mice by improving cancer-associated systemic syndrome

  • Yuan Xue
  • , Piotr Religa
  • , Renhai Cao
  • , Anker Jon Hansen
  • , Franco Lucchini
  • , Bernt Jones
  • , Yan Wu
  • , Zhenping Zhu
  • , Bronislaw Pytowski
  • , Yuxiang Liang
  • , Weide Zhong
  • , Paolo Vezzoni
  • , Bjoern Rozell
  • , Yihai Cao

    Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

    Sammanfattning

    The underlying mechanism by which anti-VEGF agents prolong cancer patient survival is poorly understood. We show that in a mouse tumor model, VEGF systemically impairs functions of multiple organs including those in the hematopoietic and endocrine systems, leading to early death. Anti-VEGF antibody, bevacizumab, and anti-VEGF receptor 2 (VEGFR-2), but not anti-VEGFR-1, reversed VEGF-induced cancer-associated systemic syndrome (CASS) and prevented death in tumor-bearing mice. Surprisingly, VIEGFR2 blockage improved survival by rescuing mice from CASS without significantly compromising tumor growth, suggesting that "off-tumor" VEGF targets are more sensitive than the tumor vasculature to anti-VEGF drugs. Similarly, VEGF-induced CASS occurred in a spontaneous breast cancer mouse model over-expressing neu. Clinically, VEGF expression and CASS severity positively correlated in various human cancers. These findings define novel therapeutic targets of anti-VEGF agents and provide mechanistic insights into the action of this new class of clinically available anti-VEGF cancer drugs.
    OriginalspråkEngelska
    Sidor (från-till)18513-18518
    Antal sidor6
    TidskriftProceedings of the National Academy of Sciences
    Volym105
    Nummer47
    DOI
    StatusPublicerad - 2008

    FN:s SDG:er

    Detta resultat bidrar till följande hållbara utvecklingsmål:

    1. SDG 3 – God hälsa och välbefinnande
      SDG 3 – God hälsa och välbefinnande

    Nyckelord

    • angiogenesis
    • antiangiogenic therapy
    • cancer syndrome
    • tumor growth
    • VEGF

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