Key result
Systemic inhibition of Ikkβ, IL-6, or Stat3 markedly inhibited angiosarcoma growth in Ink4a/Arf-deficient mice.
Why the study?
Does systemic inhibition of Ikkβ, IL-6, or Stat3 prevent angiosarcoma growth in Ink4a/Arf deficient models?
Does systemic inhibition of Ikkβ, IL-6, or Stat3 prevent angiosarcoma growth in Ink4a/Arf deficient models?
Targeting the NF-kB/IL-6/STAT3 pathway may be a rational therapeutic strategy for treating angiosarcoma associated with Ink4a/Arf inactivation.
May inform preclinical development of targeted therapies for angiosarcoma; leaves open translation to patients.
Although human angiosarcoma has been associated frequently with mutational inactivation of the tumor suppressor gene Ink4a/Arf, the underlying mechanisms have not been delineated. Here we report that malignant angiosarcoma is associated with high levels of RelA/NF-κB and IL-6 in contrast to normal vessels or benign hemagiomas. Studies of Ink4a/Arf deficient mice not only recapitulate genetic traits observed in human angiosarcoma, but also unveil a possible therapeutic link comprised of the NF-kB/IL-6/Stat3 signaling axis. In Ink4a/Arf(-/-) cells, NF-κB controlled Stat3 signaling by transcriptionally controlling the expression of IL-6, gp130, and Jak2. Further, IL-6 mediated Stat3 signaling through the sIL-6R. Inhibition of Ikkβ solely in myeloid cells was insufficient to block angiosarcoma development; in contrast, systemic inhibition of Ikkβ, IL-6, or Stat3 markedly inhibited angiosarcoma growth. Our findings offer clinical implications for targeting the NF-kB/IL-6/STAT3 pathway as a rational strategy to treat angiosarcoma.
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Yang et al. (2012) studied Angiosarcoma. Systemic inhibition of Ikkβ, IL-6, or Stat3 was evaluated on Angiosarcoma development and growth. Systemic inhibition of Ikkβ, IL-6, or Stat3 markedly inhibited angiosarcoma growth in Ink4a/Arf-deficient mice.
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