STAT3 and HIF1α Signaling Drives Oncogenic Cellular Phenotypes in Malignant Peripheral Nerve Sheath Tumors

Ellie Rad1, Kayleigh Dodd1, Laura Thomas1

  • 1Institute of Cancer and Genetics, Cardiff University, Heath Park, Cardiff, Wales, United Kingdom.

Abstract

Insights

Targeting STAT3 (signal transducer and activator of transcription 3) and HIF1α (hypoxia-inducible factor 1-alpha) shows promise for treating neurofibromatosis type 1 (NF1)-associated malignant peripheral nerve sheath tumors (MPNSTs). This STAT3/HIF1α/VEGF-A pathway inhibition offers a potential new therapeutic strategy.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Malignant peripheral nerve sheath tumors (MPNSTs) associated with neurofibromatosis type 1 (NF1) have limited treatment options.
  • Intratumoral heterogeneity and variable signaling pathways contribute to treatment failure in MPNSTs.

Purpose of the Study:

  • To investigate the role of STAT3, MET, and mTOR signaling in NF1-MPNSTs.
  • To identify common drivers of tumorigenesis in heterogeneous MPNST cell lines.
  • To explore the therapeutic potential of targeting these pathways.

Main Methods:

  • Utilized four distinct MPNST cell lines (ST8814, S462, S1844.1, S1507.2).
  • Assessed the effects of small-molecule inhibitors targeting MET, mTOR, and STAT3 on cell migration, invasion, and wound healing.
  • Investigated the impact of STAT3 and HIF1α knockdown on tumor formation and gene expression (HIF1α, HIF2α, VEGF-A).

Main Results:

  • STAT3 inhibition suppressed tumor progression in all tested MPNST cell lines, unlike MET and mTOR inhibitors.
  • STAT3 knockdown effectively reduced the expression of hypoxia-inducible factors (HIF1α, HIF2α) and VEGF-A.
  • STAT3-driven tumor progression was found to be dependent on HIF signaling, with HIF1α knockdown ablating oncogenic functions.

Conclusions:

  • Aberrant STAT3 and HIF1α activity are key drivers of MPNST progression in NF1.
  • The STAT3/HIF1α/VEGF-A signaling axis represents a promising therapeutic target for NF1-associated MPNSTs.

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