Membrane-bound TRAIL supplements natural killer cell cytotoxicity against neuroblastoma cells

Michael A Sheard1, Shahab Asgharzadeh, Yin Liu

  • 1Division of Hematology/Oncology, Children's Hospital Los Angeles, Keck School of Medicine, University of Southern California, Los Angeles, CA 90027, USA. msheard@chla.usc.edu

Insights

Neuroblastoma cells can be killed by natural killer (NK) cells, even when resistant to soluble TRAIL. Membrane-bound TRAIL on NK cells plays a key role in this anti-cancer activity.

Area of Science:

  • Immunology
  • Cancer Biology
  • Cell Death Mechanisms

Background:

  • Neuroblastoma cells often resist apoptosis induced by soluble tumor necrosis factor-related apoptosis-inducing ligand (TRAIL).
  • This resistance is linked to low expression of caspase-8 and/or TRAIL-receptor 2 (TRAIL-R2).
  • The sensitivity of neuroblastoma to membrane-bound TRAIL on natural killer (NK) cells remains largely unknown.

Purpose of the Study:

  • To investigate the role of membrane-bound TRAIL in NK cell-mediated cytotoxicity against neuroblastoma.
  • To correlate neuroblastoma cell sensitivity to NK cells with TRAIL-receptor 2 (TRAIL-R2) expression.

Main Methods:

  • Microarray gene expression analysis of neuroblastoma cell lines.
  • Assessment of NK cell-mediated cytotoxicity using activated NK cells (IL-2 plus IL-15 or K562 clone 9.mbIL21).
  • Utilized anti-TRAIL neutralizing antibodies and interferon-γ to delineate TRAIL's contribution and mechanisms.

Main Results:

  • A correlation was observed between TRAIL-R2 expression and sensitivity of neuroblastoma cell lines to NK cell cytotoxicity.
  • TRAIL supplemented NK cell cytotoxicity in 82% of neuroblastoma cell lines tested, independent of perforin.
  • Membrane-bound TRAIL, not soluble TRAIL, was responsible for the supplemental cytotoxicity observed.

Conclusions:

  • Membrane-bound TRAIL on NK cells is a significant factor in overcoming neuroblastoma resistance.
  • NK cell-mediated cytotoxicity against neuroblastoma can be enhanced through TRAIL interactions.
  • Findings support targeting membrane-bound TRAIL for neuroblastoma treatment strategies.

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