Polyphenon [corrected] E enhances the antitumor immune response in neuroblastoma by inactivating myeloid suppressor

Giorgia Santilli1, Izabela Piotrowska, Sandra Cantilena

  • 1Molecular Immunology Unit, UCL Institute of Child Health, London, United Kingdom.

Abstract

Insights

Green tea catechins (Polyphenon E) show promise in treating neuroblastoma by targeting myeloid-derived suppressor cells. This research indicates a potential new therapeutic avenue for this aggressive childhood cancer.

Area of Science:

  • Oncology
  • Immunology
  • Pharmacology

Background:

  • Neuroblastoma, a rare pediatric cancer, presents a significant challenge due to the poor prognosis of its high-risk metastatic form.
  • Current aggressive therapeutic interventions for neuroblastoma are often associated with substantial drug toxicity in young patients.

Purpose of the Study:

  • To investigate the anticancer potential of Polyphenon E, a green tea catechin mixture, in preclinical models of neuroblastoma.
  • To determine if Polyphenon E can mitigate the negative effects of myeloid cells in neuroblastoma.

Main Methods:

  • Utilized three distinct neuroblastoma mouse models: spontaneous (TH-MYCN), xenograft (NOD/SCID with SHSY5Y), and syngeneic (A/J with Neuro 2A).
  • Administered Polyphenon E via drinking water to experimental groups and assessed myeloid cell phenotype and function using patient blood samples.

Main Results:

  • Polyphenon E reduced tumor-infiltrating myeloid cells and inhibited spontaneous neuroblastoma development in TH-MYCN mice.
  • In therapeutic models, Polyphenon E suppressed tumor growth by modulating myeloid-derived suppressor cells (MDSCs) and CD8 T cells.
  • In vitro studies demonstrated Polyphenon E's ability to impair MDSC development and motility, promoting differentiation via laminin receptor signaling and G-CSF induction. It also reactivated T cell proliferation in patient metastasis samples.

Conclusions:

  • Findings suggest that the pro-tumorigenic activity of MDSCs in neuroblastoma can be pharmacologically targeted in vivo.
  • Green tea catechins, like Polyphenon E, demonstrate anticancer effects in neuroblastoma models, partly through the modulation of MDSCs.

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