Sulforaphane activates CD8+ T cells antitumor response through IL-12RB2/MMP3/FasL-induced MDSCs apoptosis'

Jinyan Liu1, Huanan Chen1,2, Caijuan Guo1

  • 1Biotherapy Center and Cancer Center, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, China.

PubMed
Abstract

Insights

Sulforaphane (SFN) eliminates myeloid-derived suppressor cells (MDSCs) by activating IL-12RB2, leading to CD8+ T cell activation and repressed tumor growth. This strategy targets MDSCs to improve cancer treatment efficacy.

Area of Science:

  • Immunology
  • Cancer Biology
  • Pharmacology

Background:

  • Myeloid-derived suppressor cells (MDSCs) are key drivers of tumor progression and treatment resistance.
  • Existing agents to eliminate MDSCs lack clinical approval due to safety concerns.
  • Sulforaphane (SFN) is investigated for its potential to eliminate MDSCs within the tumor microenvironment (TME).

Purpose of the Study:

  • To investigate the efficacy of sulforaphane (SFN) in eliminating myeloid-derived suppressor cells (MDSCs).
  • To elucidate the underlying mechanisms by which SFN affects MDSCs and tumor immunity.
  • To assess the clinical relevance of SFN in modulating MDSCs and T cells.

Main Methods:

  • SFN's effects on tumor growth and immune cell apoptosis were monitored in mouse models.
  • In vitro and in vivo techniques including flow cytometry, qPCR, ELISA, and western blot were employed.
  • RNA sequencing identified mechanisms of SFN-mediated regulation of MDSCs, with validation in xenograft models and a Phase I clinical trial.

Main Results:

  • SFN treatment reduced MDSC accumulation in peripheral blood and tumor sites, enhancing CD8+ T cell antitumor activity and repressing tumor growth.
  • Mechanistically, SFN activates IL-12RB2, initiating an MMP3/FasL signaling pathway that induces MDSC apoptosis via caspase 3 cleavage.
  • Clinically, SFN administration decreased peripheral MDSCs and increased the percentage and activation of CD8+ T cells.

Conclusions:

  • SFN effectively eliminates MDSCs by inducing apoptosis through the IL-12RB2/MMP3/FasL pathway.
  • This mechanism liberates CD8+ T cells, thereby suppressing tumor growth.
  • SFN presents a promising therapeutic strategy for targeting MDSCs to improve cancer treatment outcomes.

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