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A novel engineered IL-21 receptor arms T-cell receptor-engineered T cells (TCR-T cells) against hepatocellular carcinoma.

Wei ZhuZhiming ZhangJinzhang ChenXiaolan ChenLei HuangXiaoyong ZhangXuan HuangNa MaWeikang XuXuan YiXinyu LuXin FuSiwei LiGuoheng MoYiyue WangGuosheng YuanMengya ZangQi LiXiaotao JiangYajing HeSha WuYukai HeYongyin LiJin-Lin Hou
Published in: Signal transduction and targeted therapy (2024)
Strategies to improve T cell therapy efficacy in solid tumors such as hepatocellular carcinoma (HCC) are urgently needed. The common cytokine receptor γ chain (γ c ) family cytokines such as IL-2, IL-7, IL-15 and IL-21 play fundamental roles in T cell development, differentiation and effector phases. This study aims to determine the combination effects of IL-21 in T cell therapy against HCC and investigate optimized strategies to utilize the effect of IL-21 signal in T cell therapy. The antitumor function of AFP-specific T cell receptor-engineered T cells (TCR-T) was augmented by exogenous IL-21 in vitro and in vivo. IL-21 enhanced proliferation capacity, promoted memory differentiation, downregulated PD-1 expression and alleviated apoptosis in TCR-T after activation. A novel engineered IL-21 receptor was established, and TCR-T armed with the novel engineered IL-21 receptors (IL-21R-TCR-T) showed upregulated phosphorylated STAT3 expression without exogenous IL-21 ligand. IL-21R-TCR-T showed better proliferation upon activation and superior antitumor function in vitro and in vivo. IL-21R-TCR-T exhibited a less differentiated, exhausted and apoptotic phenotype than conventional TCR-T upon repetitive tumor antigen stimulation. The novel IL-21 receptor in our study programs powerful TCR-T and can avoid side effects induced by IL-21 systemic utilization. The novel IL-21 receptor creates new opportunities for next-generation TCR-T against HCC.
Keyphrases
  • cell therapy
  • regulatory t cells
  • poor prognosis
  • stem cells
  • signaling pathway
  • mesenchymal stem cells
  • public health
  • endoplasmic reticulum stress
  • immune response
  • binding protein
  • oxidative stress
  • pi k akt