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Oral administration of garlic-derived nanoparticles improves cancer immunotherapy by inducing intestinal IFNγ-producing γδ T cells.

Jialu XuYue YuYue ZhangHuaxing DaiQianyu YangBeilei WangQingle MaYitong ChenFang XuXiaolin ShiZhuang LiuChao Wang
Published in: Nature nanotechnology (2024)
Gamma-delta (γδ) T cell-based cancer immunotherapies represent a promising avenue for cancer treatment. However, their development is challenged by the limited expansion and differentiation of the cells ex vivo. Here we induced the endogenous expansion and activation of γδ T cells through oral administration of garlic-derived nanoparticles (GNPs). We found that GNPs could significantly promote the proliferation and activation of endogenous γδ T cells in the intestine, leading to generation of large amount of interferon-γ (IFNγ). Moreover GNP-treated mice showed increased levels of chemokine CXCR3 in intestinal γδ T cells, which can drive their migration from the gut to the tumour environment. The translocation of γδ T cells and IFNγ from the intestine to extraintestinal subcutaneous tumours remodels the tumour immune microenvironment and synergizes with anti-PD-L1, inducing robust antitumour immunity. Our study delineates mechanistic insight into the complex gut-tumour interactome and provides an alternative approach for γδ T cell-based immunotherapy.
Keyphrases
  • dendritic cells
  • immune response
  • induced apoptosis
  • papillary thyroid
  • stem cells
  • signaling pathway
  • high glucose
  • type diabetes
  • endothelial cells
  • metabolic syndrome
  • cell migration