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FFAR2 expressing myeloid-derived suppressor cells drive cancer immunoevasion.

Zeda ZhaoJuliang QinYing QianChenshen HuangXiaohong LiuNing WangLiqin LiYuqing ChaoBinghe TanNa ZhangMin QianDali LiMingyao LiuBing Du
Published in: Journal of hematology & oncology (2024)
Altogether, our results demonstrate that the acetic acids/FFAR2 axis enhances MDSCs mediated immunosuppression through Gαq/calcium/PPAR-γ/Arg1 signaling pathway, thus contributing to cancer progression. Therefore, FFAR2 may serve as a potential new target to eliminate pathologically activated MDSCs and reverse immunosuppressive tumor microenvironment, which has great potential in improving clinical outcomes of cancer immunotherapy.
Keyphrases
  • papillary thyroid
  • signaling pathway
  • induced apoptosis
  • pi k akt
  • cell cycle arrest
  • human health
  • insulin resistance
  • skeletal muscle
  • risk assessment
  • endoplasmic reticulum stress
  • young adults
  • cell proliferation