The metabolite citraconate can preserve T cell stemness and suppress exhaustion, promoting antitumor immunity and responses to immunotherapies in mice.
Learn more in @SciImmunology: https://t.co/PSdpeu68S8
The May 2026 issue of Science #Immunology is out!
This month's cover depicts a cytotoxic #Tcell filled with citraconate molecules, which can enhance #antitumor responses and protect against exhaustion.
Learn about this research and more: https://t.co/8PGzy9jzKF
The May 2026 issue of Science #Immunology is out!
This month's cover depicts a cytotoxic #Tcell filled with citraconate molecules, which can enhance #antitumor responses and protect against exhaustion.
Learn about this research and more: https://t.co/8PGzy9jzKF
New in The Innovation Medicine! Dendritic cells instruct T cell anti-tumor immunity and immunotherapy response.
In this review, Xiao et al. discuss recent advancements in our understanding of DC biology under homeostatic conditions and within the tumor microenvironment with a particular emphasis on insights gained through single-cell multi-omics. Read more @Innov_Medicine
https://t.co/SpiG3MwGHn
#Medicine #DendriticCells #research
🔥@trendscancer🆙
✅Turning cold into hot: emerging strategies to fire up the tumor microenvironment
🎯Summary of the intrinsic, extrinsic, and systemic factors developing ‘cold’ tumors
👥Dr. Kaili Ma
#LCSM@OncoAlert#ICI
https://t.co/p3IW9hjSOi
Boosting exhausted T cells: Dr Daniel Utzschneider has identified how T cells can become exhausted from battling cancer, reducing the effectiveness of immunotherapy. He will use his CSL Centenary Fellowship to study these cells. @TheDohertyInst https://t.co/KytXyaExsR
Our study about ERAD and CD8+T cell survival and homeostasis was just out at Cellular & Molecular Immunology. Congratulations to all the authors and collaborators.