The crosstalk between intestinal microbiota and MDSCs fuels colitis associated cancer development.
Hadas Ashkenazi-PreiserOr ReuvenAtara Uzan-YulzariSharon KomisarovRoy CirkinSondra C TurjemanCarmel EvenNira TwaikKerem Ben-MeirIvan MikulaLeonor Cohen-DanielYaron MeirowEli PikarskyYoram LouzounOmry KorenMichal BaniyashPublished in: Cancer research communications (2024)
Intestinal chronic inflammation is associated with microbial dysbiosis and accumulation of various immune cells including myeloid-derived suppressor cells (MDSCs), which profoundly impact the immune microenvironment, perturb homeostasis and increase the risk to develop colitis-associated colorectal cancer (CAC). However, the specific MDSCs-dysbiotic microbiota interactions and their collective impact on CAC development remain poorly understood. In this study, using a murine model of CAC, we demonstrate that CAC-bearing mice exhibit significantly elevated levels of highly immunosuppressive MDSCs, accompanied by microbiota alterations. Both MDSCs and bacteria that infiltrate the colon tissue and developing tumors can be found in close proximity, suggesting intricate MDSC-microbiota crosstalk within the tumor microenvironment. To investigate this phenomenon, we employed antibiotic treatment to disrupt MDSC-microbiota interactions. This intervention yielded a remarkable reduction in intestinal inflammation, decreased MDSC levels, and alleviated immunosuppression, all of which were associated with a significant reduction in tumor burden. Furthermore, we underscore the causative role of dysbiotic microbiota in the predisposition toward tumor development, highlighting their potential as biomarkers for predicting tumor load. We shed light on the intimate MDSCs-microbiota cross-talk, revealing how bacteria enhance MDSC suppressive features and activities, inhibit their differentiation into mature beneficial myeloid cells, and redirect some toward M2 macrophage phenotype. Collectively, this study uncovers the role of MDSC-bacteria crosstalk in impairing immune responses and promoting tumor growth, providing new insights into potential therapeutic strategies for CAC.
Keyphrases
- induced apoptosis
- oxidative stress
- immune response
- randomized controlled trial
- cell cycle arrest
- dendritic cells
- microbial community
- squamous cell carcinoma
- toll like receptor
- bone marrow
- cell death
- cell proliferation
- endoplasmic reticulum stress
- young adults
- skeletal muscle
- ulcerative colitis
- risk factors
- squamous cell
- climate change
- insulin resistance