Potent but transient immunosuppression of T-cells is a general feature of CD71+ erythroid cells.
Tomasz M GrzywaAnna SosnowskaZuzanna RydzynskaMichal LazniewskiDariusz PlewczyńskiKlaudia KlickaMilena Malecka-GieldowskaAnna Rodziewicz-LurzynskaOlga CiepielaMagdalena JustyniarskaPaulina PomperMarcin M GrzybowskiRoman BłaszczykMichał WęgrzynowiczAgnieszka TomaszewskaGrzegorz BasakJakub GolabDominika NowisPublished in: Communications biology (2021)
CD71+ erythroid cells (CECs) have been recently recognized in both neonates and cancer patients as potent immunoregulatory cells. Here, we show that in mice early-stage CECs expand in anemia, have high levels of arginase 2 (ARG2) and reactive oxygen species (ROS). In the spleens of anemic mice, CECs expansion-induced L-arginine depletion suppresses T-cell responses. In humans with anemia, CECs expand and express ARG1 and ARG2 that suppress T-cells IFN-γ production. Moreover, bone marrow CECs from healthy human donors suppress T-cells proliferation. CECs differentiated from peripheral blood mononuclear cells potently suppress T-cell activation, proliferation, and IFN-γ production in an ARG- and ROS-dependent manner. These effects are the most prominent for early-stage CECs (CD71highCD235adim cells). The suppressive properties disappear during erythroid differentiation as more differentiated CECs and mature erythrocytes lack significant immunoregulatory properties. Our studies provide a novel insight into the role of CECs in the immune response regulation.
Keyphrases
- induced apoptosis
- early stage
- immune response
- cell cycle arrest
- reactive oxygen species
- signaling pathway
- bone marrow
- cell death
- chronic kidney disease
- endothelial cells
- dendritic cells
- oxidative stress
- type diabetes
- machine learning
- mesenchymal stem cells
- squamous cell carcinoma
- metabolic syndrome
- deep learning
- radiation therapy
- endoplasmic reticulum stress
- inflammatory response
- brain injury
- high fat diet induced
- blood brain barrier
- anti inflammatory
- locally advanced
- induced pluripotent stem cells