CD8+ T cells and human cerebral malaria: a shifting episteme is a research paper published in Journal of Clinical Investigation (2020). On theSindex it has a DataRank of 0. It has been cited 35 times.
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NIAID NIH HHS
Grant: U19 AI089676
Medical Research Council
Grant: MR/S009450/1
NIAID NIH HHS
Grant: R21 AI142472
Fields of Study
MeSH Terms
Additional file 1 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 1 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 2 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 2 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 3 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 3 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 4 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 4 of Experimental Babesia rossi infection induces hemolytic, metabolic, and viral response pathways in the canine host
Additional file 2 of Neurons upregulate PD-L1 via IFN/STAT1/IRF1 to alleviate damage by CD8+ T cells in cerebral malaria
Additional file 2 of Neurons upregulate PD-L1 via IFN/STAT1/IRF1 to alleviate damage by CD8+ T cells in cerebral malaria
Additional file 1 of Neurons upregulate PD-L1 via IFN/STAT1/IRF1 to alleviate damage by CD8+ T cells in cerebral malaria
Additional file 1 of Neurons upregulate PD-L1 via IFN/STAT1/IRF1 to alleviate damage by CD8+ T cells in cerebral malaria