Type I Interferons Suppress Anti-parasitic Immunity and Can Be Targeted to Improve Treatment of Visceral Leishmaniasis is a research paper published in Cell Reports (2020). On theSindex it has a DataRank of 0. It has been cited 75 times.
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National Institutes of Health
Grant: U19 AI074321
National Health and Medical Research Council
Grant: 1037304
Tropical Disease - immunity, pathogenesis and vaccine development: global translation
National Health and Medical Research Council
Grant: 1058685
Understanding immune regulation during parasitic diseases.
National Health and Medical Research Council
Grant: 1132975
Tropical diseases: Translating discoveries into better health
National Health and Medical Research Council
Grant: 1154265
Indian Council of Medical Research
Grant: LBSM-109/IF-14
NIAID NIH HHS
Grant: P50 AI074321
National Institutes of Health
Grant: 5U19AI074321-12
Visceral Leishmaniasis in Bihar State, India
Department of Science and Technology, Ministry of Science and Technology, India
Novartis
FWCI
7.87
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Protein regulation strategies of the mouse spleen in response to Babesia microti infection
Additional file 1 of Protein regulation strategies of the mouse spleen in response to Babesia microti infection
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 Protein regulation strategies of the mouse spleen in response to Babesia microti infection
Additional file 2 of Protein regulation strategies of the mouse spleen in response to Babesia microti infection