Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria
10.1371/journal.pone.0002608
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sg-nus-scholar.10635-1656062024-11-12T06:49:45Z Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria Togbe D. de Sousa P.L. Fauconnier M. Boissay V. Fick L. Scheu S. Pfeffer K. Menard R. Grau G.E. Doan B.-T. Beloeil J.C. Renia L. Hansen A.M. Ball H.J. Hunt N.H. Ryffel B. Quesniaux V.F.J. MICROBIOLOGY AND IMMUNOLOGY intercellular adhesion molecule 1 lymphotoxin lymphotoxin alpha beta lymphotoxin beta receptor perforin protein LIGHT tumor necrosis factor receptor 1 tumor necrosis factor receptor 2 lymphotoxin beta receptor tumor necrosis factor receptor 2 anemia animal experiment animal model article brain malaria brain microcirculation CD8+ T lymphocyte controlled study enzyme activation ischemia magnetic resonance angiography membrane damage mouse nonhuman nuclear magnetic resonance imaging parasitemia pathogenesis protein expression signal transduction animal genetics immunology malaria metabolism parasitology pathogenicity Plasmodium berghei stroma cell T lymphocyte transgenic mouse Mus Plasmodium berghei Animals Lymphotoxin beta Receptor Magnetic Resonance Imaging Malaria, Cerebral Mice Mice, Transgenic Models, Animal Plasmodium berghei Receptors, Tumor Necrosis Factor, Type II Signal Transduction Stromal Cells T-Lymphocytes 10.1371/journal.pone.0002608 PLoS ONE 3 7 e2608 2020-03-18T05:52:28Z 2020-03-18T05:52:28Z 2008 Article Togbe D., de Sousa P.L., Fauconnier M., Boissay V., Fick L., Scheu S., Pfeffer K., Menard R., Grau G.E., Doan B.-T., Beloeil J.C., Renia L., Hansen A.M., Ball H.J., Hunt N.H., Ryffel B., Quesniaux V.F.J. (2008). Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria. PLoS ONE 3 (7) : e2608. ScholarBank@NUS Repository. https://doi.org/10.1371/journal.pone.0002608 19326203 https://scholarbank.nus.edu.sg/handle/10635/165606 Public Library of Science Unpaywall 20200320 |
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intercellular adhesion molecule 1 lymphotoxin lymphotoxin alpha beta lymphotoxin beta receptor perforin protein LIGHT tumor necrosis factor receptor 1 tumor necrosis factor receptor 2 lymphotoxin beta receptor tumor necrosis factor receptor 2 anemia animal experiment animal model article brain malaria brain microcirculation CD8+ T lymphocyte controlled study enzyme activation ischemia magnetic resonance angiography membrane damage mouse nonhuman nuclear magnetic resonance imaging parasitemia pathogenesis protein expression signal transduction animal genetics immunology malaria metabolism parasitology pathogenicity Plasmodium berghei stroma cell T lymphocyte transgenic mouse Mus Plasmodium berghei Animals Lymphotoxin beta Receptor Magnetic Resonance Imaging Malaria, Cerebral Mice Mice, Transgenic Models, Animal Plasmodium berghei Receptors, Tumor Necrosis Factor, Type II Signal Transduction Stromal Cells T-Lymphocytes |
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intercellular adhesion molecule 1 lymphotoxin lymphotoxin alpha beta lymphotoxin beta receptor perforin protein LIGHT tumor necrosis factor receptor 1 tumor necrosis factor receptor 2 lymphotoxin beta receptor tumor necrosis factor receptor 2 anemia animal experiment animal model article brain malaria brain microcirculation CD8+ T lymphocyte controlled study enzyme activation ischemia magnetic resonance angiography membrane damage mouse nonhuman nuclear magnetic resonance imaging parasitemia pathogenesis protein expression signal transduction animal genetics immunology malaria metabolism parasitology pathogenicity Plasmodium berghei stroma cell T lymphocyte transgenic mouse Mus Plasmodium berghei Animals Lymphotoxin beta Receptor Magnetic Resonance Imaging Malaria, Cerebral Mice Mice, Transgenic Models, Animal Plasmodium berghei Receptors, Tumor Necrosis Factor, Type II Signal Transduction Stromal Cells T-Lymphocytes Togbe D. de Sousa P.L. Fauconnier M. Boissay V. Fick L. Scheu S. Pfeffer K. Menard R. Grau G.E. Doan B.-T. Beloeil J.C. Renia L. Hansen A.M. Ball H.J. Hunt N.H. Ryffel B. Quesniaux V.F.J. Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria |
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10.1371/journal.pone.0002608 |
author2 |
MICROBIOLOGY AND IMMUNOLOGY |
author_facet |
MICROBIOLOGY AND IMMUNOLOGY Togbe D. de Sousa P.L. Fauconnier M. Boissay V. Fick L. Scheu S. Pfeffer K. Menard R. Grau G.E. Doan B.-T. Beloeil J.C. Renia L. Hansen A.M. Ball H.J. Hunt N.H. Ryffel B. Quesniaux V.F.J. |
format |
Article |
author |
Togbe D. de Sousa P.L. Fauconnier M. Boissay V. Fick L. Scheu S. Pfeffer K. Menard R. Grau G.E. Doan B.-T. Beloeil J.C. Renia L. Hansen A.M. Ball H.J. Hunt N.H. Ryffel B. Quesniaux V.F.J. |
author_sort |
Togbe D. |
title |
Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria |
title_short |
Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria |
title_full |
Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria |
title_fullStr |
Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria |
title_full_unstemmed |
Both functional LTβ receptor and TNF receptor 2 are required for the development of experimental cerebral malaria |
title_sort |
both functional ltβ receptor and tnf receptor 2 are required for the development of experimental cerebral malaria |
publisher |
Public Library of Science |
publishDate |
2020 |
url |
https://scholarbank.nus.edu.sg/handle/10635/165606 |
_version_ |
1821232589996818432 |