Identification and function of a novel human memory-like NK cell population expressing CD160 in melioidosis
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K. Chotivanich | B. Kronsteiner | S. Dunachie | N. Chantratita | N. Saiprom | R. Phunpang | C. Morakot | Orawan Ottiwet | Rachan Janon | Anucha Preechanukul | Yuphin Kongphrai | Kitilak Rochaikun | Boonthanom Moonmueangsan | Soonthon Wapee | Natnaree Saiprom | S. Dunachie
[1] S. Ben Mkaddem,et al. CD160 receptor in CLL: Current state and future avenues , 2022, Frontiers in Immunology.
[2] Haibo Ding,et al. CD160 Promotes NK Cell Functions by Upregulating Glucose Metabolism and Negatively Correlates With HIV Disease Progression , 2022, Frontiers in Immunology.
[3] M. Becker-Hapak,et al. Memory-like Differentiation Enhances NK Cell Responses to Melanoma , 2021, Clinical Cancer Research.
[4] F. Borrego,et al. Metabolic changes of Interleukin-12/15/18-stimulated human NK cells , 2021, Scientific Reports.
[5] W. Chantratita,et al. Blood transcriptomics to characterize key biological pathways and identify biomarkers for predicting mortality in melioidosis , 2020, Emerging microbes & infections.
[6] C. Bock,et al. A discrete subset of epigenetically primed human NK cells mediates antigen-specific immune responses , 2020, Science Immunology.
[7] Jie Yuan,et al. lncRNA-CD160 decreases the immunity of CD8+ T cells through epigenetic mechanisms in hepatitis B virus infection , 2020, Oncology letters.
[8] N. Haigwood,et al. Human natural killer cells mediate adaptive immunity to viral antigens , 2019, Science Immunology.
[9] F. Chowdhury,et al. Diabetes alters immune response patterns to acute melioidosis in humans , 2019, European journal of immunology.
[10] Joseph C. Sun,et al. Cytomegalovirus Infection Drives Avidity Selection of Natural Killer Cells. , 2019, Immunity.
[11] Peter D. Crompton,et al. Adaptive NK cells in people exposed to Plasmodium falciparum correlate with protection from malaria , 2019, The Journal of experimental medicine.
[12] Amanda J. Lee,et al. The Dual Nature of Type I and Type II Interferons , 2018, Front. Immunol..
[13] Joseph C. Sun,et al. Transcription Factor IRF8 Orchestrates the Adaptive Natural Killer Cell Response , 2018, Immunity.
[14] N. Sarvetnick,et al. Interleukin (IL)-18 Binding Protein Deficiency Disrupts Natural Killer Cell Maturation and Diminishes Circulating IL-18 , 2017, Front. Immunol..
[15] A. Ashkar,et al. IL‐18/IL‐15/IL‐12 synergy induces elevated and prolonged IFN‐&ggr; production by ex vivo expanded NK cells which is not due to enhanced STAT4 activation , 2017, Molecular immunology.
[16] David M. Woods,et al. T cells lacking HDAC11 have increased effector functions and mediate enhanced alloreactivity in a murine model. , 2017, Blood.
[17] S. Peacock,et al. Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry for the identification of Burkholderia pseudomallei from Asia and Australia and differentiation between Burkholderia species , 2017, PloS one.
[18] R. Nurieva,et al. IL-21-dependent expansion of memory-like NK cells enhances protective immune responses against Mycobacterium tuberculosis , 2016, Mucosal Immunology.
[19] E. Riley,et al. Influenza Vaccination Generates Cytokine-Induced Memory-like NK Cells: Impact of Human Cytomegalovirus Infection , 2016, The Journal of Immunology.
[20] R. Xavier,et al. Trained immunity: A program of innate immune memory in health and disease , 2016, Science.
[21] A. El Andaloussi,et al. NK Cell-Mediated Regulation of Protective Memory Responses against Intracellular Ehrlichial Pathogens , 2016, PloS one.
[22] Xiaoying Fu,et al. Memory-Like Antigen-Specific Human NK Cells from TB Pleural Fluids Produced IL-22 in Response to IL-15 or Mycobacterium tuberculosis Antigens , 2016, PloS one.
[23] L. Lanier,et al. Natural killer cell memory in infection, inflammation and cancer , 2016, Nature Reviews Immunology.
[24] S. Hay,et al. Predicted global distribution of Burkholderia pseudomallei and burden of melioidosis , 2016, Nature Microbiology.
[25] Nicholas K. Brown,et al. CD160 is essential for NK-mediated IFN-γ production , 2015, The Journal of experimental medicine.
[26] L. Lanier,et al. Cytomegalovirus generates long-lived antigen-specific NK cells with diminished bystander activation to heterologous infection , 2014, The Journal of experimental medicine.
[27] C. Gysin,et al. Role for early-differentiated natural killer cells in infectious mononucleosis. , 2014, Blood.
[28] R. Xavier,et al. Epigenetic programming of monocyte-to-macrophage differentiation and trained innate immunity , 2014, Science.
[29] J. Lieberman,et al. Cytotoxic Cells Kill Intracellular Bacteria through Granulysin-Mediated Delivery of Granzymes , 2014, Cell.
[30] A. Hoffmaster,et al. Evaluation of a Latex Agglutination Assay for the Identification of Burkholderia pseudomallei and Burkholderia mallei , 2014, The American journal of tropical medicine and hygiene.
[31] Xiaoying Fu,et al. Human memory-like NK cells migrating to tuberculous pleural fluid via IP-10/CXCR3 and SDF-1/CXCR4 axis produce IFN-γ in response to Bacille Calmette Guerin. , 2013, Clinical immunology.
[32] A. Aulicino,et al. Interaction of Mycobacterium tuberculosis Cell Wall Components with the Human Natural Killer Cell Receptors NKp44 and Toll‐Like Receptor 2 , 2013, Scandinavian journal of immunology.
[33] J. Trowsdale,et al. NK cell responses to cytomegalovirus infection lead to stable imprints in the human KIR repertoire and involve activating KIRs. , 2013, Blood.
[34] G. Belz,et al. Role of PI3K/Akt signaling in memory CD8 T cell differentiation , 2013, Front. Immun..
[35] T. Fehniger,et al. Cytokine activation induces human memory-like NK cells. , 2012, Blood.
[36] Jeffrey S. Miller,et al. Human Cytomegalovirus (CMV)-Induced Memory-like NKG2C+ NK Cells Are Transplantable and Expand In Vivo in Response to Recipient CMV Antigen , 2012, The Journal of Immunology.
[37] N. Day,et al. Melioidosis Vaccines: A Systematic Review and Appraisal of the Potential to Exploit Biodefense Vaccines for Public Health Purposes , 2012, PLoS neglected tropical diseases.
[38] Xiaoying Fu,et al. Human natural killer cells expressing the memory‐associated marker CD45RO from tuberculous pleurisy respond more strongly and rapidly than CD45RO− natural killer cells following stimulation with interleukin‐12 , 2011, Immunology.
[39] P. J. Norris,et al. Expansion of a unique CD57+NKG2Chi natural killer cell subset during acute human cytomegalovirus infection , 2011, Proceedings of the National Academy of Sciences.
[40] Todd M. Allen,et al. HIV-1 adaptation to NK cell mediated immune pressure , 2011, Nature.
[41] B. Haynes,et al. Thy1+ Nk Cells from Vaccinia Virus-Primed Mice Confer Protection against Vaccinia Virus Challenge in the Absence of Adaptive Lymphocytes , 2011, PLoS pathogens.
[42] E. Riley,et al. A distinct subset of human NK cells expressing HLA-DR expand in response to IL-2 and can aid immune responses to BCG , 2011, European journal of immunology.
[43] M. Smyth,et al. Activating and inhibitory receptors of natural killer cells , 2011, Immunology and cell biology.
[44] M. Caligiuri,et al. Innate or Adaptive Immunity? The Example of Natural Killer Cells , 2011, Science.
[45] A. Rao,et al. Runx3 and T-box proteins cooperate to establish the transcriptional program of effector CTLs , 2009, The Journal of experimental medicine.
[46] Joseph C. Sun,et al. Adaptive Immune Features of Natural Killer Cells , 2009, Nature.
[47] L. Moretta,et al. Human NK cells directly recognize Mycobacterium bovis via TLR2 and acquire the ability to kill monocyte-derived DC. , 2008, International immunology.
[48] Alberto Mantovani,et al. Macrophage receptors implicated in the "adaptive" form of innate immunity. , 2007, Microbes and infection.
[49] S. Valitutti,et al. CD160-activating NK cell effector functions depend on the phosphatidylinositol 3-kinase recruitment. , 2007, International immunology.
[50] N. Van Rooijen,et al. Role of Inducible Nitric Oxide Synthase and NADPH Oxidase in Early Control of Burkholderia pseudomallei Infection in Mice , 2006, Infection and Immunity.
[51] A. Porgador,et al. Role of NK Cell-Activating Receptors and Their Ligands in the Lysis of Mononuclear Phagocytes Infected with an Intracellular Bacterium1 , 2005, The Journal of Immunology.
[52] P. Le Bouteiller,et al. Cutting Edge: Engagement of CD160 by its HLA-C Physiological Ligand Triggers a Unique Cytokine Profile Secretion in the Cytotoxic Peripheral Blood NK Cell Subset1 , 2004, The Journal of Immunology.
[53] R. Vanacore,et al. Functional characterization of human natural killer cells responding to Mycobacterium bovis bacille Calmette‐Guérin , 2004, Immunology.
[54] M. Gadina,et al. Cytokine regulation of IL‐12 receptor β2 expression: differential effects on human T and NK cells , 2000 .
[55] G. Bancroft,et al. Obligatory Role of Gamma Interferon for Host Survival in a Murine Model of Infection with Burkholderia pseudomallei , 1999, Infection and Immunity.
[56] T. Hamaoka. [Immunological memory cells]. , 1969, Saishin igaku. Modern medicine.
[57] A. Telenti,et al. Critical role for the chemokine receptor CXCR 6 in NK cell – mediated antigen-specific memory of haptens and viruses , 2010 .