CXCR4hi effector neutrophils in sickle cell anemia: potential role for elevated circulating serotonin (5-HT) in CXCR4hi neutrophil polarization
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[1] A. Tsung,et al. Hepatic Surgical Stress Promotes Systemic Immunothrombosis That Results in Distant Organ Injury , 2020, Frontiers in Immunology.
[2] E. V. de Paula,et al. Thromboinflammatory mechanisms in sickle cell disease - challenging the hemostatic balance. , 2020, Haematologica.
[3] S. Johnston,et al. Locally instructed CXCR4hi neutrophils trigger environment-driven allergic asthma through the release of neutrophil extracellular traps , 2019, Nature Immunology.
[4] B. Engelmann,et al. Platelet–Neutrophil Crosstalk in Atherothrombosis , 2019, Thrombosis and Haemostasis.
[5] C. Normann,et al. Platelet Serotonin Aggravates Myocardial Ischemia/Reperfusion Injury via Neutrophil Degranulation , 2019, Circulation.
[6] G. Lieschke,et al. The Neutrophil Nucleus: An Important Influence on Neutrophil Migration and Function , 2018, Front. Immunol..
[7] Wei Li,et al. Sorting machineries: how platelet-dense granules differ from α-granules , 2018, Bioscience reports.
[8] L. Koenderman,et al. Neutrophil phenotypes in health and disease , 2018, European journal of clinical investigation.
[9] D. Weatherall,et al. Sickle cell disease , 2018, Nature Reviews Disease Primers.
[10] B. Nieswandt,et al. Platelets release pathogenic serotonin and return to circulation after immune complex-mediated sequestration , 2018, Proceedings of the National Academy of Sciences.
[11] Ning Li,et al. Ligand-specific binding forces of LFA-1 and Mac-1 in neutrophil adhesion and crawling , 2017, Molecular biology of the cell.
[12] M. Gladwin,et al. Lung vaso-occlusion in sickle cell disease mediated by arteriolar neutrophil-platelet microemboli. , 2016, JCI insight.
[13] F. Krombach,et al. Aged neutrophils contribute to the first line of defense in the acute inflammatory response. , 2016, Blood.
[14] K. Káldi,et al. Circadian regulation of human peripheral neutrophils , 2016, Brain, Behavior, and Immunity.
[15] P. Frenette,et al. Neutrophils, platelets, and inflammatory pathways at the nexus of sickle cell disease pathophysiology. , 2016, Blood.
[16] L. Vasovic,et al. A novel inflammatory role for platelets in sickle cell disease , 2015, Platelets.
[17] R. Ware,et al. Hydroxyurea therapy for sickle cell anemia , 2015, Expert opinion on drug safety.
[18] J. Faith,et al. Neutrophil ageing is regulated by the microbiome , 2015, Nature.
[19] A. Poole,et al. Platelet secretion: From haemostasis to wound healing and beyond , 2015, Blood reviews.
[20] W. Khan,et al. The role of serotonin and its receptors in activation of immune responses and inflammation , 2015, Acta physiologica.
[21] J. P. McCoy,et al. Prominent role of platelets in the formation of circulating neutrophil-red cell heterocellular aggregates in sickle cell anemia , 2014, Haematologica.
[22] M. Cassatella,et al. Social networking of human neutrophils within the immune system. , 2014, Blood.
[23] R. Hebbel. Ischemia-reperfusion injury in sickle cell anemia: relationship to acute chest syndrome, endothelial dysfunction, arterial vasculopathy, and inflammatory pain. , 2014, Hematology/oncology clinics of North America.
[24] P. Goepfert,et al. Immune Suppression by Neutrophils in HIV-1 Infection: Role of PD-L1/PD-1 Pathway , 2014, PLoS pathogens.
[25] C. Weber,et al. Rhythmic Modulation of the Hematopoietic Niche through Neutrophil Clearance , 2013, Cell.
[26] M. Idzko,et al. PHAGOCYTES, GRANULOCYTES, AND MYELOPOIESIS Platelet serotonin promotes the recruitment of neutrophils to sites of acute inflammation in mice , 2017 .
[27] M. Bezerra,et al. Elevated plasma levels and platelet‐associated expression of the pro‐thrombotic and pro‐inflammatory protein, TNFSF14 (LIGHT), in sickle cell disease , 2012, British journal of haematology.
[28] H. Schumacher,et al. Platelets can enhance vascular permeability. , 2012, Blood.
[29] M. Gladwin,et al. Plasma thrombospondin‐1 is increased during acute sickle cell vaso‐occlusive events and associated with acute chest syndrome, hydroxyurea therapy, and lower hemolytic rates , 2012, American journal of hematology.
[30] D. Heo,et al. CD15+/CD16low human granulocytes from terminal cancer patients: granulocytic myeloid-derived suppressor cells that have suppressive function , 2012, Tumor Biology.
[31] A. Viola,et al. Serotonin-Mediated Tuning of Human Helper T Cell Responsiveness to the Chemokine CXCL12 , 2011, PloS one.
[32] P. Frenette,et al. HETEROTYPIC INTERACTIONS ENABLED BY POLARIZED NEUTROPHIL MICRODOMAINS MEDIATE THROMBO-INFLAMMATORY INJURY , 2009, Nature Medicine.
[33] N. Katoh,et al. Serotonin activates human monocytes and prevents apoptosis. , 2007, The Journal of investigative dermatology.
[34] S. Foster,et al. Selective Roles for Toll-Like Receptor (TLR)2 and TLR4 in the Regulation of Neutrophil Activation and Life Span1 , 2003, The Journal of Immunology.
[35] Johan W M Heemskerk,et al. Platelet Activation and Blood Coagulation , 2002, Thrombosis and Haemostasis.
[36] S. Israels,et al. Platelet dense granules: structure, function and implications for haemostasis. , 1999, Thrombosis research.
[37] R. Hebbel. Perspectives series: cell adhesion in vascular biology. Adhesive interactions of sickle erythrocytes with endothelium. , 1997, The Journal of clinical investigation.
[38] T. Wun,et al. Platelet activation and platelet-erythrocyte aggregates in patients with sickle cell anemia. , 1997, The Journal of laboratory and clinical medicine.
[39] M L Terrin,et al. Hydroxyurea and Sickle Cell Anemia Clinical Utility of a Myelosuppressive “Switching” Agent , 1996, Medicine.
[40] S. Schade,et al. Platelet activation during pain crisis in sickle cell anemia patients , 1989, American journal of hematology.
[41] A. Ferrante,et al. A rapid one-step procedure for purification of mononuclear and polymorphonuclear leukocytes from human blood using a modification of the Hypaque-Ficoll technique. , 1978, Journal of immunological methods.
[42] J. Belcher,et al. Inflammation in sickle cell disease. , 2018, Clinical hemorheology and microcirculation.
[43] Kevin S. O’Fallon,et al. Characterization of neutrophils and macrophages from ex vivo-cultured murine bone marrow for morphologic maturation and functional responses by imaging flow cytometry. , 2017, Methods.
[44] W. Erber,et al. Imaging flow cytometry in the assessment of leukocyte-platelet aggregates. , 2017, Methods.