Stroke-derived neutrophils demonstrate higher formation potential and impaired resolution of CD66b + driven neutrophil extracellular traps
暂无分享,去创建一个
B. Pleger | B. Pintea | H. Käfferlein | R. Chapot | A. Datsi | K. Gousias | M. Markou | Sabine Plöttner | K. Lang | Laura Piotrowski | T. Köster | Isabelle Kohtz | Ramon Martinez | M. Müller | Roland Fried
[1] R. Sciot,et al. Detailed histological analysis of a thrombectomy-resistant ischemic stroke thrombus: a case report , 2021, Thrombosis Journal.
[2] M. Filippi,et al. Cerebral thrombi of cardioembolic etiology have an increased content of neutrophil extracellular traps , 2021, Journal of the Neurological Sciences.
[3] R. Ariëns,et al. Thrombus Composition and Efficacy of Thrombolysis and Thrombectomy in Acute Ischemic Stroke , 2021, Stroke.
[4] W. Eilenberg,et al. Neutrophil Extracellular Traps and Their Implications in Cardiovascular and Inflammatory Disease , 2021, International journal of molecular sciences.
[5] Jiangguo Lin,et al. Insights Into Immunothrombosis: The Interplay Among Neutrophil Extracellular Trap, von Willebrand Factor, and ADAMTS13 , 2020, Frontiers in Immunology.
[6] C. Zimmer,et al. Thrombus NET content is associated with clinical outcome in stroke and myocardial infarction , 2020, Neurology.
[7] B. Baban,et al. Neutrophil extracellular traps exacerbate neurological deficits after traumatic brain injury , 2020, Science Advances.
[8] V. Novakovic,et al. Interactions between neutrophil extracellular traps and activated platelets enhance procoagulant activity in acute stroke patients with ICA occlusion , 2020, EBioMedicine.
[9] A. Manda-Handzlik,et al. The Brain Entangled: The Contribution of Neutrophil Extracellular Traps to the Diseases of the Central Nervous System , 2019, Cells.
[10] I. Lizasoain,et al. Pharmacological Modulation of Neutrophil Extracellular Traps Reverses Thrombotic Stroke tPA (Tissue-Type Plasminogen Activator) Resistance. , 2019, Stroke.
[11] E. Levy,et al. Overview of Mechanical Thrombectomy Techniques. , 2019, Neurosurgery.
[12] L. Csiba,et al. Markers of Coagulation and Fibrinolysis Predicting the Outcome of Acute Ischemic Stroke Thrombolysis Treatment: A Review of the Literature , 2019, Front. Neurol..
[13] A. Moore,et al. Immunomodulatory Therapeutic Strategies in Stroke , 2019, Front. Pharmacol..
[14] D. Zheng,et al. Combined utility of white blood cell count and blood glucose for predicting in-hospital outcomes in acute ischemic stroke , 2019, Journal of Neuroinflammation.
[15] S. D. De Meyer,et al. Neutrophil Extracellular Traps in Arterial and Venous Thrombosis , 2019, Seminars in Thrombosis and Hemostasis.
[16] C. Sudlow,et al. Genetically Determined Levels of Circulating Cytokines and Risk of Stroke: Role of Monocyte Chemoattractant Protein-1 , 2019, Circulation.
[17] A. Zychlinsky,et al. The role of neutrophil extracellular traps in rheumatic diseases , 2018, Nature Reviews Rheumatology.
[18] N. Maugeri,et al. The Neutrophil’s Choice: Phagocytose vs Make Neutrophil Extracellular Traps , 2018, Front. Immunol..
[19] J. Michel,et al. Thrombus Neutrophil Extracellular Traps Content Impair tPA-Induced Thrombolysis in Acute Ischemic Stroke , 2018, Stroke.
[20] A. Tsung,et al. Deep vein thrombosis in mice is regulated by platelet HMGB1 through release of neutrophil-extracellular traps and DNA , 2018, Scientific Reports.
[21] V. Papayannopoulos. Neutrophil extracellular traps in immunity and disease , 2017, Nature Reviews Immunology.
[22] A. Dressel,et al. Thrombosis, Neuroinflammation, and Poststroke Infection: The Multifaceted Role of Neutrophils in Stroke , 2017, Journal of immunology research.
[23] Catherine Oppenheim,et al. Mechanical thrombectomy after intravenous alteplase versus alteplase alone after stroke (THRACE): a randomised controlled trial , 2016, The Lancet Neurology.
[24] J. Baron,et al. Incidence and Predictors of Early Recanalization After Intravenous Thrombolysis: A Systematic Review and Meta-Analysis , 2016, Stroke.
[25] P. Henke,et al. The Emerging Role of NETs in Venous Thrombosis and Immunothrombosis , 2016, Front. Immunol..
[26] C. Kleinschnitz,et al. Regulatory T Cells in Post-stroke Immune Homeostasis , 2016, Translational Stroke Research.
[27] D. Wagner,et al. NETosis promotes cancer-associated arterial microthrombosis presenting as ischemic stroke with troponin elevation. , 2016, Thrombosis research.
[28] K. Berger,et al. Comparison of outcome and interventional complication rate in patients with acute stroke treated with mechanical thrombectomy with and without bridging thrombolysis , 2016, Journal of NeuroInterventional Surgery.
[29] D. Gill,et al. Dynamics of T cell responses after stroke. , 2016, Current opinion in pharmacology.
[30] X. Xiong,et al. T Cells and Cerebral Ischemic Stroke , 2015, Neurochemical Research.
[31] K. Preissner,et al. Coronary neutrophil extracellular trap burden and deoxyribonuclease activity in ST-elevation acute coronary syndrome are predictors of ST-segment resolution and infarct size. , 2015, Circulation research.
[32] F. Sharp,et al. Targeting Neutrophils in Ischemic Stroke: Translational Insights from Experimental Studies , 2015, Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism.
[33] Á. Chamorro,et al. Neutrophil recruitment to the brain in mouse and human ischemic stroke , 2015, Acta Neuropathologica.
[34] F. Campos,et al. Regulatory T cells modulate inflammation and reduce infarct volume in experimental brain ischaemia , 2014, Journal of cellular and molecular medicine.
[35] D. Wagner,et al. Thrombosis: tangled up in NETs. , 2014, Blood.
[36] J. Monteseirín,et al. Immunotherapy Reduces Allergen-Mediated CD66b Expression and Myeloperoxidase Levels on Human Neutrophils from Allergic Patients , 2014, PloS one.
[37] F. Silver,et al. White blood cell count is an independent predictor of outcomes after acute ischaemic stroke , 2014, European journal of neurology.
[38] C. Carmona-Rivera,et al. Low-density granulocytes: a distinct class of neutrophils in systemic autoimmunity , 2013, Seminars in Immunopathology.
[39] Á. Chamorro,et al. The immunology of acute stroke , 2012, Nature Reviews Neurology.
[40] A. Walch,et al. Monocytes, neutrophils, and platelets cooperate to initiate and propagate venous thrombosis in mice in vivo , 2012, The Journal of experimental medicine.
[41] P. Hofman,et al. Predictive clinical outcome of the intratumoral CD66b‐positive neutrophil‐to‐CD8‐positive T‐cell ratio in patients with resectable nonsmall cell lung cancer , 2012, Cancer.
[42] J. Roth. Recombinant Tissue Plasminogen Activator for the Treatment of Acute Ischemic Stroke , 2011, Proceedings.
[43] Matthias Kretzler,et al. Netting Neutrophils Induce Endothelial Damage, Infiltrate Tissues, and Expose Immunostimulatory Molecules in Systemic Lupus Erythematosus , 2011, The Journal of Immunology.
[44] J. Hartwig,et al. Extracellular DNA traps promote thrombosis , 2010, Proceedings of the National Academy of Sciences.
[45] T. Sobrino,et al. Inflammatory and Neuroimmunomodulatory Changes in Acute Cerebral Ischemia , 2009, Cerebrovascular Diseases.
[46] M. Hennerici,et al. Classification of Stroke Subtypes , 2009, Cerebrovascular Diseases.
[47] S. Diamond,et al. Neutrophil Isolation Protocol , 2008, Journal of visualized experiments : JoVE.
[48] M. Mattson,et al. Stroke and T-cells , 2005, NeuroMolecular Medicine.
[49] G. Boysen,et al. C-Reactive Protein and White Blood Cell Count Increases in the First 24 Hours after Acute Stroke , 2004, Cerebrovascular Diseases.
[50] David Lee Gordon,et al. Classification of Subtype of Acute Ischemic Stroke: Definitions for Use in a Multicenter Clinical Trial , 1993, Stroke.
[51] Jwa-Kyung Kim,et al. Prognostic role of circulating neutrophil extracellular traps levels for long-term mortality in new end-stage renal disease patients. , 2019, Clinical immunology.
[52] A. R.,et al. Review of literature , 1969, American Potato Journal.
[53] Hilde van der Togt,et al. Publisher's Note , 2003, J. Netw. Comput. Appl..