Platelet-monocyte interaction amplifies thromboinflammation through tissue factor signaling in COVID-19
暂无分享,去创建一个
Carolina Q. Sacramento | C. Righy | F. Bozza | P. Bozza | V. C. Soares | S. S. G. Dias | C. Sacramento | T. Souza | J. Temerozo | P. Kurtz | E. Hottz | R. Monteiro | Helder I. Nakaya | I. G. Azevedo-Quintanilha | L. Palhinha | Remy Martins-Gonçalves | Mariana M de Campos | L. Teixeira | I. Castro | Bruno Andrade | Isaclaudia G Azevedo-Quintanilha | S. S. Dias | H. Nakaya | J. R. Temerozo | Isaclaudia G. Azevedo-Quintanilha | Lívia Teixeira | T. M. Souza | Lohanna Palhinha | E. D. Hottz
[1] Nicola Clementi,et al. Unconventional CD147‐dependent platelet activation elicited by SARS‐CoV‐2 in COVID‐19 , 2021, Journal of Thrombosis and Haemostasis.
[2] J. Niu,et al. Platelets mediate inflammatory monocyte activation by SARS-CoV-2 spike protein , 2021, The Journal of clinical investigation.
[3] B. Souweine,et al. Severe COVID-19 is characterized by the co-occurrence of moderate cytokine inflammation and severe monocyte dysregulation , 2021, EBioMedicine.
[4] Kelly V. Ruggles,et al. Platelets contribute to disease severity in COVID‐19 , 2021, Journal of Thrombosis and Haemostasis.
[5] R. Maehr,et al. SARS-CoV-2 Initiates Programmed Cell Death in Platelets , 2021, Circulation research.
[6] F. Dèng,et al. SARS-CoV-2 interacts with platelets and megakaryocytes via ACE2-independent mechanism , 2021, Journal of Hematology & Oncology.
[7] Frances E. Muldoon,et al. Single-cell multi-omics analysis of the immune response in COVID-19 , 2021, Nature Medicine.
[8] F. Bozza,et al. SARS-CoV-2 engages inflammasome and pyroptosis in human primary monocytes , 2021, Cell Death Discovery.
[9] D. Andreini,et al. Platelet and Endothelial Activation as Potential Mechanisms Behind the Thrombotic Complications of COVID-19 Patients , 2021, JACC: Basic to Translational Science.
[10] P. Boor,et al. Vascular neutrophilic inflammation and immunothrombosis distinguish severe COVID‐19 from influenza pneumonia , 2020, Journal of Thrombosis and Haemostasis.
[11] E. De Robertis,et al. Association of Neutrophil Activation, More Than Platelet Activation, With Thrombotic Complications in Coronavirus Disease 2019 , 2020, The Journal of Infectious Diseases.
[12] A. Husain,et al. A Descriptive and Quantitative Immunohistochemical Study Demonstrating a Spectrum of Platelet Recruitment Patterns Across Pulmonary Infections Including COVID-19 , 2020, American journal of clinical pathology.
[13] P. Sorger,et al. Vascular Disease and Thrombosis in SARS-CoV-2-Infected Rhesus Macaques , 2020, Cell.
[14] L. Khalki,et al. Platelets Can Associate With SARS-CoV-2 RNA and Are Hyperactivated in COVID-19 , 2020, Circulation research.
[15] Robert A. Campbell,et al. Cytokine release syndrome in COVID-19: Innate immune, vascular, and platelet pathogenic factors differ in severity of disease and sex , 2020, Journal of leukocyte biology.
[16] Shenmin Zhang,et al. SARS-CoV-2 binds platelet ACE2 to enhance thrombosis in COVID-19 , 2020, Journal of Hematology & Oncology.
[17] Carolina Q. Sacramento,et al. Lipid droplets fuel SARS-CoV-2 replication and production of inflammatory mediators , 2020, bioRxiv.
[18] A. Harries,et al. Faculty Opinions recommendation of Pulmonary Vascular Endothelialitis, Thrombosis, and Angiogenesis in Covid-19. , 2020, Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature.
[19] G. Lippi,et al. Platelets Promote Thromboinflammation in SARS-CoV-2 Pneumonia , 2020, Arteriosclerosis, thrombosis, and vascular biology.
[20] E. Hottz,et al. Innate immune receptors in platelets and platelet‐leukocyte interactions , 2020, Journal of leukocyte biology.
[21] T. Lisman,et al. In vitro hypercoagulability and ongoing in vivo activation of coagulation and fibrinolysis in COVID‐19 patients on anticoagulation , 2020, Journal of Thrombosis and Haemostasis.
[22] M. Rudelius,et al. Immunothrombotic Dysregulation in COVID-19 Pneumonia Is Associated With Respiratory Failure and Coagulopathy , 2020, Circulation.
[23] Eric Song,et al. Longitudinal analyses reveal immunological misfiring in severe COVID-19 , 2020, Nature.
[24] C. Righy,et al. Platelet activation and platelet-monocyte aggregate formation trigger tissue factor expression in patients with severe COVID-19 , 2020, Blood.
[25] G. Zimmerman,et al. Dengue virus‐activated platelets modulate monocyte immunometabolic response through lipid droplet biogenesis and cytokine signaling , 2020, Journal of leukocyte biology.
[26] Robert A. Campbell,et al. Neutrophil extracellular traps contribute to immunothrombosis in COVID-19 acute respiratory distress syndrome , 2020, Blood.
[27] Robert A. Campbell,et al. Platelet gene expression and function in patients with COVID-19 , 2020, Blood.
[28] John D Lambris,et al. Complement and tissue factor-enriched neutrophil extracellular traps are key drivers in COVID-19 immunothrombosis , 2020, medRxiv.
[29] P. Horby,et al. Global outbreak research: harmony not hegemony , 2020, The Lancet Infectious Diseases.
[30] Axel Haverich,et al. Pulmonary Vascular Endothelialitis, Thrombosis, and Angiogenesis in Covid-19. , 2020, The New England journal of medicine.
[31] R. José,et al. COVID-19 cytokine storm: the interplay between inflammation and coagulation , 2020, The Lancet Respiratory Medicine.
[32] L. Beenen,et al. Incidence of venous thromboembolism in hospitalized patients with COVID‐19 , 2020, Journal of Thrombosis and Haemostasis.
[33] Q. Fan,et al. D‐dimer levels on admission to predict in‐hospital mortality in patients with Covid‐19 , 2020, Journal of Thrombosis and Haemostasis.
[34] M. Netea,et al. Complex Immune Dysregulation in COVID-19 Patients with Severe Respiratory Failure , 2020, Cell Host & Microbe.
[35] M. Dolhnikoff,et al. Pathological evidence of pulmonary thrombotic phenomena in severe COVID‐19 , 2020, Journal of Thrombosis and Haemostasis.
[36] D. Gommers,et al. Incidence of thrombotic complications in critically ill ICU patients with COVID-19 , 2020, Thrombosis Research.
[37] C. Eastin,et al. Risk Factors Associated With Acute Respiratory Distress Syndrome and Death in Patients With Coronavirus Disease 2019 Pneumonia in Wuhan, China , 2020, The Journal of Emergency Medicine.
[38] Dengju Li,et al. Anticoagulant treatment is associated with decreased mortality in severe coronavirus disease 2019 patients with coagulopathy , 2020, Journal of Thrombosis and Haemostasis.
[39] Tao Guo,et al. Cardiovascular Implications of Fatal Outcomes of Patients With Coronavirus Disease 2019 (COVID-19) , 2020, JAMA cardiology.
[40] W. Gong,et al. Association of Cardiac Injury With Mortality in Hospitalized Patients With COVID-19 in Wuhan, China. , 2020, JAMA cardiology.
[41] Xin Zhou,et al. Risk Factors Associated With Acute Respiratory Distress Syndrome and Death in Patients With Coronavirus Disease 2019 Pneumonia in Wuhan, China , 2020, The Journal of Emergency Medicine.
[42] J. Xiang,et al. Clinical course and risk factors for mortality of adult inpatients with COVID-19 in Wuhan, China: a retrospective cohort study , 2020, The Lancet.
[43] Dengju Li,et al. Abnormal coagulation parameters are associated with poor prognosis in patients with novel coronavirus pneumonia , 2020, Journal of Thrombosis and Haemostasis.
[44] J. Mcfadyen,et al. Platelets as Central Actors in Thrombosis—Reprising an Old Role and Defining a New Character , 2019, Seminars in Thrombosis and Hemostasis.
[45] G. Zimmerman,et al. Amicus or Adversary Revisited: Platelets in Acute Lung Injury and Acute Respiratory Distress Syndrome , 2018, American journal of respiratory cell and molecular biology.
[46] P. Bugert,et al. Role of CD40 and ADAMTS13 in von Willebrand factor-mediated endothelial cell–platelet–monocyte interaction , 2018, Proceedings of the National Academy of Sciences.
[47] J. Freedman,et al. Circulating Platelets as Mediators of Immunity, Inflammation, and Thrombosis , 2018, Circulation research.
[48] K. Uryu,et al. Platelet-Derived MRP-14 Induces Monocyte Activation in Patients With Symptomatic Peripheral Artery Disease. , 2018, Journal of the American College of Cardiology.
[49] N. Mackman,et al. Tissue Factor: An Essential Mediator of Hemostasis and Trigger of Thrombosis , 2018, Arteriosclerosis, thrombosis, and vascular biology.
[50] A. Sher,et al. Inflammatory monocytes expressing tissue factor drive SIV and HIV coagulopathy , 2017, Science Translational Medicine.
[51] Liang Zhu,et al. Leukocyte integrin Mac-1 regulates thrombosis via interaction with platelet GPIbα , 2017, Nature Communications.
[52] É. Boilard,et al. Nouvelle Cuisine: Platelets Served with Inflammation , 2015, The Journal of Immunology.
[53] Fernando A Bozza,et al. Platelet Activation and Apoptosis Modulate Monocyte Inflammatory Responses in Dengue , 2014, The Journal of Immunology.
[54] M. Tcharmtchi,et al. Coinfection with Staphylococcus aureus increases risk of severe coagulopathy in critically ill children with influenza A (H1N1) virus infection , 2012, Critical care medicine.
[55] W. Ruf,et al. The tick‐derived inhibitor Ixolaris prevents tissue factor signaling on tumor cells , 2012, Journal of thrombosis and haemostasis : JTH.
[56] J. Freedman,et al. Platelets and the immune continuum , 2011, Nature Reviews Immunology.
[57] M. Falagas,et al. Incidence, characteristics and outcomes of patients with severe community acquired-MRSA pneumonia , 2009, European Respiratory Journal.
[58] H. Versteeg,et al. Disulfide isomerization switches tissue factor from coagulation to cell signaling , 2006, Proceedings of the National Academy of Sciences.
[59] J. Ribeiro,et al. Antithrombotic properties of Ixolaris, a potent inhibitor of the extrinsic pathway of the coagulation cascade , 2006, Thrombosis and Haemostasis.
[60] P. Devos,et al. Diagnostic and Prognostic Values of Admission Procalcitonin Levels in Community–Acquired Pneumonia in an Intensive Care Unit , 2005, Infection.
[61] J. Sung,et al. Haematological manifestations in patients with severe acute respiratory syndrome: retrospective analysis , 2003, BMJ : British Medical Journal.
[62] A. Weyrich,et al. Activated platelets signal chemokine synthesis by human monocytes. , 1996, The Journal of clinical investigation.