Genome-wide transcriptional profiling of pulmonary functional sequelae in ARDS- secondary to SARS-CoV-2 infection
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J. Caballero | J. Riera | D. García-Gasulla | G. Torres | F. Barbé | I. Benítez | R. Ferrer | Ó. Peñuelas | C. Barbera | D. de Gonzalo-Calvo | A. Ceccato | J. Bermejo‐Martin | I. Larráyoz | L. Fernández-Barat | R. Menéndez | T. Belmonte | A. Moncusí-Moix | Ana Motos | C. Gort-Paniello | S. Santisteve | A. Torres | Jessica González | Rafael Peláez | María C. García-Hidalgo | Manel Pérez-Pons | M. Molinero | Faty Seck | M. Aguilà | P. Carmona | Jose Ángel Lorente-Balanza | J. Bermejo-Martín | M. C. García-Hidalgo | M. Pérez-Pons | F. Seck | A. Motos | José Ángel Lorente-Balanza
[1] J. Caballero,et al. Identification of circulating microRNA profiles associated with pulmonary function and radiologic features in survivors of SARS-CoV-2-induced ARDS , 2022, Emerging microbes & infections.
[2] J. Caballero,et al. Proteomic profiling of lung diffusion impairment in the recovery stage of SARS‐CoV‐2–induced ARDS , 2022, Clinical and translational medicine.
[3] M. Mansour,et al. Implications of Using Host Response-Based Molecular Diagnostics on the Management of Bacterial and Viral Infections: A Review , 2022, Frontiers in Medicine.
[4] I. Larráyoz,et al. Predictive Biomarkers of Age-Related Macular Degeneration Response to Anti-VEGF Treatment , 2021, Journal of personalized medicine.
[5] J. F. Cerna-Cortes,et al. TBC1D10C is a cytoskeletal functional linker that modulates cell spreading and phagocytosis in macrophages , 2021, Scientific Reports.
[6] N. Heaton,et al. ETV7 limits antiviral gene expression and control of influenza viruses , 2021, Science Signaling.
[7] G. Condorelli,et al. Dissecting the transcriptome in cardiovascular disease , 2021, Cardiovascular research.
[8] A. V. van Wijnen,et al. Identification of novel therapeutic targets for contrast induced acute kidney injury (CI-AKI): alpha blockers as a therapeutic strategy for CI-AKI. , 2021, Translational research : the journal of laboratory and clinical medicine.
[9] Pilar Ricart Martí,et al. Pulmonary Function and Radiologic Features in Survivors of Critical COVID-19 , 2021, Chest.
[10] J. Olalla,et al. Pulmonary long-term consequences of COVID-19 infections after hospital discharge , 2021, Clinical Microbiology and Infection.
[11] J. A. Guerra-Assunção,et al. Blood transcriptional biomarkers of acute viral infection for detection of pre-symptomatic SARS-CoV-2 infection: a nested, case-control diagnostic accuracy study , 2021, The Lancet Microbe.
[12] L. Ebner,et al. Pulmonary function and radiological features 4 months after COVID-19: first results from the national prospective observational Swiss COVID-19 lung study , 2021, European Respiratory Journal.
[13] Joshua F. McMichael,et al. Integration of the Drug–Gene Interaction Database (DGIdb 4.0) with open crowdsource efforts , 2020, bioRxiv.
[14] F. Barbé,et al. CIBERESUCICOVID: un proyecto estratégico para una mejor comprensión y manejo clínico de la COVID-19 en pacientes críticos , 2020, Archivos de Bronconeumología.
[15] N. Zhang,et al. Growth arrest–specific 2 protein family: Structure and function , 2020, Cell proliferation.
[16] M. Dunning,et al. Whole-Blood RNA Profiles Associated with Pulmonary Arterial Hypertension and Clinical Outcome , 2020, American journal of respiratory and critical care medicine.
[17] L. Ware,et al. The long-lasting effects of the acute respiratory distress syndrome , 2020, Expert review of respiratory medicine.
[18] J. Lou,et al. Downregulation of SNRPG induces cell cycle arrest and sensitizes human glioblastoma cells to temozolomide by targeting Myc through a p53-dependent signaling pathway , 2020, Cancer biology & medicine.
[19] I. Rosas,et al. An RNA-seq primer for pulmonologists , 2019, European Respiratory Journal.
[20] Yong Zhang,et al. BAG2 ameliorates endoplasmic reticulum stress-induced cell apoptosis in Mycobacterium tuberculosis-infected macrophages through selective autophagy. , 2019, Autophagy.
[21] M. Hecker. Blood transcriptome profiling captures dysregulated pathways and response to treatment in neuroimmunological disease , 2019, EBioMedicine.
[22] W. Ciszewski,et al. TUBB4B Downregulation Is Critical for Increasing Migration of Metastatic Colon Cancer Cells , 2019, Cells.
[23] G. Salvesen,et al. Cathepsin G Inhibition by Serpinb1 and Serpinb6 Prevents Programmed Necrosis in Neutrophils and Monocytes and Reduces GSDMD-Driven Inflammation. , 2019, Cell reports.
[24] Ash A. Alizadeh,et al. Determining cell-type abundance and expression from bulk tissues with digital cytometry , 2019, Nature Biotechnology.
[25] M. Matthay,et al. Pathogenesis of Acute Respiratory Distress Syndrome , 2019, Seminars in Respiratory and Critical Care Medicine.
[26] Yongyan Wu,et al. MicroRNA-27b Modulates Inflammatory Response and Apoptosis during Mycobacterium tuberculosis Infection , 2018, The Journal of Immunology.
[27] Wiggert A. van Cappellen,et al. Targeted Apoptosis of Senescent Cells Restores Tissue Homeostasis in Response to Chemotoxicity and Aging , 2017, Cell.
[28] C. Weyand,et al. Aging of the Immune System. Mechanisms and Therapeutic Targets. , 2016, Annals of the American Thoracic Society.
[29] Qian Zheng,et al. BAG2 structure, function and involvement in disease , 2016, Cellular & Molecular Biology Letters.
[30] T. Rice,et al. Recovery and outcomes after the acute respiratory distress syndrome (ARDS) in patients and their family caregivers , 2016, Intensive Care Medicine.
[31] Marie-Agnès Dillies,et al. SARTools: A DESeq2- and EdgeR-Based R Pipeline for Comprehensive Differential Analysis of RNA-Seq Data , 2015, bioRxiv.
[32] W. Huber,et al. Moderated estimation of fold change and dispersion for RNA-seq data with DESeq2 , 2014, Genome Biology.
[33] R. Kammerer,et al. GAS2-like proteins mediate communication between microtubules and actin through interactions with end-binding proteins , 2014, Journal of Cell Science.
[34] Henning Hermjakob,et al. The Reactome pathway knowledgebase , 2013, Nucleic Acids Res..
[35] Arthur S Slutsky,et al. Acute Respiratory Distress Syndrome The Berlin Definition , 2012 .
[36] Juan Cabello,et al. Molecular Effects of Doxycycline Treatment on Pterygium as Revealed by Massive Transcriptome Sequencing , 2012, PloS one.
[37] G. Dorn,et al. GRK2-Dependent S1PR1 Desensitization Is Required for Lymphocytes to Overcome Their Attraction to Blood , 2011, Science.
[38] M. Kahn,et al. Neutrophil transmigration triggers repair of the lung epithelium via β-catenin signaling , 2011, Proceedings of the National Academy of Sciences.
[39] Christopher M Waters,et al. Epithelial repair mechanisms in the lung. , 2010, American journal of physiology. Lung cellular and molecular physiology.
[40] Elizabeth A Stuart,et al. Matching methods for causal inference: A review and a look forward. , 2010, Statistical science : a review journal of the Institute of Mathematical Statistics.
[41] M. Fey,et al. Induction of Bim limits cytokine-mediated prolonged survival of neutrophils , 2009, Cell Death and Differentiation.
[42] A. Strasser,et al. Apoptosis Regulators Fas and Bim Cooperate in Shutdown of Chronic Immune Responses and Prevention of Autoimmunity , 2008, Immunity.
[43] P. Marrack,et al. Apoptosis and the homeostatic control of immune responses. , 2007, Current opinion in immunology.
[44] C. Liew,et al. The peripheral-blood transcriptome: new insights into disease and risk assessment. , 2007, Trends in molecular medicine.
[45] A. Villunger,et al. Apoptosis in Activated T Cells – What Are the Triggers, and What the Signal Transducers? , 2006, Cell cycle.
[46] Jun Ma,et al. The peripheral blood transcriptome dynamically reflects system wide biology: a potential diagnostic tool. , 2006, The Journal of laboratory and clinical medicine.
[47] J. Hankinson,et al. Interpretative strategies for lung function tests , 2005, European Respiratory Journal.
[48] H. Hsu,et al. Impaired apoptosis and immune senescence – cause or effect? , 2005, Immunological reviews.
[49] J. Pitcher,et al. G protein-coupled receptor kinase 2-mediated phosphorylation of ezrin is required for G protein-coupled receptor-dependent reorganization of the actin cytoskeleton. , 2005, Molecular biology of the cell.
[50] E. Russi,et al. Long-term assessment of lung function in survivors of severe ARDS. , 2003, Chest.
[51] Leo Breiman,et al. Random Forests , 2001, Machine Learning.
[52] C. Schneider,et al. Caspase-3 and caspase-7 but not caspase-6 cleave Gas2 in vitro: implications for microfilament reorganization during apoptosis. , 1999, Journal of cell science.
[53] R. Chambers,et al. Acute Respiratory Distress Syndrome , 2017, The New England journal of medicine.
[54] Junjie Chen,et al. PNUTS functions as a proto-oncogene by sequestering PTEN. , 2013, Cancer research.
[55] B. Grubeck‐Loebenstein,et al. The aging of the immune system. , 2002, Advances in immunology.