Microbiota-Associated HAF-EVs Regulate Monocytes by Triggering or Inhibiting Inflammasome Activation
暂无分享,去创建一个
G. Coata | F. Fallarino | T. Zelante | V. Talesa | P. Orvietani | I. Bellezza | M. Gargaro | E. Nunzi | R. Romani | I. Giardina | K. Sagini | Giorgia Manni | L. Mezzasoma | Gianfranco Di Renzo | A. di Michele
[1] Cassie Bennett,et al. Human amniotic fluid derived extracellular vesicles attenuate T cell immune response , 2022, Frontiers in Immunology.
[2] G. Son,et al. Expression of antimicrobial peptides in the amniotic fluid of women with cervical insufficiency , 2022, American journal of reproductive immunology.
[3] P. von Dadelszen,et al. Comprehensive human amniotic fluid metagenomics supports the sterile womb hypothesis , 2022, Scientific Reports.
[4] J. Galaz,et al. Does the Amniotic Fluid of Mice Contain a Viable Microbiota? , 2022, Frontiers in Immunology.
[5] A. Llorente,et al. Amniotic fluid stem cell‐derived extracellular vesicles are independent metabolic units capable of modulating inflammasome activation in THP‐1 cells , 2022, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[6] V. Friedewald,et al. Proof-of-concept trial of an amniotic fluid-derived extracellular vesicle biologic for treating high risk patients with mild-to-moderate acute COVID-19 infection , 2021, Biomaterials and Biosystems.
[7] F. Ahmad,et al. A perspective on the isolation and characterization of extracellular vesicles from different biofluids , 2021, RSC advances.
[8] Ghee Chuan Lai,et al. Microbial exposure during early human development primes fetal immune cells , 2021, Cell.
[9] B. Bussolati,et al. Angiogenic Properties of Placenta-Derived Extracellular Vesicles in Normal Pregnancy and in Preeclampsia , 2021, International journal of molecular sciences.
[10] M. Bellio,et al. Case Report: Administration of Amniotic Fluid-Derived Nanoparticles in Three Severely Ill COVID-19 Patients , 2021, Frontiers in Medicine.
[11] O. Parolini,et al. Extracellular Vesicles From Perinatal Cells for Anti-inflammatory Therapy , 2021, Frontiers in Bioengineering and Biotechnology.
[12] U. Jeschke,et al. Interleukin-1 beta is significantly upregulated in the decidua of spontaneous and recurrent miscarriage placentas. , 2021, Journal of reproductive immunology.
[13] A. Jezela-Stanek,et al. Post-Translational Modifications of Circulating Alpha-1-Antitrypsin Protein , 2020, International journal of molecular sciences.
[14] Luyang Yu,et al. Human Amniotic Epithelial Stem Cells: A Promising Seed Cell for Clinical Applications , 2020, International journal of molecular sciences.
[15] J. Jankovičová,et al. Tetraspanins, More than Markers of Extracellular Vesicles in Reproduction , 2020, International journal of molecular sciences.
[16] He He,et al. Exosomes Secreted From Bone Marrow Mesenchymal Stem Cells Attenuate Oxygen-Glucose Deprivation/Reoxygenation-Induced Pyroptosis in PC12 Cells by Promoting AMPK-Dependent Autophagic Flux , 2020, Frontiers in Cellular Neuroscience.
[17] Gavin M Douglas,et al. PICRUSt2 for prediction of metagenome functions , 2020, Nature Biotechnology.
[18] E. Elinav,et al. Interaction between microbiota and immunity in health and disease , 2020, Cell Research.
[19] E. Rackaityte,et al. Mechanisms of Fetal T Cell Tolerance and Immune Regulation , 2020, Frontiers in Immunology.
[20] R. Xavier,et al. Defining trained immunity and its role in health and disease , 2020, Nature Reviews Immunology.
[21] E. Crawford,et al. Viable bacterial colonization is highly limited in the human intestine in utero , 2020, Nature Medicine.
[22] N. Arsenijević,et al. Mesenchymal Stem Cell-Derived Exosomes and Other Extracellular Vesicles as New Remedies in the Therapy of Inflammatory Diseases , 2019, Cells.
[23] Yu Nee Lee,et al. Maturation of the Human Intestinal Immune System Occurs Early in Fetal Development. , 2019, Developmental cell.
[24] V. Talesa,et al. Extracellular Vesicles from Human Advanced-Stage Prostate Cancer Cells Modify the Inflammatory Response of Microenvironment-Residing Cells , 2019, Cancers.
[25] Francesco Asnicar,et al. Reproducible, interactive, scalable and extensible microbiome data science using QIIME 2 , 2019, Nature Biotechnology.
[26] Yuan He,et al. The NLRP3 Inflammasome: An Overview of Mechanisms of Activation and Regulation , 2019, International journal of molecular sciences.
[27] R. Romero,et al. In vivo evidence of inflammasome activation during spontaneous labor at term , 2019, The journal of maternal-fetal & neonatal medicine : the official journal of the European Association of Perinatal Medicine, the Federation of Asia and Oceania Perinatal Societies, the International Society of Perinatal Obstetricians.
[28] M. Eldh,et al. Immune Cell-Derived Extracellular Vesicles - Functions and Therapeutic Applications. , 2019, Trends in molecular medicine.
[29] J. Reems,et al. Processed human amniotic fluid retains its antibacterial activity , 2019, Journal of Translational Medicine.
[30] N. de Vries,et al. Human Fetal TNF‐&agr;‐Cytokine‐Producing CD4+ Effector Memory T Cells Promote Intestinal Development and Mediate Inflammation Early in Life , 2019, Immunity.
[31] S. Lim,et al. MSC exosomes alleviate temporomandibular joint osteoarthritis by attenuating inflammation and restoring matrix homeostasis. , 2019, Biomaterials.
[32] Hong Wang,et al. Exosomes derived from human umbilical cord mesenchymal stem cells alleviate acute liver failure by reducing the activity of the NLRP3 inflammasome in macrophages. , 2019, Biochemical and biophysical research communications.
[33] Wei Zhang,et al. Exosomes Derived From Mesenchymal Stem Cells Modulate miR-126 to Ameliorate Hyperglycemia-Induced Retinal Inflammation Via Targeting HMGB1. , 2019, Investigative ophthalmology & visual science.
[34] M. Schloter,et al. The Microbiome and Preterm Birth: A Change in Paradigm with Profound Implications for Pathophysiologic Concepts and Novel Therapeutic Strategies , 2018, BioMed research international.
[35] Yanning Liu,et al. AMSC-derived exosomes alleviate lipopolysaccharide/d-galactosamine-induced acute liver failure by miR-17-mediated reduction of TXNIP/NLRP3 inflammasome activation in macrophages , 2018, EBioMedicine.
[36] S. Wingett,et al. FastQ Screen: A tool for multi-genome mapping and quality control. , 2018, F1000Research.
[37] M. Smit,et al. Biogenesis and function of extracellular vesicles in cancer. , 2018, Pharmacology & therapeutics.
[38] C. Salomon,et al. Extracellular vesicles and their immunomodulatory functions in pregnancy , 2018, Seminars in Immunopathology.
[39] M. Ghahremani,et al. Mesenchymal stem cell-derived extracellular vesicles: novel frontiers in regenerative medicine , 2018, Stem Cell Research & Therapy.
[40] E. Mazzon,et al. Human periodontal ligament stem cells secretome from multiple sclerosis patients suppresses NALP3 inflammasome activation in experimental autoimmune encephalomyelitis , 2017, International journal of immunopathology and pharmacology.
[41] Jerry Kok Yen Chan,et al. Human fetal dendritic cells promote prenatal T-cell immune suppression through arginase-2 , 2017, Nature.
[42] F. Dignat-George,et al. Extracellular Vesicles in Angiogenesis , 2017, Circulation research.
[43] E. Castigli,et al. 3-Bromopyruvate treatment induces alterations of metabolic and stress-related pathways in glioblastoma cells. , 2017, Journal of proteomics.
[44] J. Reems,et al. Collection and characterization of amniotic fluid from scheduled C-section deliveries , 2016, Cell and Tissue Banking.
[45] M. Redinbo,et al. Structural Features Essential to the Antimicrobial Functions of Human SPLUNC1. , 2016, Biochemistry.
[46] Paul J. McMurdie,et al. DADA2: High resolution sample inference from Illumina amplicon data , 2016, Nature Methods.
[47] V. Talesa,et al. Atrial natriuretic peptide down-regulates LPS/ATP-mediated IL-1β release by inhibiting NF-kB, NLRP3 inflammasome and caspase-1 activation in THP-1 cells , 2016, Immunologic research.
[48] T. Todros,et al. Amniotic mesenchymal cells from pre‐eclamptic placentae maintain immunomodulatory features as healthy controls , 2015, Journal of cellular and molecular medicine.
[49] M. Lamkanfi,et al. Chronic TLR Stimulation Controls NLRP3 Inflammasome Activation through IL-10 Mediated Regulation of NLRP3 Expression and Caspase-8 Activation , 2015, Scientific Reports.
[50] U. Grohmann,et al. Stem cells from human amniotic fluid exert immunoregulatory function via secreted indoleamine 2,3-dioxygenase1 , 2015, Journal of cellular and molecular medicine.
[51] Iris Lee,et al. Placental Microbiome and Its Role in Preterm Birth. , 2014, NeoReviews.
[52] O. Parolini,et al. Amniotic Membrane Mesenchymal Cells-Derived Factors Skew T Cell Polarization Toward Treg and Downregulate Th1 and Th17 Cells Subsets , 2014, Stem Cell Reviews and Reports.
[53] Mauro Femminella,et al. Modeling CD40-Based Molecular Communications in Blood Vessels , 2014, IEEE Transactions on NanoBioscience.
[54] J. Petrosino,et al. The Placenta Harbors a Unique Microbiome , 2014, Science Translational Medicine.
[55] F. Shanahan,et al. Identification of a Unique Hybrid Macrophage-Polarization State following Recovery from Lipopolysaccharide Tolerance , 2014, The Journal of Immunology.
[56] P. Enkhbaatar,et al. The Immunobiology of Toll-Like Receptor 4 Agonists: From Endotoxin Tolerance to Immunoadjuvants , 2013, Shock.
[57] R. Hotchkiss,et al. Sepsis-induced immunosuppression: from cellular dysfunctions to immunotherapy , 2013, Nature Reviews Immunology.
[58] L. Gakhar,et al. SPLUNC1/BPIFA1 contributes to pulmonary host defense against Klebsiella pneumoniae respiratory infection. , 2013, The American journal of pathology.
[59] Nicholas A. Bokulich,et al. Quality-filtering vastly improves diversity estimates from Illumina amplicon sequencing , 2012, Nature Methods.
[60] C. S. St. Croix,et al. Multifunctional Role of Human SPLUNC1 in Pseudomonas aeruginosa Infection , 2012, Infection and Immunity.
[61] Olga M. Pena,et al. Endotoxin Tolerance Represents a Distinctive State of Alternative Polarization (M2) in Human Mononuclear Cells , 2011, The Journal of Immunology.
[62] Allan Konopka,et al. What is microbial community ecology? , 2009, The ISME Journal.
[63] Adam P. Arkin,et al. FastTree: Computing Large Minimum Evolution Trees with Profiles instead of a Distance Matrix , 2009, Molecular biology and evolution.
[64] J. Edwards,et al. Exploring the full spectrum of macrophage activation , 2008, Nature Reviews Immunology.
[65] O. Parolini,et al. Human Amnion Mesenchyme Harbors Cells with Allogeneic T‐Cell Suppression and Stimulation Capabilities , 2008, Stem cells.
[66] Simmie L. Foster,et al. Gene-specific control of inflammation by TLR-induced chromatin modifications , 2008, Nature.
[67] W. Gilbert,et al. Amniotic Fluid: Not Just Fetal Urine Anymore , 2005, Journal of Perinatology.
[68] F. Martinon,et al. Inflammatory Caspases Linking an Intracellular Innate Immune System to Autoinflammatory Diseases , 2004, Cell.
[69] Laurence Zitvogel,et al. Exosomes: composition, biogenesis and function , 2002, Nature Reviews Immunology.
[70] K. Katoh,et al. MAFFT: a novel method for rapid multiple sequence alignment based on fast Fourier transform. , 2002, Nucleic acids research.
[71] M. West,et al. Endotoxin tolerance: A review , 2002, Critical care medicine.