Extracellular Vesicles: Exosomes and Microvesicles, Integrators of Homeostasis.
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[1] C. Parent,et al. Exosomes mediate LTB4 release during neutrophil chemotaxis , 2021, PLoS biology.
[2] F. Del Bene,et al. Live Tracking of Inter-organ Communication by Endogenous Exosomes In Vivo. , 2019, Developmental cell.
[3] Aijun Wang,et al. Engineering mesenchymal stem cells to improve their exosome efficacy and yield for cell-free therapy , 2018, Journal of extracellular vesicles.
[4] V. Fast,et al. Spheroids of cardiomyocytes derived from human-induced pluripotent stem cells improve recovery from myocardial injury in mice. , 2018, American journal of physiology. Heart and circulatory physiology.
[5] Filippo Del Bene,et al. Live tracking of inter-organ communication by endogenous exosomes in vivo , 2018, bioRxiv.
[6] R. Crowder,et al. Long-range function of secreted small nucleolar RNAs that direct 2′-O-methylation , 2018, The Journal of Biological Chemistry.
[7] Alissa M. Weaver,et al. Directed migration: Cells navigate by extracellular vesicles , 2018, The Journal of cell biology.
[8] C. Parent,et al. Extracellular vesicles direct migration by synthesizing and releasing chemotactic signals , 2018, The Journal of cell biology.
[9] K. Bennett,et al. Lymphatic exosomes promote dendritic cell migration along guidance cues , 2018, The Journal of cell biology.
[10] J. Bixby,et al. Reactive oxygen species regulate axonal regeneration through the release of exosomal NADPH oxidase 2 complexes into injured axons , 2018, Nature Cell Biology.
[11] J. Bixby,et al. Publisher Correction: Reactive oxygen species regulate axonal regeneration through the release of exosomal NADPH oxidase 2 complexes into injured axons , 2018, Nature Cell Biology.
[12] J. Bixby,et al. Publisher Correction: Reactive oxygen species regulate axonal regeneration through the release of exosomal NADPH oxidase 2 complexes into injured axons , 2018, Nature Cell Biology.
[13] J. Neefjes,et al. Correction: Quantifying exosome secretion from single cells reveals a modulatory role for GPCR signaling , 2018, Journal of Cell Biology.
[14] Graça Raposo,et al. Shedding light on the cell biology of extracellular vesicles , 2018, Nature Reviews Molecular Cell Biology.
[15] D. James,et al. Extracellular Vesicles Provide a Means for Tissue Crosstalk during Exercise. , 2018, Cell metabolism.
[16] J. Côté,et al. Atg5 Disassociates the V1V0-ATPase to Promote Exosome Production and Tumor Metastasis Independent of Canonical Macroautophagy. , 2017, Developmental cell.
[17] Lining Zhang,et al. Exosomes From Adipose-Derived Stem Cells Attenuate Adipose Inflammation and Obesity Through Polarizing M2 Macrophages and Beiging in White Adipose Tissue , 2017, Diabetes.
[18] N. King,et al. The Origin of Animal Multicellularity and Cell Differentiation. , 2017, Developmental cell.
[19] Jong Bae Seo,et al. Adipose Tissue Macrophage-Derived Exosomal miRNAs Can Modulate In Vivo and In Vitro Insulin Sensitivity , 2017, Cell.
[20] Jiaqian Wu,et al. Exosomes Mediate Epithelium-Mesenchyme Crosstalk in Organ Development. , 2017, ACS nano.
[21] J. Lötvall,et al. BRAFV600 inhibition alters the microRNA cargo in the vesicular secretome of malignant melanoma cells , 2017, Proceedings of the National Academy of Sciences.
[22] R. Cerione,et al. Extracellular vesicle docking at the cellular port: Extracellular vesicle binding and uptake. , 2017, Seminars in cell & developmental biology.
[23] S. Gordon,et al. Tissue macrophages: heterogeneity and functions , 2017, BMC Biology.
[24] Anton J. Enright,et al. Extracellular vesicles are independent metabolic units with asparaginase activity , 2017, Nature chemical biology.
[25] M. Mahoney,et al. Desmoglein 2 modulates extracellular vesicle release from squamous cell carcinoma keratinocytes , 2017, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[26] Thomas R. Cox,et al. Pre-metastatic niches: organ-specific homes for metastases , 2017, Nature Reviews Cancer.
[27] Toru Hayashi,et al. Exosomal MicroRNA Transport from Salivary Mesenchyme Regulates Epithelial Progenitor Expansion during Organogenesis. , 2017, Developmental cell.
[28] A. Savelyeva,et al. Variety of RNAs in Peripheral Blood Cells, Plasma, and Plasma Fractions , 2017, BioMed research international.
[29] Weian Zhao,et al. Elucidation of Exosome Migration across the Blood-Brain Barrier Model In Vitro , 2016, Cellular and Molecular Bioengineering.
[30] Xiaojuan He,et al. Osteoclast-derived exosomal miR-214-3p inhibits osteoblastic bone formation , 2016, Nature Communications.
[31] A. Diez-Juan,et al. Cardiomyocyte exosomes regulate glycolytic flux in endothelium by direct transfer of GLUT transporters and glycolytic enzymes. , 2016, Cardiovascular research.
[32] Prahlad T. Ram,et al. Tumor microenvironment derived exosomes pleiotropically modulate cancer cell metabolism , 2016, eLife.
[33] R. Schekman,et al. Y-box protein 1 is required to sort microRNAs into exosomes in cells and in a cell-free reaction , 2016, bioRxiv.
[34] H. Vidal,et al. Exosome-like vesicles released from lipid-induced insulin-resistant muscles modulate gene expression and proliferation of beta recipient cells in mice , 2016, Diabetologia.
[35] Gary K. Schwartz,et al. Tumour exosome integrins determine organotropic metastasis , 2015, Nature.
[36] G. Raposo,et al. Extracellular vesicles shuffling intercellular messages: for good or for bad. , 2015, Current opinion in cell biology.
[37] L. Larue,et al. Proteome characterization of melanoma exosomes reveals a specific signature for metastatic cell lines , 2015, Pigment cell & melanoma research.
[38] Valentina R Minciacchi,et al. Large oncosomes contain distinct protein cargo and represent a separate functional class of tumor-derived extracellular vesicles , 2015, Oncotarget.
[39] Andrew F. Hill,et al. Applying extracellular vesicles based therapeutics in clinical trials – an ISEV position paper , 2015, Journal of extracellular vesicles.
[40] X. Breakefield,et al. Emerging Roles of Extracellular Vesicles in the Nervous System , 2014, The Journal of Neuroscience.
[41] L. Zitvogel,et al. Dendritic Cell–Derived Exosomes as Immunotherapies in the Fight against Cancer , 2014, The Journal of Immunology.
[42] B. Coulomb,et al. Use of mesenchymal stem cells for cutaneous repair and skin substitute elaboration. , 2014, Pathologie-biologie.
[43] Nan-Hyung Kim,et al. Reduced MiR-675 in exosome in H19 RNA-related melanogenesis via MITF as a direct target. , 2014, The Journal of investigative dermatology.
[44] C. Futter,et al. Hrs- and CD63-Dependent Competing Mechanisms Make Different Sized Endosomal Intraluminal Vesicles , 2014, Traffic.
[45] F. Sánchez‐Madrid,et al. Sumoylated hnRNPA2B1 controls the sorting of miRNAs into exosomes through binding to specific motifs , 2013, Nature Communications.
[46] H. Buermans,et al. Deep sequencing of RNA from immune cell-derived vesicles uncovers the selective incorporation of small non-coding RNA biotypes with potential regulatory functions , 2012, Nucleic acids research.
[47] Ylva Ivarsson,et al. Syndecan–syntenin–ALIX regulates the biogenesis of exosomes , 2012, Nature Cell Biology.
[48] Stanley N Cohen,et al. Formation and release of arrestin domain-containing protein 1-mediated microvesicles (ARMMs) at plasma membrane by recruitment of TSG101 protein , 2012, Proceedings of the National Academy of Sciences.
[49] C. Melief,et al. MHC II in Dendritic Cells is Targeted to Lysosomes or T Cell‐Induced Exosomes Via Distinct Multivesicular Body Pathways , 2009, Traffic.
[50] A. Guha,et al. Intercellular transfer of the oncogenic receptor EGFRvIII by microvesicles derived from tumour cells , 2008, Nature Cell Biology.
[51] Petra Schwille,et al. Ceramide Triggers Budding of Exosome Vesicles into Multivesicular Endosomes , 2008, Science.
[52] J. Lötvall,et al. Exosome-mediated transfer of mRNAs and microRNAs is a novel mechanism of genetic exchange between cells , 2007, Nature Cell Biology.
[53] M. Labouesse,et al. The V0-ATPase mediates apical secretion of exosomes containing Hedgehog-related proteins in Caenorhabditis elegans , 2006, The Journal of cell biology.
[54] W. Stoorvogel,et al. Exosomes contain ubiquitinated proteins. , 2005, Blood cells, molecules & diseases.
[55] G. Raposo,et al. Exosomes: A Bubble Ride for Prions? , 2005, Traffic.
[56] J. Slot,et al. Immunoelectron Microscopic Localization of Cholesterol Using Biotinylated and Non-cytolytic Perfringolysin O , 2002, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[57] Laurence Zitvogel,et al. Eradication of established murine tumors using a novel cell-free vaccine: dendritic cell derived exosomes , 1998, Nature Medicine.
[58] C. Melief,et al. B lymphocytes secrete antigen-presenting vesicles , 1996, The Journal of experimental medicine.
[59] P. Stahl,et al. Receptor-mediated endocytosis of transferrin and recycling of the transferrin receptor in rat reticulocytes , 1983, The Journal of cell biology.
[60] B. Pan,et al. Fate of the transferrin receptor during maturation of sheep reticulocytes in vitro: Selective externalization of the receptor , 1983, Cell.
[61] A. Policard,et al. [A still little known infrastructure of the cytoplasm, multivesicular bodies]. , 1963, Nouvelle revue francaise d'hematologie.
[62] F. Sánchez‐Madrid,et al. Post-translational add-ons mark the path in exosomal protein sorting , 2017, Cellular and Molecular Life Sciences.
[63] U. Fuchs. [ELECTRON MICROSCOPE OBSERVATION ON MULTIVESICULAR BODIES IN ENDOTHELIAL AND SKELETAL MUSCLE CELLS]. , 1963, Zeitschrift fur mikroskopisch-anatomische Forschung.