Access the full text.
Sign up today, get DeepDyve free for 14 days.
Vasco Filipe, A. Hawe, W. Jiskoot (2010)
Critical Evaluation of Nanoparticle Tracking Analysis (NTA) by NanoSight for the Measurement of Nanoparticles and Protein AggregatesPharmaceutical Research, 27
S. Buschow, E. Hoen, Guillaume Niel, Maaike Pols, T. Broeke, Marjolein Lauwen, F. Ossendorp, C. Melief, G. Raposo, R. Wubbolts, M. Wauben, W. Stoorvogel (2009)
MHC II in Dendritic Cells is Targeted to Lysosomes or T Cell‐Induced Exosomes Via Distinct Multivesicular Body PathwaysTraffic, 10
V. Sokolova, Anna‐Kristin Ludwig, Sandra Hornung, Olga Rotan, P. Horn, M. Epple, B. Giebel (2011)
Characterisation of exosomes derived from human cells by nanoparticle tracking analysis and scanning electron microscopy.Colloids and surfaces. B, Biointerfaces, 87 1
Emanuele Cocucci, G. Racchetti, J. Meldolesi (2009)
Shedding microvesicles: artefacts no more.Trends in cell biology, 19 2
M. Assenmacher, J. Schmitz, Andreas Radbruch (1994)
Flow cytometric determination of cytokines in activated murine T helper lymphocytes: Expression of interleukin‐10 in interferon‐γ and in interleukin‐4‐expressing cellsEuropean Journal of Immunology, 24
E. Hoen, E. Vlist, M. Aalberts, Hendrik Mertens, B. Bosch, Willem Bartelink, E. Mastrobattista, E. Gaal, W. Stoorvogel, G. Arkesteijn, M. Wauben (2011)
Quantitative and qualitative flow cytometric analysis of nanosized cell-derived membrane vesiclesNanomedicine, 8
I. Shefler, P. Salamon, T. Reshef, A. Mor, Y. Mekori (2010)
T Cell-Induced Mast Cell Activation: A Role for Microparticles Released from Activated T CellsThe Journal of Immunology, 185
R. Carpintero, L. Gruaz, K. Brandt, A. Scanu, D. Faille, V. Combes, G. Grau, D. Burger (2010)
HDL Interfere with the Binding of T Cell Microparticles to Human Monocytes to Inhibit Pro-Inflammatory Cytokine ProductionPLoS ONE, 5
Y. Yuana, T. Oosterkamp, Svetlana Bahatyrova, Brian Ashcroft, Patricia, Garcia Rodriguez, R. Bertina, Susanne Osanto (2010)
Atomic force microscopy: a novel approach to the detection of nanosized blood microparticlesJournal of Thrombosis and Haemostasis, 8
B. György, K. Módos, É. Pállinger, K. Pálóczi, M. Pasztoi, P. Misják, M. Deli, Á. Sipos, A. Szalai, I. Voszka, A. Polgár, K. Toth, M. Csete, G. Nagy, S. Gay, A. Falus, Á. Kittel, E. Buzás (2011)
Detection and isolation of cell-derived microparticles are compromised by protein complexes resulting from shared biophysical parameters.Blood, 117 4
A. Scanu, N. Molnarfi, K. Brandt, L. Gruaz, J. Dayer, D. Burger (2008)
Stimulated T cells generate microparticles, which mimic cellular contact activation of human monocytes: differential regulation of pro‐ and anti‐inflammatory cytokine production by high‐density lipoproteinsJournal of Leukocyte Biology, 83
A. Booth, Yi Fang, Jonathan Fallon, Jr-Ming Yang, James Hildreth, S. Gould (2006)
Exosomes and HIV Gag bud from endosome-like domains of the T cell plasma membraneThe Journal of Cell Biology, 172
C. Théry, M. Ostrowski, É. Segura (2009)
Membrane vesicles as conveyors of immune responsesNature Reviews Immunology, 9
M. Martínez-Lorenzo, A. Anel, S. Gamen, Inmaculada Monleón, P. Lasierra, L. Larrad, A. Piñeiro, M. Alava, Javier Naval (1999)
Activated human T cells release bioactive Fas ligand and APO2 ligand in microvesicles.Journal of immunology, 163 3
G. Raposo, H. Nijman, W. Stoorvogel, R. Liejendekker, C. Harding, C. Melief, H. Geuze (1996)
B lymphocytes secrete antigen-presenting vesiclesThe Journal of Experimental Medicine, 183
R. Alonso, M. Rodríguez, J. Pindado, Ernesto Merino, I. Mérida, M. Izquierdo (2005)
Diacylglycerol Kinase α Regulates the Secretion of Lethal Exosomes Bearing Fas Ligand during Activation-induced Cell Death of T Lymphocytes*Journal of Biological Chemistry, 280
A. Bobrie, Marina Colombo, G. Raposo, C. Théry (2011)
Exosome Secretion: Molecular Mechanisms and Roles in Immune ResponsesTraffic, 12
Marjolein Lauwen, S. Zwaveling, Linda Quartel, S. Mota, Janine Grashorn, C. Melief, S. Burg, R. Offringa (2008)
Self-tolerance does not restrict the CD4+ T-helper response against the p53 tumor antigen.Cancer research, 68 3
E. Hoen, J. Wagenaar-Hilbers, P. Peters, B. Gadella, W. Eden, M. Wauben (2004)
Uptake of membrane molecules from T cells endows antigen‐presenting cells with novel functional propertiesEuropean Journal of Immunology, 34
R. Lacroix, S. Robert, P. Poncelet, F. Dignat-George (2010)
Overcoming limitations of microparticle measurement by flow cytometry.Seminars in thrombosis and hemostasis, 36 8
L. Zakharova, M. Svetlova, A. Fomina (2007)
T cell exosomes induce cholesterol accumulation in human monocytes via phosphatidylserine receptorJournal of Cellular Physiology, 212
(2012)
NL-3584 CM Utrecht, The Netherlands Tel: '31302535451 Fax: '31302535492 Email: [email protected] Differential release of nanosized vesicles by activated T cells Citation
C. Théry, S. Amigorena, G. Raposo, A. Clayton (2006)
Isolation and Characterization of Exosomes from Cell Culture Supernatants and Biological FluidsCurrent Protocols in Cell Biology, 30
Haifeng Zhang, Yufeng Xie, Wei Li, R. Chibbar, S. Xiong, J. Xiang (2011)
CD4+ T cell-released exosomes inhibit CD8+ cytotoxic T-lymphocyte responses and antitumor immunityCellular and Molecular Immunology, 8
V. Ng (2004)
Practical Flow Cytometry, 4th EditionShock, 21
N. Blanchard, D. Lankar, F. Faure, A. Régnault, C. Dumont, G. Raposo, C. Hivroz (2002)
TCR Activation of Human T Cells Induces the Production of Exosomes Bearing the TCR/CD3/ζ Complex1The Journal of Immunology, 168
M. Aalberts, F. Dissel-Emiliani, N. Adrichem, M. Wijnen, M. Wauben, T. Stout, W. Stoorvogel (2012)
Identification of Distinct Populations of Prostasomes That Differentially Express Prostate Stem Cell Antigen, Annexin A1, and GLIPR2 in Humans1, 86
E. Hoen, S. Buschow, S. Anderton, W. Stoorvogel, M. Wauben (2009)
Activated T cells recruit exosomes secreted by dendritic cells via LFA-1.Blood, 113 9
I. Monleón, M. Martínez-Lorenzo, L. Monteagudo, P. Lasierra, M. Taulés, M. Iturralde, A. Piñeiro, L. Larrad, M. Alava, J. Naval, A. Anel (2001)
Differential Secretion of Fas Ligand- or APO2 Ligand/TNF-Related Apoptosis-Inducing Ligand-Carrying Microvesicles During Activation-Induced Death of Human T Cells1The Journal of Immunology, 167
E. Pol, A. Hoekstra, A. Sturk, C. Otto, T. Leeuwen, T. Leeuwen, R. Nieuwland (2010)
Optical and non‐optical methods for detection and characterization of microparticles and exosomesJournal of Thrombosis and Haemostasis, 8
A. Busch, T. Quast, Sascha Keller, W. Kolanus, P. Knolle, P. Altevogt, A. Limmer (2008)
Transfer of T Cell Surface Molecules to Dendritic Cells upon CD4+ T Cell Priming Involves Two Distinct Mechanisms1The Journal of Immunology, 181
O. Blair (1985)
Practical Flow CytometryThe Yale Journal of Biology and Medicine, 58
H. Shapiro (2005)
Practical Flow Cytometry: Shapiro/Flow Cytometry 4e
Journal of Extracellular Vesicles – Wiley
Published: Jan 1, 2012
Keywords: ; ; ; ; ; ; ; ;
You can share this free article with as many people as you like with the url below! We hope you enjoy this feature!
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.