Cryo-electron microscopy of extracellular vesicles in fresh plasma
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Patrick C. N. Rensen | Abraham J. Koster | Roman I. Koning | Yuana Yuana | A. Koster | R. Koning | R. Bertina | P. Rensen | S. Osanto | M. E. Kuil | Y. Yuana | Maxim E. Kuil | Rogier M Bertina | Susanne Osanto
[1] M. V. van Gemert,et al. Single vs. swarm detection of microparticles and exosomes by flow cytometry , 2012, Journal of thrombosis and haemostasis : JTH.
[2] J J Sixma,et al. Activated platelets release two types of membrane vesicles: microvesicles by surface shedding and exosomes derived from exocytosis of multivesicular bodies and alpha-granules. , 1999, Blood.
[3] F. De Haas,et al. The platelet interior revisited: electron tomography reveals tubular alpha-granule subtypes. , 2010, Blood.
[4] T H Oosterkamp,et al. Atomic force microscopy: a novel approach to the detection of nanosized blood microparticles , 2010, Journal of thrombosis and haemostasis : JTH.
[5] Nikolaus Grigorieff,et al. Near-atomic resolution reconstructions of icosahedral viruses from electron cryo-microscopy. , 2011, Current opinion in structural biology.
[6] György Nagy,et al. Cellular and Molecular Life Sciences REVIEW Membrane vesicles, current state-of-the-art: emerging role of extracellular vesicles , 2022 .
[7] R. Nieuwland,et al. Extracellular vesicles in physiological and pathological conditions. , 2013, Blood reviews.
[8] S. Ludtke,et al. Disruption of human plasma high-density lipoproteins by streptococcal serum opacity factor requires labile apolipoprotein A-I. , 2009, Biochemistry.
[9] A. Koster,et al. Quantification of nanosized extracellular membrane vesicles with scanning ion occlusion sensing. , 2013, Nanomedicine.
[10] Yuhang Liu,et al. Immuno-electron cryo-microscopy imaging reveals a looped topology of apoB at the surface of human LDL[S] , 2011, Journal of Lipid Research.
[11] B. Ferry,et al. Measurement of circulating cell-derived microparticles by flow cytometry: sources of variability within the assay. , 2011, Thrombosis research.
[12] R. Bertina,et al. Pre-analytical and analytical issues in the analysis of blood microparticles , 2010, Thrombosis and Haemostasis.
[13] N. Mackman,et al. Pre-analytical and analytical variables affecting the measurement of plasma-derived microparticle tissue factor activity. , 2012, Thrombosis research.
[14] Abraham J Koster,et al. Cryo-electron tomography in biology and medicine. , 2009, Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft.
[15] Paul J. Harrison,et al. Sizing and phenotyping of cellular vesicles using Nanoparticle Tracking Analysis , 2011, Nanomedicine : nanotechnology, biology, and medicine.
[16] H. Anderson,et al. Role of extracellular membrane vesicles in the pathogenesis of various diseases, including cancer, renal diseases, atherosclerosis, and arthritis , 2010, Laboratory Investigation.
[17] C. E. West,et al. Separation of plasma lipoproteins by density-gradient ultracentrifugation. , 1975, Analytical biochemistry.
[18] Pierre-Yves Turpin,et al. Fast characterisation of cell-derived extracellular vesicles by nanoparticles tracking analysis, cryo-electron microscopy, and Raman tweezers microspectroscopy , 2012, Journal of extracellular vesicles.
[19] R. Krauss,et al. Structural basis of transfer between lipoproteins by cholesteryl ester transfer protein. , 2012, Nature chemical biology.
[20] Graça Raposo,et al. Extracellular vesicles: Exosomes, microvesicles, and friends , 2013, The Journal of cell biology.
[21] Abraham J. Koster,et al. Virtual nanoscopy: Generation of ultra-large high resolution electron microscopy maps , 2012, The Journal of cell biology.
[22] G. Escolar,et al. Induction of microparticle- and cell-associated intravascular tissue factor in human endotoxemia. , 2004, Blood.