2,522
Views
89
CrossRef citations to date
0
Altmetric
Original Research Articles

Towards traceable size determination of extracellular vesicles

, , , , , & show all
Article: 23298 | Received 07 Nov 2013, Accepted 01 Jan 2014, Published online: 04 Feb 2014

References

  • Lee TH, D'Asti E, Magnus N, Al-Nedawi K, Meehan B, Rak J. Microvesicles as mediators of intercellular communication in cancer – the emerging science of cellular ‘debris’. Semin Immunopathol. 2011; 33: 455–67.
  • Simons M, Raposo G. Exosomes – vesicular carriers for intercellular communication. Curr Opin Cell Biol. 2009; 21: 575–81.
  • Mathivanan S, Ji H, Simpson RJ. Exosomes: extracellular organelles important in intercellular communication. J Proteomics. 2010; 73: 1907–20.
  • Vlassov AV, Magdaleno S, Setterquist R, Conrad R. Exosomes: current knowledge of their composition, biological functions, and diagnostic and therapeutic potentials. Biochim Biophys Acta. 2012; 1820: 940–8.
  • Yuana Y, Sturk A, Nieuwland R. Extracellular vesicles in physiological and pathological conditions. Blood Rev. 2012; 27: 31–9.
  • van der Pol E, Böing AN, Harrison P, Sturk A, Nieuwland R. Classification, functions, and clinical relevance of extracellular vesicles. Pharmacol Rev. 2012; 64: 676–705.
  • György B, Szabó TG, Pásztói M, Pál Z, Misják P, Aradi B et al. Membrane vesicles, current state-of-the-art: emerging role of extracellular vesicles. Cell Mol Life Sci. 2011; 68: 2667–88.
  • Diamant M, Tushuizen ME, Sturk A, Nieuwland R. Cellular microparticles: new players in the field of vascular disease?. Eur J Clin Invest. 2004; 34: 392–401.
  • van Beers EJ, Schaap MC, Berckmans RJ, Nieuwland R, Sturk A, van Doormaal FF et al. Circulating erythrocyte-derived microparticles are associated with coagulation activation in sickle cell disease. Haematologica. 2009; 94: 1513–19.
  • Rubin O, Canellini G, Delobel J, Lion N, Tissot J-D. Red blood cell microparticles: clinical relevance. Transfus Med Hemother. 2012; 39: 342–7.
  • Bosman GJ, Lasonder E, Groenen-Döpp YA, Willekens FL, Werre JM. The proteome of erythrocyte-derived microparticles from plasma: new clues for erythrocyte aging and vesiculation. J Proteomics. 2012; 76: 203–10.
  • Andaloussi SE, Mäger I, Breakefield XO, Wood MJ. Extracellular vesicles: biology and emerging therapeutic opportunities. Nat Rev Drug Discov. 2013; 12: 347–57.
  • Yuana Y, Bertina RM, Osanto S. Pre-analytical and analytical issues in the analysis of blood microparticles. Thromb Haemost. 2011; 105: 396–408.
  • György B, Módos K, Pállinger É, Pálóczi K, Pásztói M, Misják P et al. Detection and isolation of cell-derived microparticles are compromised by protein complexes resulting from shared biophysical parameters. Blood. 2011; 117: e39–e48.
  • Webber J, Clayton A. How pure are your vesicles?. J Extracell Vesicles. 2013; 2 19861, doi: http://dx.doi.org/10.3402/jev.v2i0.19861.
  • van der Pol E, Hoekstra AG, Sturk A, Otto C, Van Leeuwen TG, Nieuwland R. Optical and non-optical methods for detection and characterization of microparticles and exosomes. J Thromb Haemost. 2010; 8: 2596–607.
  • Witwer KW, Buzás EI, Bemis LT, Bora A, Lässer C, Lötvall J et al. Standardization of sample collection, isolation and analysis methods in extracellular vesicle research. J Extracell Vesicles. 2013; 2 20360, doi: http://dx.doi.org/10.3402/jev.v2i0.20360.
  • Pisitkun T, Shen RF, Knepper MA. Identification and proteomic profiling of exosomes in human urine. Proc Natl Acad Sci U S A. 2004; 101: 13368.
  • Conde-Vancells J, Rodriguez-Suarez E, Embade N, Gil D, Matthiesen R, Valle M et al. Characterization and comprehensive proteome profiling of exosomes secreted by hepatocytes. J Proteome Res. 2008; 7: 5157–66.
  • Rubin O, Crettaz D, Tissot J-D, Lion N. Pre-analytical and methodological challenges in red blood cell microparticle proteomics. Talanta. 2010; 82: 1–8.
  • Rubin O, Crettaz D, Canellini G, Tissot J-D, Lion N. Microparticles in stored red blood cells: an approach using flow cytometry and proteomic tools. Vox Sang. 2008; 95: 288–97.
  • van der Pol E, Coumans F, Varga Z, Krumrey M, Nieuwland R. Innovation in detection of microparticles and exosomes. J Thromb Haemost. 2013; 11: 36–45.
  • BIPM, IFCC, ISO, IUPAP, OIML. Evaluation of measurement data – guide to the expression of uncertainty in measurement. International Organization for Standardization. 2008. [cited 2013 October]. Available from: http://www.bipm.org/en/publications/guides/gum.html.
  • Meli F, Klein T, Buhr E, Frase CG, Gleber G, Krumrey M et al. Traceable size determination of nanoparticles, a comparison among European metrology institutes. Meas Sci Technol. 2012; 23: 125005.
  • de Vrij J, Maas SL, van Nispen M, Sena-Esteves M, Limpens RW, Koster AJ et al. Quantification of nanosized extracellular membrane vesicles with scanning ion occlusion sensing. Nanomedicine (Lond). 2013; 8: 1443–58.
  • Dragovic RA, Gardiner C, Brooks AS, Tannetta DS, Ferguson DJ, Hole P et al. Sizing and phenotyping of cellular vesicles using nanoparticle tracking analysis. Nanomedicine. 2011; 7: 780–8.
  • Gardiner C, Ferreira YJ, Dragovic RA, Redman CW, Sargent IL. Extracellular vesicle sizing and enumeration by nanoparticle tracking analysis. J Extracell Vesicles. 2013; 2 19671, doi: http://dx.doi.org/10.3402/jev.v2i0.19671.
  • Niedermeyer W. Gefrierätzung. Biol Unserer Zeit. 1977; 7: 178–87.
  • Beaudoin AR, Grondin G, Vachereau A, St-Jean P, Cabana C. Detection and characterization of microvesicles in the acinar lumen and in juice of unstimulated rat pancreas. J Histochem Cytochem. 1986; 34: 1079–84.
  • Thoenes W, Baum HP, Störkel S, Müller M. Cytoplasmic microvesicles in chromophobe cell renal carcinoma demonstrated by freeze fracture. Virchows Arch B Cell Pathol Incl Mol Pathol. 1987; 54: 127–30.
  • Vittorelli ML. Shed membrane vesicles and clustering of membrane-bound proteolytic enzymes. Curr Top Dev Biol. 2003; 54: 411–32.
  • Filipe V, Hawe A, Jiskoot W. Critical evaluation of nanoparticle tracking analysis (NTA) by NanoSight for the measurement of nanoparticles and protein aggregates. Pharm Res. 2010; 27: 796–810.
  • Momen-Heravi F, Balaj L, Alian S, Tigges J, Toxavidis V, Ericsson M et al. Alternative methods for characterization of extracellular vesicles. Front Physiol. 2012; 3: 354.
  • Taylor DD, Chou I-N, Black PH. Isolation of plasma membrane fragments from cultured murine melanoma cells. Biochem Biophys Res Commun. 1983; 113: 470–6.
  • Gercel-Taylor C, Atay S, Tullis RH, Kesimer M, Taylor DD. Nanoparticle analysis of circulating cell-derived vesicles in ovarian cancer patients. Anal Biochem. 2012; 428: 44–53.
  • Ollivon M, Walter A, Blumenthal R. Sizing and separation of liposomes, biological vesicles, and viruses by high-performance liquid chromatography. Anal Biochem. 1986; 152: 262–74.
  • Grabielle-Madelmont C, Lesieur S, Ollivon M. Characterization of loaded liposomes by size exclusion chromatography. J Biochem Biophys Methods. 2003; 56: 189–217.
  • Schuck P. Size-distribution analysis of macromolecules by sedimentation velocity ultracentrifugation and lamm equation modeling. Biophys J. 2000; 78: 1606–19.
  • Bouwstra JA, Gooris GS, Bras W, Talsma H. Small angle X-ray scattering: possibilities and limitations in characterization of vesicles. Chem Phys Lipids. 1993; 64: 83–98.
  • Hirai M, Iwase H, Hayakawa T, Koizumi M, Takahashi H. Determination of asymmetric structure of ganglioside-DPPC mixed vesicle using SANS, SAXS, and DLS. Biophys J. 2003; 85: 1600–10.
  • Brzustowicz MR, Brunger AT. X-ray scattering from unilamellar lipid vesicles. J Appl Crystallogr. 2005; 38: 126–31.
  • Castorph S, Riedel D, Arleth L, Sztucki M, Jahn R, Holt M et al. Structure parameters of synaptic vesicles quantified by small-angle X-ray scattering. Biophys J. 2010; 98: 1200–8.
  • Krumrey M, Ulm G. High-accuracy detector calibration at the PTB four-crystal monochromator beamline. Nucl Instrum Methods Phys Res Sect A. 2001; 467: 1175–8.
  • Gleber G, Cibik L, Haas S, Hoell A, Müller P, Krumrey M. Traceable size determination of PMMA nanoparticles based on small angle x-ray scattering (SAXS). J Phys Conf Ser. 2010; 247: 012027.
  • Donath T, Brandstetter S, Cibik L, Commichau S, Hofer P, Krumrey M et al. Characterization of the PILATUS photon-counting pixel detector for X-ray energies from 1.75 keV to 60 keV. J Phys Conf Ser. 2013; 425: 062001.
  • Rose PE. Improved tables for the evaluation of sphere size distributions including the effect of section thickness. J Microsc. 1980; 118: 135–41.
  • Klein T, Buhr E, Johnsen KP, Frase CG. Traceable measurement of nanoparticle size using a scanning electron microscope in transmission mode (TSEM). Meas Sci Technol. 2011; 22: 094002.
  • Meli F, Wilkening G, Koenders L. Lateral and vertical diameter measurements on polymer particles with a metrology AFM. Nanoscale calibration standards and methods: dimensional and related measurements in the micro- and nanometer range. 2006; Weinheim: Wiley. 359–74.
  • Krumrey M, Gleber G, Scholze F, Wernecke J. Synchrotron radiation-based x-ray reflection and scattering techniques for dimensional nanometrology. Meas Sci Technol. 2011; 22: 094032.