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Original Research Articles

Handling and storage of human body fluids for analysis of extracellular vesicles

, , , , , , , & show all
Article: 29260 | Received 24 Jul 2015, Accepted 17 Oct 2015, Published online: 11 Nov 2015

References

  • Yuana Y, Sturk A, Nieuwland R. Extracellular vesicles in physiological and pathological conditions. Blood Rev. 2013; 27: 31–9.
  • Berckmans RJ, Sturk A, van Tienen LM, Schaap MC, Nieuwland R. Cell-derived vesicles exposing coagulant tissue factor in saliva. Blood. 2011; 117: 3172–80.
  • Franz C, Boing AN, Hau CM, Montag M, Strowitzki T, Nieuwland R, etal. Procoagulant tissue factor-exposing vesicles in human seminal fluid. J Reprod Immunol. 2013; 98: 45–51.
  • van Der Pol E, Boing AN, Harrison P, Sturk A, Nieuwland R. Classification, functions, and clinical relevance of extracellular vesicles. Pharmacol Rev. 2012; 64: 676–705.
  • Witwer KW, Buzas EI, Bemis LT, Bora A, Lasser C, Lotvall J, etal. 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 [PubMed CentralFull Text].
  • Lacroix R, Judicone C, Mooberry M, Boucekine M, Key NS, Dignat-George F. Standardization of pre-analytical variables in plasma microparticle determination: results of the International Society on Thrombosis and Haemostasis SSC Collaborative workshop. J Thromb Haemost. 2013; 11: 1190–3.
  • Lacroix R, Judicone C, Poncelet P, Robert S, Arnaud L, Sampol J, etal. Impact of pre-analytical parameters on the measurement of circulating microparticles: towards standardization of protocol. J Thromb Haemost. 2012; 10: 437–46.
  • Ayers L, Kohler M, Harrison P, Sargent I, Dragovic R, Schaap M, etal. Measurement of circulating cell-derived microparticles by flow cytometry: sources of variability within the assay. Thromb Res. 2011; 127: 370–7.
  • Dey-Hazra E, Hertel B, Kirsch T, Woywodt A, Lovric S, Haller H, etal. Detection of circulating microparticles by flow cytometry: influence of centrifugation, filtration of buffer, and freezing. Vasc Health Risk Manag. 2010; 6: 1125–33. [PubMed Abstract] [PubMed CentralFull Text].
  • van Der Pol E, Van Gemert MJ, Sturk A, Nieuwland R, Van Leeuwen TG. Single vs. swarm detection of microparticles and exosomes by flow cytometry. J Thromb Haemost. 2012; 10: 919–30.
  • Salih M, Zietse R, Hoorn EJ. Urinary extracellular vesicles and the kidney: biomarkers and beyond. Am J Physiol Renal Physiol. 2014; 306: F1251–9.
  • Yang J, Wei F, Schafer C, Wong DT. Detection of tumor cell-specific mRNA and protein in exosome-like microvesicles from blood and saliva. PLoS One. 2014; 9: e110641.
  • van Der Pol E, Coumans F, Varga Z, Krumrey M, Nieuwland R. Innovation in detection of microparticles and exosomes. J Thromb Haemost. 2013; 11(Suppl 1): 36–45.
  • Coumans FA, Van der Pol E, Boing AN, Hajji N, Sturk G, van Leeuwen TG, etal. Reproducible extracellular vesicle size and concentration determination with tunable resistive pulse sensing. J Extracell Vesicles. 2014; 3: 25922. [PubMed Abstract].
  • Varga Z, Yuana Y, Grootemaat AE, Van Der Pol E, Gollwitzer C, Krumrey M, etal. Towards traceable size determination of extracellular vesicles. J Extracell Vesicles. 2014; 3 23298, doi: http://dx.doi.org/10.3402/jev.v3.23298.
  • van der Pol E, Coumans FA, Grootemaat AE, Gardiner C, Sargent IL, Harrison P, etal. Particle size distribution of exosomes and microvesicles determined by transmission electron microscopy, flow cytometry, nanoparticle tracking analysis, and resistive pulse sensing. J Thromb Haemost. 2014; 12: 1182–92.
  • Boing AN, Van der Pol E, Grootemaat AE, Coumans FA, Sturk A, Nieuwland R. Single-step isolation of extracellular vesicles by size-exclusion chromatography. J Extracell Vesicles. 2014; 3 23430, doi: http://dx.doi.org/10.3402/jev.v3.23430 [PubMed CentralFull Text].
  • van Beers EJ, Schaap MC, Berckmans RJ, Nieuwland R, Sturk A, Van Doormaal FF, etal. Circulating erythrocyte-derived microparticles are associated with coagulation activation in sickle cell disease. Haematologica. 2009; 94: 1513–19.
  • Klein T, Buhr E, Frase CG, Hawkes PW. TSEM: a review of scanning electron microscopy in transmission mode and its applications. Advances in imaging and electron physics. 2012; Paris: Elsevier. 297–356.
  • Brisson AR, Tan S, Gounou C, Arrauda N. Aggregation of extracellular vesicles induced by high-speed sedimentation and re-suspension: a combined cryo-electron microscopy and flow cytometry study. J Extracell Vesicles. 2015; 4: 27783. doi: http://dx.doi.org/10.3402/jev.v4.27783.
  • Nordin JZ, Lee Y, Vader P, Mager I, Johansson HJ, Heusermann W, etal. Ultrafiltration with size-exclusion liquid chromatography for high yield isolation of extracellular vesicles preserving intact biophysical and functional properties. Nanomedicine. 2015; 11: 879–83.
  • Ashcroft BA, de SJ, Yuana Y, Osanto S, Bertina R, Kuil ME, etal. Determination of the size distribution of blood microparticles directly in plasma using atomic force microscopy and microfluidics. Biomed Microdevices. 2012; 14: 641–9.
  • Lee K, Shao H, Weissleder R, Lee H. Acoustic purification of extracellular microvesicles. ACS Nano. 2015; 9: 2321–7.
  • Petersen KE, Manangon E, Hood JL, Wickline SA, Fernandez DP, Johnson WP, etal. A review of exosome separation techniques and characterization of B16-F10 mouse melanoma exosomes with AF4-UV-MALS-DLS-TEM. Anal Bioanal Chem. 2014; 406: 7855–66.
  • Agarwal K, Saji M, Lazaroff SM, Palmer AF, Ringel MD, Paulaitis ME. Analysis of exosome release as a cellular response to MAPK pathway inhibition. Langmuir. 2015; 31: 5440–8.
  • Lötvall J, Hill AF, Hochberg F, Buzás EI, Di Vizio D, Gardiner C, etal. Minimal experimental requirements for definition of extracellular vesicles and their functions: a position statement from the International Society for Extracellular Vesicles. J Extracell Vesicles. 2014; 3: 26913. doi: http://dx.doi.org/10.3402/jev.v3.26913.