The generation and use of recombinant extracellular vesicles as biological reference material
Geeurickx, Edward; Tulkens, Joeri; Dhondt, Bert; Van Deun, Jan; Lippens, Lien; Vergauwen, Glenn; Heyrman, Elisa; De Sutter, Delphine; Gevaert, Kris; Impens, Francis; Miinalainen, Ilkka; Van Bockstal, Pieter-Jan; De Beer, Thomas; Wauben, Marca H M; Nolte-'t-Hoen, Esther N M; Bloch, Katarzyna; Swinnen, Johannes V; van der Pol, Edwin; Nieuwland, Rienk; Braems, Geert; Callewaert, Nico; Mestdagh, Pieter; Vandesompele, Jo; Denys, Hannelore; Eyckerman, Sven; De Wever, Olivier; Hendrix, An
(2019) Nature Communications, volume 10, issue 1, pp. 1 - 12
(Article)
Abstract
Recent years have seen an increase of extracellular vesicle (EV) research geared towards biological understanding, diagnostics and therapy. However, EV data interpretation remains challenging owing to complexity of biofluids and technical variation introduced during sample preparation and analysis. To understand and mitigate these limitations, we generated trackable recombinant EV (rEV)
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as a biological reference material. Employing complementary characterization methods, we demonstrate that rEV are stable and bear physical and biochemical traits characteristic of sample EV. Furthermore, rEV can be quantified using fluorescence-, RNA- and protein-based technologies available in routine laboratories. Spiking rEV in biofluids allows recovery efficiencies of commonly implemented EV separation methods to be identified, intra-method and inter-user variability induced by sample handling to be defined, and to normalize and improve sensitivity of EV enumerations. We anticipate that rEV will aid EV-based sample preparation and analysis, data normalization, method development and instrument calibration in various research and biomedical applications
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Keywords: Biomarkers, Biomedical Research/methods, Culture Media, Conditioned, Extracellular Vesicles/chemistry, HEK293 Cells, Humans, Reference Standards
ISSN: 2041-1723
Publisher: Nature Publishing Group
(Peer reviewed)