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dc.contributor.authorKarttunen, Jenni
dc.contributor.authorHeiskanen, Mette
dc.contributor.authorNavarro-Ferrandis, Vicente
dc.contributor.authorDas Gupta, Shalini
dc.contributor.authorLipponen, Anssi
dc.contributor.authorPuhakka, Noora
dc.contributor.authorRilla, Kirsi
dc.contributor.authorKoistinen, Arto
dc.contributor.authorPitkänen, Asla
dc.date.accessioned2019-01-23T13:42:11Z
dc.date.available2019-01-23T13:42:11Z
dc.date.issued2019
dc.identifier.urihttps://erepo.uef.fi/handle/123456789/7363
dc.description.abstractThe microRNA (miRNA) cargo contained in plasma extracellular vesicles (EVs) offers a relatively little explored source of biomarkers for brain diseases that can be obtained noninvasively. Methods to isolate EVs from plasma, however, are still being developed. For EV isolation, it is important to ensure the removal of vesicle-free miRNAs, which account for approximately two-thirds of plasma miRNAs. Membrane particle precipitation-based EV isolation is an appealing method because of the simple protocol and high yield. Here, we evaluated the performance of a precipitation-based method to obtain enriched EV-specific miRNAs from a small volume of rat plasma. We performed size-exclusion chromatography (SEC) on precipitation-isolated EV pellets and whole plasma. The SEC fractions were analysed using Nanoparticle Tracking Analysis (NTA), protein and miRNA concentration assays, and droplet digital polymerase chain reaction for four miRNAs (miR-142-3p, miR-124-3p, miR-23a, miR-122). Precipitation-isolated EVs and selected SEC fractions from the plasma were also analysed with transmission electron microscopy (TEM). Precipitation-based EV isolation co-precipitated 9% to 15% of plasma proteins and 21% to 99% of vesicle-free miRNAs, depending on the individual miRNAs. In addition, the amount of miR-142-3p, found mainly in EV fractions, was decreased in the EV fractions, indicating that part of it was lost during precipitation-based isolation. Western blot and TEM revealed both protein and lipoprotein contamination in the precipitation-isolated EV-pellets. Our findings indicate that a precipitation-based method is not sufficient for purifying plasma EV-contained miRNA cargo. The particle number measured by NTA is high, but this is mostly due to the contaminating lipoproteins. Although a part of the vesicle-free miRNA is removed, vesicle-free miRNA still dominates in plasma EV pellets isolated by the precipitation-based method.
dc.language.isoenglanti
dc.publisherInforma UK Limited
dc.relation.ispartofseriesJournal of Extracellular Vesicles
dc.relation.urihttp://dx.doi.org/10.1080/20013078.2018.1555410
dc.rightsCC BY-NC 4.0
dc.subjectextracellular vesicle
dc.subjectextracellular vesicle isolation
dc.subjectplasma
dc.subjectprecipitation
dc.subjectmiRNA
dc.subjectddPCR
dc.subjectsize-exclusion chromatography
dc.titlePrecipitation-based extracellular vesicle isolation from rat plasma co-precipitate vesicle-free microRNAs
dc.description.versionpublished version
dc.contributor.departmentA.I. Virtanen -instituutti
dc.contributor.departmentSIB-labs -infrastruktuuriyksikön toiminta,School of Medicine / Biomedicine
uef.solecris.id59404832en
dc.type.publicationTieteelliset aikakauslehtiartikkelit
dc.relation.doi10.1080/20013078.2018.1555410
dc.description.reviewstatuspeerReviewed
dc.relation.articlenumber1555410
dc.relation.issn2001-3078
dc.relation.issue1
dc.relation.volume8
dc.rights.accesslevelopenAccess
dc.type.okmA1
uef.solecris.openaccessOpen access -julkaisukanavassa ilmestynyt julkaisu
dc.rights.copyright© Authors
dc.type.displayTypearticleen
dc.type.displayTypeartikkelifi
dc.rights.urlhttps://creativecommons.org/licenses/by-nc/4.0/


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