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Monitoring membrane viscosity in differentiating stem cells using BODIPY-based molecular rotors and FLIM

dc.contributor.authorKashirina, Alena S.
dc.contributor.authorLópez Duarte, Ismael
dc.contributor.authorKubánková, Markéta
dc.contributor.authorGulin, Alexander A.
dc.contributor.authorDudenkova, Varvara V.
dc.contributor.authorRodimova, Svetlana A.
dc.contributor.authorTorgomyan, Hayk G.
dc.contributor.authorZagaynova, Elena V.
dc.contributor.authorMeleshina, Aleksandra V.
dc.contributor.authorKuimova, Marina K.
dc.date.accessioned2025-01-21T11:59:40Z
dc.date.available2025-01-21T11:59:40Z
dc.date.issued2020-08-20
dc.description.abstractMembrane fluidity plays an important role in many cell functions such as cell adhesion, and migration. In stem cell lines membrane fluidity may play a role in differentiation. Here we report the use of viscosity-sensitive fluorophores based on a BODIPY core, termed “molecular rotors”, in combination with Fluorescence Lifetime Imaging Microscopy, for monitoring of plasma membrane viscosity changes in mesenchymal stem cells (MSCs) during osteogenic and chondrogenic differentiation. In order to correlate the viscosity values with membrane lipid composition, the detailed analysis of the corresponding membrane lipid composition of differentiated cells was performed by time-of-flight secondary ion mass spectrometry. Our results directly demonstrate for the first time that differentiation of MSCs results in distinct membrane viscosities, that reflect the change in lipidome of the cells following differentiation.
dc.description.departmentDepto. de Química en Ciencias Farmacéuticas
dc.description.facultyFac. de Farmacia
dc.description.refereedTRUE
dc.description.sponsorshipRussian Science Foundation
dc.description.sponsorshipRussian Foundation for Basic Research
dc.description.statuspub
dc.identifier.citationKashirina AS, López-Duarte I, Kubánková M, Gulin AA, Dudenkova VV, Rodimova SA, et al. Monitoring membrane viscosity in differentiating stem cells using BODIPY-based molecular rotors and FLIM. Sci Rep [Internet]. 20 de agosto de 2020 [citado 21 de enero de 2025];10(1):14063. Disponible en: https://www.nature.com/articles/s41598-020-70972-5
dc.identifier.doi10.1038/s41598-020-70972-5
dc.identifier.issn2045-2322
dc.identifier.officialurlhttps://doi.org/10.1038/s41598-020-70972-5
dc.identifier.urihttps://hdl.handle.net/20.500.14352/115339
dc.issue.number1
dc.journal.titleScientific Reports
dc.language.isoeng
dc.page.initial14026
dc.publisherSpringer Science and Business Media LLC
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internationalen
dc.rights.accessRightsopen access
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/
dc.subject.cdu615.31
dc.subject.cdu615:54
dc.subject.ucmQuímica farmaceútica
dc.subject.unesco23 Química
dc.titleMonitoring membrane viscosity in differentiating stem cells using BODIPY-based molecular rotors and FLIM
dc.typejournal article
dc.type.hasVersionVoR
dc.volume.number10
dspace.entity.typePublication
relation.isAuthorOfPublicationdec7fdad-6ad2-427a-8113-8d81e6becccb
relation.isAuthorOfPublication.latestForDiscoverydec7fdad-6ad2-427a-8113-8d81e6becccb

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