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dc.contributor.authorKulbacka, Julita
dc.contributor.authorRembiałkowska, Nina
dc.contributor.authorSzewczyk, Anna
dc.contributor.authorMoreira, Helena
dc.contributor.authorSzyjka, Anna
dc.contributor.authorGirkontaitė, Irutė
dc.contributor.authorGrela, Kamil P.
dc.contributor.authorNovickij, Vitalij
dc.date.accessioned2023-09-18T20:45:27Z
dc.date.available2023-09-18T20:45:27Z
dc.date.issued2021
dc.identifier.issn2072-6694
dc.identifier.other(PMID)34203184
dc.identifier.urihttps://etalpykla.vilniustech.lt/handle/123456789/152369
dc.description.abstract(1) Background: Calcium electroporation (CaEP) is based on the application of electrical pulses to permeabilize cells (electroporation) and allow cytotoxic doses of calcium to enter the cell. (2) Methods: In this work, we have used doxorubicin-resistant (DX) and non-resistant models of human breast cancer (MCF-7/DX, MCF-7/WT) and colon cancer cells (LoVo, LoVo/DX), and investigated the susceptibility of the cells to extracellular Ca2+ and electric fields in the 20 ns-900 ns pulse duration range. (3) Results: We have observed that colon cancer cells were less susceptible to PEF than breast cancer cells. An extracellular Ca2+ (2 mM) with PEF was more disruptive for DX-resistant cells. The expression of glycoprotein P (MDR1, P-gp) as a drug resistance marker was detected by the immunofluorescent (CLSM) method and rhodamine-123 efflux as an MDR1 activity. MDR1 expression was not significantly modified by nanosecond electroporation in multidrug-resistant cells, but a combination with calcium ions significantly inhibited MDR1 activity and cell viability. (4) Conclusions: We believe that PEF with calcium ions can reduce drug resistance by inhibiting drug efflux activity. This phenomenon of MDR mechanism disruption seems promising in anticancer protocols.eng
dc.formatPDF
dc.format.extentp. 1-17
dc.format.mediumtekstas / txt
dc.language.isoeng
dc.relation.isreferencedbyScience Citation Index Expanded (Web of Science)
dc.relation.isreferencedbyScopus
dc.relation.isreferencedbyDOAJ
dc.relation.isreferencedbyPubMed
dc.source.urihttps://doi.org/10.3390/cancers13133216
dc.titleThe impact of extracellular Ca2+ and nanosecond electric pulses on sensitive and drug-resistant human breast and colon cancer cells
dc.typeStraipsnis Web of Science DB / Article in Web of Science DB
dcterms.accessRightsThis article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https:// creativecommons.org/licenses/by/ 4.0/)
dcterms.licenseCreative Commons – Attribution – 4.0 International
dcterms.references61
dc.type.pubtypeS1 - Straipsnis Web of Science DB / Web of Science DB article
dc.contributor.institutionWroclaw Medical University
dc.contributor.institutionWroclaw Medical University University of Wroclaw
dc.contributor.institutionWroclaw Medical University Department of Animal Developmental Biology, Institute of Experimental Biology, University of Wroclaw
dc.contributor.institutionValstybinis mokslinių tyrimų institutas Inovatyvios medicinos centras
dc.contributor.institutionVilniaus Gedimino technikos universitetas
dc.contributor.facultyElektronikos fakultetas / Faculty of Electronics
dc.subject.researchfieldT 001 - Elektros ir elektronikos inžinerija / Electrical and electronic engineering
dc.subject.researchfieldN 010 - Biologija / Biology
dc.subject.vgtuprioritizedfieldsMC0404 - Bionika ir biomedicinos inžinerinės sistemos / Bionics and Biomedical Engineering Systems
dc.subject.ltspecializationsL105 - Sveikatos technologijos ir biotechnologijos / Health technologies and biotechnologies
dc.subject.encalcium ions
dc.subject.enelectroporation drug resistance
dc.subject.enhuman adenocarcinoma
dc.subject.enmembrane permeabilization
dcterms.sourcetitleCancers: Special Issue Calcium Signaling Remodeling and Functional Role in Cancer Cells
dc.description.issueiss. 13
dc.description.volumevol. 13
dc.publisher.nameMDPI
dc.publisher.cityBasel
dc.identifier.doi34203184
dc.identifier.doi3216
dc.identifier.doi000670984000001
dc.identifier.doi10.3390/cancers13133216
dc.identifier.elaba99853288


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