Rapid fabrication of teflon apertures by controlled high voltage pulses for formation of free standing planar lipid bilayer membrane

dc.authorid0000-0002-3652-4266
dc.authorid0000-0003-0205-3774
dc.contributor.authorÖztürk, Yasin
dc.contributor.authorEbrahimi, Aliakbar
dc.contributor.authorDizaji, Araz Norouz
dc.contributor.authorKaygusuz, Özge
dc.contributor.authorBafna, Jayesh Arun
dc.contributor.authorWinterhalter, Mathias
dc.contributor.authorÇankaya, Güven
dc.contributor.authorDarcan, Cihan
dc.contributor.authorDoğan Güzel, Fatma
dc.date.accessioned2022-03-01T13:44:13Z
dc.date.available2022-03-01T13:44:13Z
dc.date.issued2021en_US
dc.departmentFakülteler, Fen Edebiyat Fakültesi, Moleküler Biyoloji ve Genetik Bölümü
dc.departmentRektörlük, Biyoteknoloji Uygulama ve Araştırma Merkezi
dc.description.abstractFree standing artificial lipid bilayers are widely used in the study of biological pores. In these types of studies, the free standing planar lipid bilayer is formed over a micron-sized aperture consisting of either polymer such as Polytetrafluoroethylene (PTFE, Teflon) or glass. Teflon is chemically inert, has a low dielectric constant, and has a high electrical resistance which combined allow for obtaining low noise recordings. This study investigates the reproducible generation of micropores in the range of 50–100 microns in diameter in a Teflon film using a high energy discharge set-up. The discharger set-up consists of a microprocessor, a transformer, a voltage regulator, and is controlled by a computer. We compared two approaches for pore creation: single and multi-pulse methods. The results showed that the multi-pulse method produced narrower aperture size distributions and is more convenient for lipid bilayer formation, and thus would have a higher success rate than the single-pulse method. The bilayer stability experiments showed that the lipid bilayer lasts for more than 33 h. Finally, as a proof-of-concept, we show that the single and multi-channel electrophysiology experiments were successfully performed with the apertures created by using the mentioned discharger. In conclusion, the described discharger provides reproducible Teflon-pores in a cheap and easy-to-operate manner.en_US
dc.description.pubmedpublicationidPMID: 33638734en_US
dc.description.sponsorshipTürkiye Bilimsel ve Teknolojik Araştırma Kurumu (TÜBİTAK) – SOBAG – Proje No - 117S114. The Scientific and Technological Research Council of Turkey - (TUBITAK) – SOBAG - 117S114.en_US
dc.identifier.citationOzturk, Y., Ebrahimi, A., Dizaji, A. N., Kaygusuz, O., Bafna, J. A., Winterhalter, M., ... & Guzel, F. D. (2021). Rapid fabrication of teflon apertures by controlled high voltage pulses for formation of free standing planar lipid bilayer membrane. Biomedical Microdevices, 23(1), 1-9.en_US
dc.identifier.doi10.1007/s10544-021-00553-4
dc.identifier.endpage9en_US
dc.identifier.issn1387-2176
dc.identifier.issn1572-8781
dc.identifier.issue12en_US
dc.identifier.pmid33638734
dc.identifier.scopus2-s2.0-85101974224
dc.identifier.scopusqualityQ2
dc.identifier.startpage1en_US
dc.identifier.urihttps://doi.org/10.1007/s10544-021-00553-4
dc.identifier.urihttps://hdl.handle.net/11552/2356
dc.identifier.volume23en_US
dc.identifier.wosWOS:000622719400001
dc.identifier.wosqualityQ3
dc.indekslendigikaynakPubMed
dc.indekslendigikaynakScopus
dc.indekslendigikaynakWoS
dc.indekslendigikaynakWoS - Science Citation Index Expanded
dc.institutionauthorKaygusuz, Özge
dc.institutionauthorDarcan, Cihan
dc.language.isoen
dc.publisherSpringeren_US
dc.relation.ispartofBiomedical Microdevices
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US
dc.rightsinfo:eu-repo/semantics/openAccess
dc.subjectPTFEen_US
dc.subjectMicromachiningen_US
dc.subjectMicroporeen_US
dc.subjectHigh Voltage Transformeren_US
dc.subjectLipid Bilayeren_US
dc.subjectSingle Channel Electrophysiologyen_US
dc.subjectOmpF Porinen_US
dc.titleRapid fabrication of teflon apertures by controlled high voltage pulses for formation of free standing planar lipid bilayer membrane
dc.typeArticle

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