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Pracoviště
Abbe Center of Photonics Friedrich Schiller ... 1 Department of Biophysical Chemistry J Heyrov... 1 Department of Biotechnology and Biophysics B... 1 Department of Electrochemical Materials J He... 1 Department of Physics SUPA University of Str... 1 Institute of Applied Optics and Biophysics F... 1 Jena Center for Soft Matter Friedrich Schill... 1 Laboratory of Leukocyte Signalling Institute... 1
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"EP/N509760/1" Dotaz Zobrazit nápovědu
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Franke, Christian
Autor Franke, Christian ORCID Institute of Applied Optics and Biophysics, Friedrich Schiller University Jena, Jena, Germany. christian.franke@uni-jena.de Jena Center for Soft Matter, Friedrich Schiller University Jena, Jena, Germany. christian.franke@uni-jena.de Abbe Center of Photonics, Friedrich Schiller University Jena, Jena, Germany. christian.franke@uni-jena.de
- Chum, Tomáš
- Kvíčalová, Zuzana
- Glatzová, Daniela
- Gentsch, Gregor Jörg
- Rodriguez, Alvaro
- Helmerich, Dominic A
- Herdly, Lucas
- Mavila, Harsha
- Frank, Otakar
NLK
Directory of Open Access Journals
od 2018
PubMed Central
od 2018
Europe PubMed Central
od 2018
ProQuest Central
od 2018-01-01
ROAD: Directory of Open Access Scholarly Resources
od 2018
Springer Nature OA/Free Journals
od 2018-12-01
Springer Nature - nature.com Journals - Fully Open Access
od 2018-12-01
PubMed
35264712
DOI
10.1038/s42003-022-03152-y
Knihovny.cz E-zdroje
Cells communicate with their environment via surface receptors, but nanoscopic receptor organization with respect to complex cell surface morphology remains unclear. This is mainly due to a lack of accessible, robust and high-resolution methods. Here, we present an approach for mapping the topography of receptors at the cell surface with nanometer precision. The method involves coating glass coverslips with glycine, which preserves the fine membrane morphology while allowing immobilized cells to be positioned close to the optical surface. We developed an advanced and simplified algorithm for the analysis of single-molecule localization data acquired in a biplane detection scheme. These advancements enable direct and quantitative mapping of protein distribution on ruffled plasma membranes with near isotropic 3D nanometer resolution. As demonstrated successfully for CD4 and CD45 receptors, the described workflow is a straightforward quantitative technique to study molecules and their interactions at the complex surface nanomorphology of differentiated metazoan cells.
- MeSH
- buněčná membrána metabolismus MeSH
- nanotechnologie * MeSH
- receptory buněčného povrchu * metabolismus MeSH
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