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Journal Abstract Search
528 related items for PubMed ID: 22508446
1. Determination of lipid raft partitioning of fluorescently-tagged probes in living cells by Fluorescence Correlation Spectroscopy (FCS). Marquer C, Lévêque-Fort S, Potier MC. J Vis Exp; 2012 Apr 06; (62):e3513. PubMed ID: 22508446 [Abstract] [Full Text] [Related]
2. Partitioning, diffusion, and ligand binding of raft lipid analogs in model and cellular plasma membranes. Sezgin E, Levental I, Grzybek M, Schwarzmann G, Mueller V, Honigmann A, Belov VN, Eggeling C, Coskun U, Simons K, Schwille P. Biochim Biophys Acta; 2012 Jul 06; 1818(7):1777-84. PubMed ID: 22450237 [Abstract] [Full Text] [Related]
3. Some new faces of membrane microdomains: a complex confocal fluorescence, differential polarization, and FCS imaging study on live immune cells. Gombos I, Steinbach G, Pomozi I, Balogh A, Vámosi G, Gansen A, László G, Garab G, Matkó J. Cytometry A; 2008 Mar 06; 73(3):220-9. PubMed ID: 18163467 [Abstract] [Full Text] [Related]
4. Insights into lipid raft structure and formation from experiments in model membranes. London E. Curr Opin Struct Biol; 2002 Aug 06; 12(4):480-6. PubMed ID: 12163071 [Abstract] [Full Text] [Related]
5. Lipid Raft Isolation by Sucrose Gradient Centrifugation and Visualization of Raft-Located Proteins by Fluorescence Microscopy: The Use of Combined Techniques to Assess Fas/CD95 Location in Rafts During Apoptosis Triggering. Gajate C, Mollinedo F. Methods Mol Biol; 2021 Aug 06; 2187():147-186. PubMed ID: 32770506 [Abstract] [Full Text] [Related]
6. Fluorescence Correlation Spectroscopy to Examine Protein-Lipid Interactions in Membranes. Betaneli V, Mücksch J, Schwille P. Methods Mol Biol; 2019 Aug 06; 2003():415-447. PubMed ID: 31218628 [Abstract] [Full Text] [Related]
7. Immunofluorescence Labeling of Lipid-Binding Proteins CERTs to Monitor Lipid Raft Dynamics. Giovagnoni C, Crivelli SM, Losen M, Martinez-Martinez P. Methods Mol Biol; 2021 Aug 06; 2187():327-335. PubMed ID: 32770516 [Abstract] [Full Text] [Related]
9. Partitioning of membrane molecules between raft and non-raft domains: insights from model-membrane studies. Silvius JR. Biochim Biophys Acta; 2005 Dec 30; 1746(3):193-202. PubMed ID: 16271405 [Abstract] [Full Text] [Related]
10. STED microscopy detects and quantifies liquid phase separation in lipid membranes using a new far-red emitting fluorescent phosphoglycerolipid analogue. Honigmann A, Mueller V, Hell SW, Eggeling C. Faraday Discuss; 2013 Dec 30; 161():77-89; discussion 113-50. PubMed ID: 23805739 [Abstract] [Full Text] [Related]
11. Sterol carrier protein-2 selectively alters lipid composition and cholesterol dynamics of caveolae/lipid raft vs nonraft domains in L-cell fibroblast plasma membranes. Atshaves BP, Gallegos AM, McIntosh AL, Kier AB, Schroeder F. Biochemistry; 2003 Dec 16; 42(49):14583-98. PubMed ID: 14661971 [Abstract] [Full Text] [Related]
12. Uptake of long chain fatty acids is regulated by dynamic interaction of FAT/CD36 with cholesterol/sphingolipid enriched microdomains (lipid rafts). Ehehalt R, Sparla R, Kulaksiz H, Herrmann T, Füllekrug J, Stremmel W. BMC Cell Biol; 2008 Aug 13; 9():45. PubMed ID: 18700980 [Abstract] [Full Text] [Related]
13. Planar Optical Nanoantennas Resolve Cholesterol-Dependent Nanoscale Heterogeneities in the Plasma Membrane of Living Cells. Regmi R, Winkler PM, Flauraud V, Borgman KJE, Manzo C, Brugger J, Rigneault H, Wenger J, García-Parajo MF. Nano Lett; 2017 Oct 11; 17(10):6295-6302. PubMed ID: 28926278 [Abstract] [Full Text] [Related]
16. Super-resolution optical microscopy of lipid plasma membrane dynamics. Eggeling C. Essays Biochem; 2015 Oct 11; 57():69-80. PubMed ID: 25658345 [Abstract] [Full Text] [Related]
17. Fluorescent probes for lipid rafts: from model membranes to living cells. Klymchenko AS, Kreder R. Chem Biol; 2014 Jan 16; 21(1):97-113. PubMed ID: 24361047 [Abstract] [Full Text] [Related]