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Items: 1 to 20 of 104


Atomic force microscopy imaging of lipid rafts of human breast cancer cells.

Orsini F, Cremona A, Arosio P, Corsetto PA, Montorfano G, Lascialfari A, Rizzo AM.

Biochim Biophys Acta. 2012 Dec;1818(12):2943-9. doi: 10.1016/j.bbamem.2012.07.024. Epub 2012 Jul 31.


Sphingomyelin chain length influences the distribution of GPI-anchored proteins in rafts in supported lipid bilayers.

Garner AE, Smith DA, Hooper NM.

Mol Membr Biol. 2007 May-Jun;24(3):233-42.


Visualizing detergent resistant domains in model membranes with atomic force microscopy.

Rinia HA, Snel MM, van der Eerden JP, de Kruijff B.

FEBS Lett. 2001 Jul 13;501(1):92-6.


Real-time analysis of the effects of cholesterol on lipid raft behavior using atomic force microscopy.

Lawrence JC, Saslowsky DE, Edwardson JM, Henderson RM.

Biophys J. 2003 Mar;84(3):1827-32.


Chemical-physical changes in cell membrane microdomains of breast cancer cells after omega-3 PUFA incorporation.

Corsetto PA, Cremona A, Montorfano G, Jovenitti IE, Orsini F, Arosio P, Rizzo AM.

Cell Biochem Biophys. 2012 Sep;64(1):45-59. doi: 10.1007/s12013-012-9365-y.


Cholesterol modulation of membrane resistance to Triton X-100 explored by atomic force microscopy.

El Kirat K, Morandat S.

Biochim Biophys Acta. 2007 Sep;1768(9):2300-9. Epub 2007 May 22.


Targeting of Helicobacter pylori vacuolating toxin to lipid raft membrane domains analysed by atomic force microscopy.

Geisse NA, Cover TL, Henderson RM, Edwardson JM.

Biochem J. 2004 Aug 1;381(Pt 3):911-7.


Lipid rafts of purified mouse brain synaptosomes prepared with or without detergent reveal different lipid and protein domains.

Eckert GP, Igbavboa U, Müller WE, Wood WG.

Brain Res. 2003 Feb 7;962(1-2):144-50.


Placental alkaline phosphatase is efficiently targeted to rafts in supported lipid bilayers.

Saslowsky DE, Lawrence J, Ren X, Brown DA, Henderson RM, Edwardson JM.

J Biol Chem. 2002 Jul 26;277(30):26966-70. Epub 2002 May 14.


Correlated fluorescence-atomic force microscopy of membrane domains: structure of fluorescence probes determines lipid localization.

Shaw JE, Epand RF, Epand RM, Li Z, Bittman R, Yip CM.

Biophys J. 2006 Mar 15;90(6):2170-8. Epub 2005 Dec 16.


Ultrastructural localization of flotillin-1 to cholesterol-rich membrane microdomains, rafts, in rat brain tissue.

Kokubo H, Helms JB, Ohno-Iwashita Y, Shimada Y, Horikoshi Y, Yamaguchi H.

Brain Res. 2003 Mar 7;965(1-2):83-90.


Association of gamma-secretase with lipid rafts in post-Golgi and endosome membranes.

Vetrivel KS, Cheng H, Lin W, Sakurai T, Li T, Nukina N, Wong PC, Xu H, Thinakaran G.

J Biol Chem. 2004 Oct 22;279(43):44945-54. Epub 2004 Aug 17.


Lipid rafts in higher plant cells: purification and characterization of Triton X-100-insoluble microdomains from tobacco plasma membrane.

Mongrand S, Morel J, Laroche J, Claverol S, Carde JP, Hartmann MA, Bonneu M, Simon-Plas F, Lessire R, Bessoule JJ.

J Biol Chem. 2004 Aug 27;279(35):36277-86. Epub 2004 Jun 9.


Docosahexaenoic acid modifies the clustering and size of lipid rafts and the lateral organization and surface expression of MHC class I of EL4 cells.

Shaikh SR, Rockett BD, Salameh M, Carraway K.

J Nutr. 2009 Sep;139(9):1632-9. doi: 10.3945/jn.109.108720. Epub 2009 Jul 29.


Ultrastructure and lipid composition of detergent-resistant membranes derived from mammalian sperm and two types of epithelial cells.

van Gestel RA, Brouwers JF, Ultee A, Helms JB, Gadella BM.

Cell Tissue Res. 2016 Jan;363(1):129-45. doi: 10.1007/s00441-015-2272-y. Epub 2015 Sep 16.


Cholesterol drives aβ(1-42) interaction with lipid rafts in model membranes.

Seghezza S, Diaspro A, Canale C, Dante S.

Langmuir. 2014 Nov 25;30(46):13934-41. doi: 10.1021/la502966m. Epub 2014 Nov 14.


Visualizing the localization of sulfoglycolipids in lipid raft domains in model membranes and sperm membrane extracts.

Weerachatyanukul W, Probodh I, Kongmanas K, Tanphaichitr N, Johnston LJ.

Biochim Biophys Acta. 2007 Feb;1768(2):299-310. Epub 2006 Sep 15.

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