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The influence of membrane physical properties on microvesicle release in human erythrocytes.
Gonzalez LJ, Gibbons E, Bailey RW, Fairbourn J, Nguyen T, Smith SK, Best KB, Nelson J, Judd AM, Bell JD.
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Mechanisms by which intracellular calcium induces susceptibility to secretory phospholipase A2 in human erythrocytes.
Smith SK, Farnbach AR, Harris FM, Hawes AC, Jackson LR, Judd AM, Vest RS, Sanchez S, Bell JD.
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Use of steady-state laurdan fluorescence to detect changes in liquid ordered phases in human erythrocyte membranes.
Vest R, Wallis R, Jensen LB, Haws AC, Callister J, Brimhall B, Judd AM, Bell JD.
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Calcium induces phospholipid redistribution and microvesicle release in human erythrocyte membranes by independent pathways.
Bucki R, Bachelot-Loza C, Zachowski A, Giraud F, Sulpice JC.
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Use of fluorescence to determine the effects of cholesterol on lipid behavior in sphingomyelin liposomes and erythrocyte membranes.
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Physical properties of erythrocyte ghosts that determine susceptibility to secretory phospholipase A2.
Harris FM, Smith SK, Bell JD.
J Biol Chem. 2001 Jun 22;276(25):22722-31. Epub 2001 Apr 9.PMID: 11294853 [PubMed - indexed for MEDLINE]Related articlesFree article
Differential detection of phospholipid fluidity, order, and spacing by fluorescence spectroscopy of bis-pyrene, prodan, nystatin, and merocyanine 540.
Wilson-Ashworth HA, Bahm Q, Erickson J, Shinkle A, Vu MP, Woodbury D, Bell JD.
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Restricted diffusion of integral membrane proteins and polyphosphoinositides leads to their depletion in microvesicles released from human erythrocytes.
Hagelberg C, Allan D.
Biochem J. 1990 Nov 1;271(3):831-4.PMID: 2173910 [PubMed - indexed for MEDLINE]Related articlesFree article
Effects of cholesterol on physical properties of human erythrocyte membranes: impact on susceptibility to hydrolysis by secretory phospholipase A2.
Heiner AL, Gibbons E, Fairbourn JL, Gonzalez LJ, McLemore CO, Brueseke TJ, Judd AM, Bell JD.
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Direct inhibition of phospholipid scrambling activity in erythrocytes by potassium ions.
Wolfs JL, Comfurius P, Bekers O, Zwaal RF, Balasubramanian K, Schroit AJ, Lindhout T, Bevers EM.
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Divalent cations increase lipid order in erythrocytes and susceptibility to secretory phospholipase A2.
Vest RS, Gonzales LJ, Permann SA, Spencer E, Hansen LD, Judd AM, Bell JD.
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Relationship between erythrocyte membrane phase properties and susceptibility to secretory phospholipase A2.
Best KB, Ohran AJ, Hawes AC, Hazlett TL, Gratton E, Judd AM, Bell JD.
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Probing HIV-1 membrane liquid order by Laurdan staining reveals producer cell-dependent differences.
Lorizate M, Brügger B, Akiyama H, Glass B, Müller B, Anderluh G, Wieland FT, Kräusslich HG.
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Loss of phospholipid membrane asymmetry and sialylated glycoconjugates from erythrocyte surface in haemoglobin E beta-thalassaemia.
Basu S, Banerjee D, Chandra S, Chakrabarti A.
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Induction of acetylcholinesterase release from erythrocytes in the presence of liposomes.
Suzuki K, Okumura Y, Sunamoto J.
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Monitoring biophysical properties of lipid membranes by environment-sensitive fluorescent probes.
Demchenko AP, Mély Y, Duportail G, Klymchenko AS.
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Membrane cholesterol in the regulation of aminophospholipid asymmetry and phagocytosis in oxidized erythrocytes.
López-Revuelta A, Sánchez-Gallego JI, García-Montero AC, Hernández-Hernández A, Sánchez-Yagüe J, Llanillo M.
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Study on membrane fluidity and erythrocyte aggregation in equine, bovine and human species.
Spengler MI, Bertoluzzo SM, Catalani G, Rasia ML.
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Cell culturing in a three-dimensional matrix affects the localization and properties of plasma membrane cholesterol.
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Facilitated phospholipid translocation in vesicles and nucleated cells using synthetic small molecule scramblases.
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