Cholesterol strongly affects the organization of lipid monolayers studied as models of the milk fat globule membrane: Condensing effect and change in the lipid domain morphology (original ) (raw )Lipid rafts in the bovine milk fat globule membrane revealed by the lateral segregation of phospholipids and heterogeneous distribution of glycoproteins
Rafael Jiménez-flores
Food Chemistry, 2010
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β-Casein–phospholipid monolayers as model systems to understand lipid–protein interactions in the milk fat globule membrane
Derek Gragson , David W Everett
International Dairy Journal, 2012
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The Condensing Effect of Cholesterol in Lipid Bilayers
Wei-Chin Hung
Biophysical Journal, 2007
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Condensation of Model Lipid Films by Cholesterol: Specific Ion Effects
Teresa del Castillo Santaella
Coatings
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Intrinsic molecules in lipid membranes change the lipid-domain interfacial area: cholesterol at domain interfaces
John Hjort Ipsen
Biochimica et Biophysica Acta (BBA) - Biomembranes, 1989
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Interactions between cholesterol and lipids in bilayer membranes. Role of lipid headgroup and hydrocarbon chain–backbone linkage
Saubhik Haldar
Biochimica Et Biophysica Acta-biomembranes, 2000
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Interaction of cholesterol with galactocerebroside and galactocerebroside-phosphatidylcholine bilayer membranes
Martin J Ruocco
Biophysical Journal, 1984
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Interactions of Cholesterol with Lipid Bilayers: The Preferred Configuration and Fluctuations
Sylvio May
Biophysical Journal, 2001
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Effects of Cholesterol on Dry Bilayers: Interactions between Phosphatidylcholine Unsaturation and Glycolipid or Free Sugar
Antoaneta Popova
Biophysical Journal, 2007
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Glycolipid–cholesterol monolayers: Towards a better understanding of the interaction between the membrane components
Beata Korchowiec , Ewa Rogalska
Biochimica et Biophysica Acta (BBA) - Biomembranes, 2011
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Preparation and structural studies of cholesterol bilayers
Leslie Ramsammy
Biochimica Et Biophysica Acta-biomembranes, 1982
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The effects of cholesterol inclusion on the molecular organisation of bimolecular lipid membranes
Hans Coster
Biochimica et Biophysica Acta (BBA) - Biomembranes, 1983
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Fluid-Phase Chain Unsaturation Controlling Domain Microstructure and Phase in Ternary Lipid Bilayers Containing GalCer and Cholesterol
Marjorie Longo
Biophysical Journal, 2007
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The effect of cholesterol on lipid dynamics and packing in diether phosphatidylcholine bilayers. X-ray diffraction and 2H-NMR study
Robert Griffin
Biochimica et Biophysica Acta (BBA) - Biomembranes, 1987
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Influence of cholesterol on phospholipid bilayers phase domains as detected by Laurdan fluorescence
Tiziana Parasassi
Biophysical Journal, 1994
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The effect of cholesterol in small amounts on lipid-bilayer softness in the region of the main phase transition
Kell Mortensen
European Biophysics Journal, 1997
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Lateral lipid organization of the bovine milk fat globule membrane is revealed by washing processes
David W Everett
Journal of dairy science, 2014
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Partial molecular volumes of cholesterol and phosphatidylcholine in mixed bilayers
P. Balgavý
European Pharmaceutical Journal, 2017
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Solutes in small amounts provide for lipid-bilayer softness: cholesterol, short-chain lipids, and bola lipids
Kell Mortensen
European Biophysics Journal, 1996
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Fat globules selected from whole milk according to their size: Different compositions and structure of the biomembrane, revealing sphingomyelin-rich domains
Jacques Fauquant
Food Chemistry, 2011
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Surface Characterization of Bovine Milk Phospholipid Monolayers by Langmuir Isotherms and Microscopic Techniques
Rafael Jiménez-flores
Journal of Agricultural and Food Chemistry, 2010
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Cholesterol-Induced Modifications in Lipid Bilayers: A Simulation Study
Eric Jakobsson
Biophysical Journal, 2002
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Properties of unsaturated phospholipid bilayers: effect of cholesterol
Andrey Filippov
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Milk Sphingomyelin Domains in Biomimetic Membranes and the Role of Cholesterol: Morphology and Nanomechanical Properties Investigated Using AFM and Force Spectroscopy
Véronique Vie
Langmuir, 2014
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The Effect of Cholesterol on the Lateral Diffusion of Phospholipids in Oriented Bilayers
G. Oradd , Andrey Filippov , G. Lindblom
Biophysical Journal, 2003
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