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Spontaneous Transfer of Ganglioside GM
1
between Phospholipid Vesicles
Rhoderick E. Brown
, Thomas E. Thompson
Research output
:
Contribution to journal
›
Article
›
peer-review
27
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Scopus citations
Overview
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1
between Phospholipid Vesicles'. Together they form a unique fingerprint.
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Keyphrases
Glycolipids
100%
Glycosphingolipids
100%
Molecular Sieve
100%
Phospholipids
100%
Gangliosides
100%
Negatively Charged
100%
Total Lipids
100%
Liquid Crystalline
100%
Mole Fraction
100%
Incubation Time
100%
Flip-flop
100%
Chromatography
100%
Large Unilamellar Vesicles
100%
Interior Surfaces
100%
Transfer Rate
100%
Matrix Composition
100%
Small Unilamellar Vesicles
100%
First-order Kinetics
100%
Exterior Surface
100%
Non-transferability
100%
Transfer Kinetics
100%
Phospholipid Bilayer
100%
Cholesteryl Oleate
100%
Ethanol Injection
100%
Phospholipid Vesicles
100%
Medicine and Dentistry
Injection
100%
Lipid
100%
Glycosphingolipid
100%
Phospholipid Vesicle
100%
Carbon 14
100%
Size-Exclusion Chromatography
100%
Incubation Time
100%
Glycolipid
100%
Ganglioside
100%
Gangliotetraosylceramide
100%
Cholesterol Oleate
100%
Phospholipid Bilayer
100%
Phospholipid
100%
Alcohol
100%
Neuroscience
Phospholipid
100%
Glycolipid
100%
Lipid
100%
Ganglioside
100%
Glycosphingolipid
100%
Phospholipid Vesicle
100%
Phospholipid Bilayer
100%
Gangliotetraosylceramide
100%
Cholesterol Oleate
100%
Gel Permeation Chromatography
100%
Chemistry
Donor
100%
Phospholipid
100%
Ganglioside
100%
Unilamellar Liposome
28%
Chemical Kinetics Characteristics
14%
Size Exclusion Chromatography
14%
Sonication
14%
Kinetic Order
14%
Alcohol
14%
Glycolipid
14%
Cholesteryl Oleate
14%
Liquid Crystal
14%
Lipid
14%
Glycosphingolipid
14%
Ethanol
14%
Material Science
Size Exclusion Chromatography
100%
Kinetic Order
100%
Liquid Crystal
100%