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Stability of mixed micellar bile models supersaturated with cholesterol
D. Lichtenberg
*
, S. Ragimova
, A. Bor
, S. Almog
, C. Vinkler
, M. Kalina
, Y. Peled
, Z. Halpern
*
Corresponding author for this work
Research output
:
Contribution to journal
›
Article
›
peer-review
23
Scopus citations
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Keyphrases
Cholesterol
100%
Bile
100%
Mixed Micellar System
100%
Phosphatidylcholine
76%
Bile Salts
53%
Cholate
53%
Mixed Micelles
23%
Liposomes
15%
Lipid Ratios
15%
Supersaturation Ratio
15%
Effective Ratio
15%
Salt Concentration
7%
Dissociation
7%
Lipids
7%
Lipid Concentration
7%
Cholesterol Levels
7%
Gallbladder
7%
Crystallization
7%
Mixed System
7%
Metastable System
7%
Micellar Dispersion
7%
Equilibrium Solubility
7%
Stone Formation
7%
Bile Composition
7%
Gallstone Patients
7%
Equilibrium Yield
7%
Phosphatidylcholine Complex
7%
Gallbladder Stones
7%
Complexation Effect
7%
Cholesterol Gallstone
7%
Chemistry
Cholesterol
100%
Lecithin
73%
Bile Salt
46%
Cholate
46%
Micelle
26%
Lipid
26%
Solubilization
20%
Liposome
13%
Supersaturation
13%
formation
13%
Micellar System
13%
Solubility Equilibrium
6%
Pharmacology, Toxicology and Pharmaceutical Science
Cholesterol
100%
Egg Lecithin
78%
Bile Salt
50%
Cholic Acid
50%
Lipid
28%
Micelle
28%
Liposome
14%
Micellar System
14%
Stone Formation
7%
Cholelithiasis
7%
Cholesterol Stone
7%