Molecular Mechanism of Cyclodextrin Mediated Cholesterol Extraction
DYNAMICS
Models, Molecular
0301 basic medicine
Cyclodextrins
DERIVATIVES
QH301-705.5
MONOLAYERS
INCLUSION
Molecular Dynamics Simulation
MEMBRANES
BETA-CYCLODEXTRIN
Kinetics
03 medical and health sciences
REMOVAL
Cholesterol
Thermodynamics
Biology (General)
STEROLS
Research Article
DOI:
10.1371/journal.pcbi.1002020
Publication Date:
2011-03-24T20:53:54Z
AUTHORS (3)
ABSTRACT
The depletion of cholesterol from membranes, mediated by β-cyclodextrin (β-CD) is well known and documented, but the molecular details of this process are largely unknown. Using molecular dynamics simulations, we have been able to study the CD mediated extraction of cholesterol from model membranes, in particular from a pure cholesterol monolayer, at atomic resolution. Our results show that efficient cholesterol extraction depends on the structural distribution of the CDs on the surface of the monolayer. With a suitably oriented dimer, cholesterol is extracted spontaneously on a nanosecond time scale. Additional free energy calculations reveal that the CDs have a strong affinity to bind to the membrane surface, and, by doing so, destabilize the local packing of cholesterol molecules making their extraction favorable. Our results have implications for the interpretation of experimental measurements, and may help in the rational design of efficient CD based nano-carriers.
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