Anesthetic diffusion through lipid membranes depends on the protonation rate.
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Muscle-Type Nicotinic Receptor Modulation by 2,6-Dimethylaniline, a Molecule Resembling the Hydrophobic Moiety of Lidocaine.Study of procaine and tetracaine in the lipid bilayer using molecular dynamics simulation.Molecular Mechanism of Resveratrol's Lipid Membrane Protection.Water in the human body: An anesthesiologist's perspective on the connection between physicochemical properties of water and physiologic relevance.Mechanisms Underlying the Strong Inhibition of Muscle-Type Nicotinic Receptors by Tetracaine
P2860
Anesthetic diffusion through lipid membranes depends on the protonation rate.
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Anesthetic diffusion through lipid membranes depends on the protonation rate.
@en
Anesthetic diffusion through lipid membranes depends on the protonation rate.
@nl
type
label
Anesthetic diffusion through lipid membranes depends on the protonation rate.
@en
Anesthetic diffusion through lipid membranes depends on the protonation rate.
@nl
prefLabel
Anesthetic diffusion through lipid membranes depends on the protonation rate.
@en
Anesthetic diffusion through lipid membranes depends on the protonation rate.
@nl
P2093
P2860
P356
P1433
P1476
Anesthetic diffusion through lipid membranes depends on the protonation rate.
@en
P2093
F J Sierra-Valdez
J C Ruiz-Suárez
Rosendo Pérez-Isidoro
P2860
P2888
P356
10.1038/SREP07534
P407
P577
2014-12-18T00:00:00Z