Published June 2011 | Version v1
Journal article

Mobility of drugs in lipid membranes by NMR

  • 1. Himeji Dokkyo Univ., Faculty of Pharmaceutical Sciences, Himeji (Japan)

Description

Mobility of drugs and biomembrane constituents is a key to elucidate the membrane transport mechanism in the cell. Lipid bilayer membrane is a dynamic structure where molecules are always fluctuating under physiological conditions. The mechanism of drug transport is related to the molecular dynamics in such soft, fluid membrane interface. To gain insight into molecular movements in membranes, we develop a noninvasive method to monitor dynamics properties of drugs and lipid components in membranes by applying multinuclear high-resolution solution NMR in combination with the pulsed-field-gradient (PFG) technique. We have quantified the diffusivity, the kinetics of membrane binding, and the bound fraction of the drug in situ by using large unilamellar vesicles of egg phosphatidylcholine as model cell membranes. The combination of 1D and PFG NMR serves to quantify the kinetics of membrane binding where the bound and the free components are unable to distinguish because of the rapid exchange on the NMR timescale. A small-sized 5-fluorouracil and fluorinated bisphenol A are used as model drug. (author)

Additional details

Publishing Information

Journal Title
Oreosaiensu
Journal Volume
11
Journal Issue
6
Journal Page Range
p. 213-220
ISSN
1345-8949

Optional Information

Notes
10 refs., 10 figs., 1 tab.