Xenon NMR: chemical shifts of a general anesthetic in common solvents, proteins, and membranes.
- 1 August 1981
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 78 (8) , 4946-4949
- https://doi.org/10.1073/pnas.78.8.4946
Abstract
The rare gas xenon contains two NMR-sensitive isotopes in high natural abundance. The nuclide 129Xe has a spin of 1/2: 131Xe is quadrupolar with a spin of 3/2. The complementary NMR characteristics of these nuclei provide a unique opportunity for probing their environment. The method is widely applicable because xenon interacts with a useful range of condensed phases including pure liquids, protein solutions, and suspensions of lipid and biological membranes. Although xenon is chemically inert, it does interact with living systems; it is an effective general anesthetic. We have found that the range of chemical shifts of 129Xe dissolved in common solvents is ca. 200 ppm, which is 30 times larger than that found for 13C in methane dissolved in various solvents. Resonances were also observed for 131Xe in some systems; they were broader and exhibited much greater relaxation rates than did 129Xe. The use of 129Xe NMR as a probe of biological systems was investigated. Spectra were obtained from solutions of myoglobin, from suspensions of various lipid bilayers, and from suspensions of the membranes of erythrocytes and of the acetylcholine receptor-rich membranes of Torpedo californica. These systems exhibited a smaller range of chemical shifts. In most cases there was evidence of a fast exchange of xenon between the aqueous and organic environments, but the exchange was slow in suspensions of dimyristoyl lecithin vesicles.This publication has 11 references indexed in Scilit:
- Tissue-blood partition coefficient for xenon: temperature and hematocrit dependenceJournal of Applied Physiology, 1980
- Physical Mechanisms of AnesthesiaAnnual Review of Pharmacology and Toxicology, 1979
- COUPLING BETWEEN ANESTHETIC INDUCED MEMBRANE FLUIDIZATION AND CATION PERMEABILITY IN LIPID VESICLES1979
- Where do general anaesthetics act?Nature, 1978
- Halothane fluorine-19 nuclear magnetic resonance in dipalmitoylphosphatidylcholine liposomesBiochemistry, 1977
- SOLVENT EFFECTS ON HALOTHANE - F-19 NUCLEAR MAGNETIC-RESONANCE IN SOLVENTS AND ARTIFICIAL MEMBRANES1977
- Localization of Molecular Halothane in Phospholipid Bilayer Model Nerve MembranesAnesthesiology, 1976
- Purification fromTorpedo marmorata electric tissue of membrane fragments particularly rich in cholinergic receptor proteinFEBS Letters, 1972
- Structure of alkaline metmyoglobin-xenon complexJournal of Molecular Biology, 1969
- Binding of Xenon to Horse HaemoglobinNature, 1965