抄録
Effects of general anesthesia can be controllable by the ambient pressure. We perform molecular dynamics simulations for a 1-palmitoyl-2-oleoyl phosphatidylethanolamine lipid bilayer with or without xenon molecules by changing the pressure to elucidate the mechanism of the pressure reversal of general anesthesia. According to the diffusive nature of xenon molecules in the lipid bilayer, a decrease in the orientational order of the lipid tails, an increase in the area and volume per lipid molecule, and an increase in the diffusivity of lipid molecules are observed. We show that the properties of the lipid bilayer with xenon molecules at high pressure come close to those without xenon molecules at 0.1 MPa. Furthermore, we find that xenon molecules are concentrated in the middle of the lipid bilayer at high pressures by the pushing effect and that the diffusivity of xenon molecules is suppressed. These results suggest that the pressure reversal originates from a jamming and suppression of the diffusivity of xenon molecules in lipid bilayers.
| 本文言語 | English |
|---|---|
| ページ(範囲) | 8989-8995 |
| ページ数 | 7 |
| ジャーナル | Journal of Physical Chemistry B |
| 巻 | 116 |
| 号 | 30 |
| DOI | |
| 出版ステータス | Published - 2012 8月 2 |
ASJC Scopus subject areas
- 物理化学および理論化学
- 表面、皮膜および薄膜
- 材料化学
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