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氘核磁共振研究正构烷醇麻醉剂对模型膜系统的影响。

Deuterium NMR study of the effect of n-alkanol anesthetics on a model membrane system.

作者信息

Thewalt J L, Wassall S R, Gorrissen H, Cushley R J

出版信息

Biochim Biophys Acta. 1985 Jul 25;817(2):355-65. doi: 10.1016/0005-2736(85)90038-0.

Abstract

The effects of 25 mol% incorporation of two anesthetics, 1-octanol and 1-decanol, on a deuterated, saturated phospholipid in 50 wt% aqueous multilamellar dispersions have been studied by 2H-NMR spectroscopy and differential scanning calorimetry (DSC). The phospholipid used is sn-2 substituted '[2H31]-palmitoylphosphatidylcholine' (PC-d31). DSC thermograms demonstrate that PC-d31 has phase behavior qualitatively similar to that of dipalmitoylphosphatidylcholine, with a pretransition at 31 degrees C and a main gel to liquid crystalline transition at 40 degrees C. Analysis of the temperature-dependent 2H-NMR spectra in terms of the first moment, which is extremely sensitive to the phospholipid phase, shows that 1-octanol and 1-decanol depress and broaden the main transition. This is confirmed by DSC, which shows that the pretransition is eliminated by the 1-alkanols. The carbon-deuterium bond order of the phospholipid deuterated acyl chains, in the presence and absence of 1-alkanols, was determined from deuterium quadrupolar splittings. Spectra were analyzed using the depaking technique. A 1-alkanol concentration of 25 mol% had no significant effect on the profile of the carbon-deuterium bond order parameter SCD along the phospholipid acyl chain at 50 degrees C. Thus, it appears that the liquid crystalline phase is able to accommodate large amounts of linear anesthetic molecules without substantial effect on molecular ordering within the membrane bilayer. Preliminary results show that the transverse relaxation rates of the acyl chain segments are significantly decreased by the presence of 1-octanol or 1-decanol.

摘要

通过2H核磁共振光谱法和差示扫描量热法(DSC),研究了两种麻醉剂1-辛醇和1-癸醇以25摩尔%的比例掺入50 wt%水性多层分散体中的氘代饱和磷脂中的影响。所使用的磷脂是sn-2取代的“[2H31]-棕榈酰磷脂酰胆碱”(PC-d31)。DSC热谱图表明,PC-d31的相行为在定性上与二棕榈酰磷脂酰胆碱相似,在31℃有一个预转变,在40℃有一个主要的凝胶到液晶转变。根据对磷脂相极其敏感的一阶矩对温度依赖性2H核磁共振光谱进行分析,结果表明1-辛醇和1-癸醇会降低并拓宽主要转变。DSC证实了这一点,其表明1-链烷醇消除了预转变。根据氘四极分裂确定了在存在和不存在1-链烷醇的情况下磷脂氘代酰基链的碳-氘键序。使用解包技术对光谱进行分析。25摩尔%的1-链烷醇浓度对50℃时沿磷脂酰基链的碳-氘键序参数SCD的分布没有显著影响。因此,看来液晶相能够容纳大量线性麻醉剂分子,而对膜双层内的分子有序性没有实质性影响。初步结果表明,1-辛醇或1-癸醇的存在会显著降低酰基链段的横向弛豫速率。

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