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Influence of the local anesthetic tetracaine on the phase behavior and the thermodynamic properties of phospholipid bilayers.

机译:局麻药丁卡因对磷脂双层的相行为和热力学性质的影响。

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摘要

We investigated the influence of the local anesthetic tetracaine on the thermodynamic properties and the temperature- and pressure-dependent phase behavior of the model biomembrane 1,2-dimyristoyl-sn-glycero-3-phosphocholine by using volumetric measurements at temperatures ranging from 0 degrees to 40 degrees C and at pressures from ambient up to 1000 bar. The pVT measurements were complemented by temperature-dependent differential scanning calorimetric measurements. Information about the influence of different concentrations of the local anesthetic on the thermodynamic changes accompanying the lipid phase transitions, and on the thermal expansion coefficient, the isothermal compressibility, and the volume fluctuations of the lipids in their different phases, could be obtained from these experiments. The incorporation of tetracaine leads to an overall disordering of the membrane, as can be inferred from the depression of the main transition temperature and the reduction of the volume change at the main lipid phase transition. The expansion coefficient alpha p and the isothermal compressibility chi T of the lipid bilayer are enhanced by the addition of tetracaine and strongly enhanced values of alpha p and chi T, and the lipid volume fluctuations are found in the direct neighborhood of the main phase transition region. As tetracaine can be viewed as a model system for amphiphilic molecules, these results also provide insight into the general understanding of the physicochemical action of amphiphilic molecules on membranes. The experimental results are compared with recent theoretical predictions for the phase behavior of anesthetic-lipid systems, and the biological relevance of this study is discussed.
机译:我们通过在0度范围内进行体积测量,研究了局麻药丁卡因对模型生物膜1,2-二肉豆蔻酰基-sn-甘油-3-磷酸胆碱的热力学性质以及温度和压力依赖性相行为的影响。到40摄氏度,环境压力高达1000巴。 pVT测量通过与温度相关的差示扫描量热法测量得到补充。可以从这些实验中获得有关不同浓度的局麻药对伴随脂质相变的热力学变化以及脂质在其不同相的热膨胀系数,等温压缩性和体积波动的影响的信息。 。丁卡因的掺入会导致膜的整体紊乱,这可以从主转变温度的降低和主脂质相转变时体积变化的减少来推断。丁卡因的加入增加了脂质双层的膨胀系数αp和等温压缩率chi T,并且αp和chi T的值大大提高,并且在主相变区的直接邻域中发现了脂质体积的波动。 。由于丁卡因可以被视为两亲分子的模型系统,因此这些结果也提供了对两亲分子在膜上的理化作用的一般理解的见识。将实验结果与麻醉脂系统的相行为的最新理论预测进行了比较,并讨论了这项研究的生物学意义。

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