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Interaction between Artificial Membranes and Enflurane a General Volatile Anesthetic: DPPC-Enflurane Interaction

机译:人工膜与恩氟烷之间的相互作用一种通用的挥发性麻醉剂:DPPC-恩氟烷相互作用

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摘要

The structural modifications of the dipalmitoylphosphatidylcholine (DPPC) organization induced by increasing concentration of the volatile anesthetic enflurane have been studied by differential scanning calorimetry, small-angle, and wide-angle x-ray scattering. The interaction of enflurane with DPPC depends on at least two factors: the enflurane-to-lipid concentration ratio and the initial organization of the lipids. At 25°C (gel state), the penetration of enflurane within the lipids induces the apparition of two different mixed lipid phases. At low anesthetic-to-lipid molar ratio, the smectic distance increases whereas the direction of the chain tilt changes from a tilt toward next-neighbors to a tilt between next-neighbors creating a new gel phase called Lβ′2NNN. At high ratio, the smectic distance is much smaller than for the pure Lβ′ DPPC phase, i.e., 50 Å compared to 65 Å, the aliphatic chains are perpendicular to the membrane and the fusion temperature of the phase is 33°C. The electron profile of this phase that has been called Lβi, indicates that the lipids are fully interdigitated. At 45°C (fluid state), a new melted phase, called Lα2, was found, in which the smectic distance decreased compared to the initial pure Lα1 DPPC phase. The thermotropic behavior of the mixed phases has also been characterized by simultaneous x-ray scattering and differential scanning calorimetry measurements using the Microcalix calorimeter of our own. Finally, titration curves of enflurane effect in the mixed lipidic phase has been obtained by using the fluorescent lipid probe Laurdan. Measurements as a function of temperature or at constant temperature, i.e., 25°C and 45°C give, for the maximal effect, an enflurane-to-lipid ratio (M/M), within the membrane, of 1 and 2 for the Lα2 and the Lβi lamellar phase respectively. All the results taken together allowed to draw a pseudo-binary phase diagram of enflurane-dipalmitoylphosphatidylcholine in excess water.
机译:通过差示扫描量热法,小角度和广角X射线散射研究了由于挥发性麻醉剂环戊烯浓度增加而引起的二棕榈酰磷脂酰胆碱(DPPC)组织的结构修饰。 flu烯与DPPC的相互作用至少取决于两个因素:en烯与脂质的浓度比和脂质的初始组成。在25°C(凝胶态)下,环戊烯在脂质内的渗透会导致出现两种不同的混合脂质相。在麻醉剂与脂质的摩尔比低的情况下,近晶距离增加,而链倾斜的方向则从向相邻邻居的倾斜改变为相邻邻居之间的倾斜,从而形成了一种新的凝胶相,称为Lβ' 2NNN 。在高比率下,近晶距离远小于纯Lβ'DPPC相的近晶距离,即与65Å相比,相近距离为50Å,脂族链垂直于膜,该相的熔融温度为33°C。该相的电子图谱称为Lβ i ,表明脂质已完全相互交叉。在45°C(流体状态)下,发现了一个新的熔融相,称为Lα 2 ,其中近晶距离比初始的纯Lα 1 DPPC相减小。混合相的热致行为也通过使用我们自己的Microcalix量热仪同时进行X射线散射和差示扫描量热法进行了表征。最后,通过使用荧光脂质探针Laurdan获得了在混合脂质相中恩氟烷效果的滴定曲线。根据温度或在恒定温度(即25°C和45°C)下的测量结果,为获得最大效果,膜内的环戊烯与脂类之比(M / M)为1和2。 Lα 2 和Lβ i 层状相。综合所有结果,可以绘制出过量水中恩氟烷-二棕榈酰磷脂酰胆碱的假二元相图。

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