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Structural relaxations of phospholipids and water in planar membranes

机译:平面膜中磷脂和水的结构弛豫

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We have used dielectric spectroscopy and temperature modulated differential scanning calorimetry (TMDSC) to investigate the structural relaxation processes and phase transitions of water and lipids in multilamellar, planar phospholipids. At low hydration levels we observe the main structural relaxation related to the glass transition of the phospholipids. With increasing water content a more pronounced pretransition, attributed to a gel to ripple phase transition, is observed in the TMDSC data. In the proximity of this pretransition, a distinct change in the temperature dependence or alternatively a bifurcation into two processes is observed in the dielectric data. Around this temperature a crossover in the long-range ionic conductivity across the membranes is also observed, which is one of the key parameters for biological membranes. Thus, the major dynamical changes do not occur at the main, i.e., the gel to liquid structural phase transition, but at a pretransition that occurs roughly 20 K below the main transition.
机译:我们已经使用介电谱和温度调制差示扫描量热法(TMDSC)来研究多层平面磷脂中水和脂质的结构弛豫过程和相变。在低水合水平下,我们观察到与磷脂的玻璃化转变有关的主要结构弛豫。随着水含量的增加,在TMDSC数据中观察到更明显的预转变,这归因于凝胶到波纹的相变。在该预转变的附近,在电介质数据中观察到温度依赖性的明显变化或可分为两个过程的分叉。在此温度附近,还观察到跨膜的远距离离子电导率的交叉,这是生物膜的关键参数之一。因此,主要的动力学变化不发生在主要的即凝胶到液体结构的相变处,而是发生在主要转变以下约20K的预转变处。

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