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Relaxation dynamics of the gel to liquid-crystalline transition of phosphatidylcholine bilayers. Effects of chainlength and vesicle size.

机译:凝胶向磷脂酰胆碱双层液晶转变的弛豫动力学。链长和囊泡大小的影响。

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摘要

The relaxation kinetics of the gel to liquid-crystalline transition of five phosphatidylcholine (DC14PC to DC18PC) bilayer dispersions have been investigated using volume perturbation calorimetry, a steady-state technique which subjects a sample to sinusoidal changes in volume. Temperature and pressure responses to the volume perturbation are measured to monitor the relaxation to a new equilibrium position. The amplitude demodulation and phase shift of these observables are analyzed with respect to the perturbation frequency to yield relaxation times and amplitudes. In the limit of low perturbation frequency, the temperature and pressure responses are proportional to the equilibrium excess heat capacity and bulk modulus, respectively. At all temperatures, the thermal response data are consistent with a single primary relaxation process of the lipid. The less accurate bulk modulus data exhibit two relaxation times, but it is not clear whether they reflect lipid processes or are characteristic of the instrument. The observed thermal relaxation behavior of all multilamellar vesicles are quantitatively similar. The relaxation times vary from approximately 50 ms to 4 s, with a pronounced maximum at a temperature just greater than Tm, the temperature of the excess heat capacity maximum. Large unilamellar vesicles also exhibit a single relaxation process, but without a pronounced maximum in the relaxation time. Their relaxation time is approximately 80 ms over most of the transition range.
机译:使用体积扰动量热法研究了五种磷脂酰胆碱(DC14PC到DC18PC)双层分散体从凝胶到液晶转变的弛豫动力学,这是一种稳态技术,使样品的体积呈正弦变化。测量对体积扰动的温度和压力响应,以监测松弛到新的平衡位置。相对于扰动频率,分析这些可观察物的振幅解调和相移,以产生弛豫时间和振幅。在低摄动频率的极限下,温度和压力响应分别与平衡过剩热容量和体积模量成比例。在所有温度下,热响应数据均与脂质的一次松弛过程一致。不太准确的体积模量数据显示了两个弛豫时间,但尚不清楚它们是否反映脂质过程或仪器的特征。观察到的所有多层囊泡的热松弛行为在数量上是相似的。弛豫时间从大约50 ms到4 s不等,在温度刚好大于Tm(过大热容量的温度)时,最大值明显。大的单层囊泡也表现出单一的松弛过程,但是松弛时间没有明显的最大值。在大多数过渡范围内,它们的弛豫时间约为80 ms。

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