首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Enthalpy and Volume Changes in Lipid Membranes. I. The Proportionality of Heat and Volume Changes in the Lipid Melting Transition and Its Implication for the Elastic Constants
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Enthalpy and Volume Changes in Lipid Membranes. I. The Proportionality of Heat and Volume Changes in the Lipid Melting Transition and Its Implication for the Elastic Constants

机译:脂质膜的焓和体积变化。 I.脂质熔化转变中热量和体积变化的比例及其对弹性常数的影响

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Differential scanning calorimetry, pressure calorimetry, and densitometry have been employed to study the relation between volume and enthalpy changes inthe melting regime of lipid membranes. We demonstrate a rigid proportional relation between volume expansion coefficient and heat capacity. This result is first shown in densitometric experiments. It implies that calorimetric profiles obey a simple scaling law for the temperature axes in experiments with applied hydrostatic pressure. In a theoretical paper (Heimburg, T. Biochim. Biophys. Acta 1998, 1415, 147-162), we have argued that this relation has far-reaching consequences for the predictiblity of elastic constants from the heat capacity. The proportionality constant between volume and enthalpy changes is found to be independent of the lipid, which has interesting consequences for the calculation of the elastic constants of biological lipid mixtures with unknown composition. We demonstrate this for lung surfactant, which displays a similar relation between volume and enthalpy changes.
机译:差示扫描量热法,压力量热法和光密度法已被用于研究脂质膜融化过程中体积与焓变之间的关系。我们证明了体积膨胀系数和热容量之间的刚性比例关系。该结果首先在光密度测定实验中显示。这意味着在施加静水压力的实验中,量热曲线符合温度轴的简单比例定律。在一篇理论论文中(Heimburg,T. Biochim。Biophys。Acta 1998,1415,147-162),我们认为这种关系对热容量对弹性常数的可预测性具有深远的影响。发现体积和焓变之间的比例常数与脂质无关,这对于计算未知组成的生物脂质混合物的弹性常数具有有趣的结果。我们为肺表面活性剂证明了这一点,它在体积和焓变之间显示出相似的关系。

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