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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Differential scanning calorimetric studies on the thermotropic phase transitions of dry and hydrated forms of N-acylethanolamines of even chainlengths
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Differential scanning calorimetric studies on the thermotropic phase transitions of dry and hydrated forms of N-acylethanolamines of even chainlengths

机译:差示扫描量热法研究均匀链长的N-酰基乙醇胺的干燥和水合形式的热致相变

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N-acylethanolamines (NAEs) have attracted the attention of researchers in the last two decades due to their occurrence in biological membranes under conditions of stress as well as under normal conditions. Differential scanning calorimetric studies have been carried out on dry and hydrated samples of a homologous series of N-acylethanolamines containing saturated acyl chains of even number of carbon atoms (n=8–20). In both cases a major sharp endothermic transition was observed which occurs at the melting point for the dry NAEs whereas for the hydrated samples it occurs at considerably lower temperatures. The enthalpies and entropies corresponding to this transition could be fitted, in each case, to a straight line suggesting that the transition enthalpy and transition entropy consist of a fixed component from the polar head group and the terminal methyl group, whereas the contribution of the methylene groups, (CH2)n, is linearly proportional to the number of carbon atoms in it. The contributions of each methylene unit to the transition enthalpy and transition entropy of NAEs were found to be ΔHinc=0.82 (±0.02) and 0.96 (±0.06) kcal mol?1, and ΔSinc=2.01 (±0.06) and 2.37 (±0.17) cal mol?1 K?1, respectively, for the dry and hydrated samples of NAEs, whereas the end contributions arising from the head group and the terminal methyl group were determined to be ΔHo=?0.10 (±0.26) and ?0.52 (±0.82) kcal mol?1 and ΔSo=2.12 (±0.71) and 3.1 (±2.3) cal mol?1 K?1, respectively, for the dry and hydrated samples of NAEs. These results are relevant to an understanding of the thermodynamics of the phase properties of NAEs in membranes.
机译:在过去的二十年中,N-酰基乙醇胺(NAE)由于在压力条件下以及在正常条件下在生物膜中的存在而引起了研究人员的注意。差示扫描量热法研究是对含有相同碳原子数(n = 8-20)的饱和酰基链的N-酰基乙醇胺的一系列同源的干燥和水合样品进行的。在这两种情况下,都观察到主要的急剧吸热转变,这发生在干燥的NAE的熔点上,而对于水合样品,它发生在相当低的温度下。每种情况下,与该跃迁相对应的焓和熵都可以拟合为一条直线,这表明跃迁焓和跃迁熵由极性头基和末端甲基中的固定组分组成,而亚甲基的贡献(CH 2)n基团与其中的碳原子数成线性比例。发现每个亚甲基单元对NAEs的跃迁焓和跃迁熵的贡献为ΔHinc= 0.82(±0.02)和0.96(±0.06)kcal mol?1,ΔSinc= 2.01(±0.06)和2.37(±0.17)kcal mol?1。 )分别为干燥和水合的NAE样品的mol mol?1 K?1,而由头基和末端甲基产生的最终贡献被确定为ΔHo=?0.10(±0.26)和?0.52(对于NAE的干燥和水合样品,分别为±0.82 kcal mol?1和ΔSo= 2.12(±0.71)和3.1(±2.3)cal mol?1 K?1。这些结果与理解膜中NAE的相性质的热力学有关。

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