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不同平面脂质双层的特定电容和电压击穿与温度的关系。

Specific electrical capacitance and voltage breakdown as a function of temperature for different planar lipid bilayers.

机构信息

University of Ljubljana, Faculty of Electrical Engineering, Slovenia.

出版信息

Bioelectrochemistry. 2016 Dec;112:132-7. doi: 10.1016/j.bioelechem.2016.02.009. Epub 2016 Feb 26.

Abstract

The breakdown voltage and specific electrical capacitance of planar lipid bilayers formed from lipids isolated from the membrane of archaeon Aeropyrum pernix K1 as a function of temperature were studied and compared with data obtained previously in MD simulation studies. Temperature dependence of breakdown voltage and specific electrical capacitance was measured also for dipalmitoylphosphatidylcholine (DPPC) bilayers and bilayers formed from mixture of diphytanoylphosphocholine (DPhPC) and DPPC in ratio 80:20. The breakdown voltage of archaeal lipids planar lipid bilayers is more or less constant until 50°C, while at higher temperatures a considerable drop is observed, which is in line with the results from MD simulations. The breakdown voltage of DPPC planar lipid bilayer at melting temperature is considerably higher than in the gel phase. Specific electrical capacitance of planar lipid bilayers formed from archaeal lipids is approximately constant for temperatures up to 40°C and then gradually decreases. The difference with MD simulation predictions is discussed. Specific electrical capacitance of DPPC planar lipid bilayers in fluid phase is 1.75 times larger than that of the gel phase and it follows intermediated phases before phase transition. Increase in specific electrical capacitance while approaching melting point of DPPC is visible also for DPhPC:DPPC mixture.

摘要

研究了从极端嗜热古菌 Aeropyrum pernix K1 膜中分离得到的脂质形成的平面脂质双层的击穿电压和比电容量随温度的变化,并与之前在 MD 模拟研究中获得的数据进行了比较。还测量了二棕榈酰磷脂酰胆碱 (DPPC) 双层和二氢廿烷酰磷脂酰胆碱 (DPhPC) 与 DPPC 按 80:20 的比例形成的混合物双层的击穿电压和比电容量随温度的变化。在 50°C 之前,古菌脂质平面脂质双层的击穿电压基本保持不变,而在较高温度下,观察到明显下降,这与 MD 模拟的结果一致。在熔点下,DPPC 平面脂质双层的击穿电压明显高于凝胶相。由古菌脂质形成的平面脂质双层的比电容量在 40°C 以下基本保持不变,然后逐渐下降。讨论了与 MD 模拟预测的差异。在流态相下,DPPC 平面脂质双层的比电容量比凝胶相大 1.75 倍,并且在相变之前遵循中间相。在接近 DPPC 的熔点时,DPhPC:DPPC 混合物的比电容量也会增加。

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