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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Determining membrane capacitance by dynamic control of droplet interface bilayer area
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Determining membrane capacitance by dynamic control of droplet interface bilayer area

机译:通过动态控制液滴界面双层面积确定膜电容

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By making dynamic changes to the area of a droplet interface bilayer (DIB), we are able to measure the specific capacitance of lipid bilayers with improved accuracy and precision over existing methods. The dependence of membrane specific capacitance on the chain-length of the alkane oil present in the bilayer is similar to that observed in black lipid membranes. In contrast to conventional artificial bilayers, DIBs are not confined by an aperture, which enables us to determine that the dependence of whole bilayer capacitance on applied potential is predominantly a result of a spontaneous increase in bilayer area. This area change arises from the creation of new bilayer at the three phase interface and is driven by changes in surface tension with applied potential that can be described by the Young-Lippmann equation. By accounting for this area change, we are able to determine the proportion of the capacitance dependence that arises from a change in specific capacitance with applied potential. This method provides a new tool with which to investigate the vertical compression of the bilayer and understand the changes in bilayer thickness with applied potential. We find that, for 1,2-diphytanoyl-sn-glycero- 3-phosphocholine membranes in hexadecane, specific bilayer capacitance varies by 0.6-1.5% over an applied potential of ±100 mV.
机译:通过动态改变液滴界面双层(DIB)的面积,我们能够以比现有方法更高的准确性和精密度来测量脂质双层的比电容。膜比电容对双层中存在的烷烃油链长的依赖性与在黑色脂质膜中观察到的相似。与传统的人工双层相比,DIB不受孔的限制,这使我们能够确定整个双层电容对施加电势的依赖性主要是双层面积自发增加的结果。该面积变化是由于在三相界面处形成了新的双层而引起的,并且由施加有电势的表面张力的变化驱动,该变化可以用Young-Lippmann方程描述。通过考虑该面积变化,我们能够确定由于特定电容随施加电势的变化而引起的电容依赖性的比例。此方法提供了一种新工具,可用于调查双层的垂直压缩并了解双层厚度随施加电势的变化。我们发现,对于十六烷中的1,2-二植烷酰基-sn-甘油3-磷酸胆碱膜,在±100 mV的施加电势下,比双层电容变化0.6-1.5%。

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