Anosov A A, Barabanenkov Iu N, Sel'skiĭ A G
Biofizika. 2006 Jan-Feb;51(1):73-80.
Higher harmonics of alternating current in bilayer lipid membranes caused by sinusoidal voltage applied to the membrane were measured. The bilayer lipid membranes were prepared from diphytanoylphosphatidylcholine in n-decane and n-tetradecane, and measurements were conducted with the aid of an analog-to-digital converter of 16th category. Sinusoidal voltage was formed using a digital-to-analog converter of the 16th category. The dynamic region of measurements was up 90 dB. The results of measurements were used to determine the alpha and beta coefficients of the expansion of membrane capacity C in terms of membrane voltage U C = C0 (1 + alphaU2 + betaU4). We showed in the framework of the electrostriction model that the relation between the alpha and beta coefficients characterizes the inhomogeneity of bilayer lipid membrane with respect to its thickness and Young modulus of elasticity.
测量了施加于双层脂质膜的正弦电压所引起的双层脂质膜中交流电流的高次谐波。双层脂质膜由二植烷酰磷脂酰胆碱在正癸烷和正十四烷中制备而成,测量借助于16位模数转换器进行。正弦电压利用16位数模转换器生成。测量的动态范围高达90分贝。测量结果用于确定膜电容C随膜电压U的展开式C = C0 (1 + αU2 + βU4)中的α和β系数。我们在电致伸缩模型的框架内表明,α和β系数之间的关系表征了双层脂质膜在厚度和杨氏弹性模量方面的不均匀性。