Gyurova Anna Y, Zhivkov Alexandar M
Institute of Physical Chemistry, Bulgarian Academy of Sciences, Acad. G. Bonchev str., bl. 11, Sofia 1113, Bulgaria. any
Colloids Surf B Biointerfaces. 2009 Nov 1;74(1):23-7. doi: 10.1016/j.colsurfb.2009.06.017. Epub 2009 Jun 23.
The electric polarizability is an important parameter of bacteria, giving information about the electric properties of the cells. In our previous works [A.M. Zhivkov, A.Y. Gyurova, Colloids Surf. B: Biointerfaces 66 (2008) 201; A.Y. Gyurova, A.M. Zhivkov, Biophys. Chem., 139 (2009) 8; A.M. Zhivkov, A.Y. Gyurova, J. Phys. Chem. B, 113 (2009) 8375] we have applied an experimental approach to distinguish the contribution of the components of the two types of interface electric polarizability-surface charge dependent (ChD) and Maxwell-Wagner (MW) polarizability. It is based on electro-optical study of the separate influence of the outer and inner medium electrolyte concentration, which changes the external ChD and internal MW components of polarizability; the last effect is reached by the membrane permeability increase in low ethanol concentration. In the present work we investigate the behavior of electric polarizability of Escherichia coli K12 at increasing the outer KCl concentration in presence of 10 vol.% ethanol in order to check if the polarizability components change independently from one another. The conclusion is that the outer electrolyte concentration influence indirectly the internal MW component by the trans-membrane concentration gradient, but the polarizability components themselves change independently.
电极化率是细菌的一个重要参数,它能提供有关细胞电学性质的信息。在我们之前的工作中[A.M. 日夫科夫,A.Y. 久罗娃,《胶体与界面科学:生物界面》66 (2008) 201;A.Y. 久罗娃,A.M. 日夫科夫,《生物物理化学》,139 (2009) 8;A.M. 日夫科夫,A.Y. 久罗娃,《物理化学杂志B》,113 (2009) 8375],我们采用了一种实验方法来区分两种界面电极化率——表面电荷依赖性(ChD)和麦克斯韦 - 瓦格纳(MW)极化率——各组分的贡献。该方法基于对外部和内部介质电解质浓度单独影响的电光研究,电解质浓度的变化会改变极化率的外部ChD和内部MW组分;低乙醇浓度下膜通透性的增加会产生后一种效应。在本工作中,我们研究了在存在10体积%乙醇的情况下,随着外部KCl浓度增加时大肠杆菌K12的电极化率行为,以检验极化率各组分是否相互独立变化。结论是,外部电解质浓度通过跨膜浓度梯度间接影响内部MW组分,但极化率各组分本身是独立变化的。