Stirke Arunas, Zimkus Aurelijus, Ramanaviciene Almira, Balevicius Saulius, Zurauskiene Nerija, Saulis Gintautas, Chaustova Larisa, Stankevic Voitech, Ramanavicius Arunas
Center for Physical Sciences and Technology, Vilnius, Lithuania; Center of Nanotechnology and Materials Science-NanoTechnas, Faculty of Chemistry, Vilnius University, Vilnius, Lithuania.
Bioelectromagnetics. 2014 Feb;35(2):136-44. doi: 10.1002/bem.21824. Epub 2013 Nov 6.
The permeability of the yeast cells (Saccharomyces cerevisiae) to lipophilic tetraphenylphosphonium cations (TPP(+) ) after their treatment with single square-shaped strong electric field pulses was analyzed. Pulsed electric fields (PEF) with durations from 5 to 150 µs and strengths from 0 to 10 kV/cm were applied to a standard electroporation cuvette filled with the appropriate buffer. The TPP(+) absorption process was analyzed using an ion selective microelectrode (ISE) and the plasma membrane permeability was determined by measurements obtained using a calcein blue dye release assay. The viability of the yeast and the inactivation of the cells were determined using the optical absorbance method. The experimental data taken after yeasts were treated with PEF and incubated for 3 min showed an increased uptake of TPP(+) by the yeast. This process can be controlled by setting the amplitude and pulse duration of the applied PEF. The kinetics of the TPP(+) absorption process is described using the second order absolute rate equation. It was concluded that the changes of the charge on the yeast cell wall, which is the main barrier for TPP(+) , is due to the poration of the plasma membrane. The applicability of the TPP(+) absorption measurements for the analysis of yeast cells electroporation process is also discussed.
分析了酿酒酵母细胞在用单个方形强电场脉冲处理后对亲脂性四苯基鏻阳离子(TPP(+))的通透性。将持续时间为5至150微秒、强度为0至10千伏/厘米的脉冲电场(PEF)施加到装有适当缓冲液的标准电穿孔比色皿中。使用离子选择性微电极(ISE)分析TPP(+)的吸收过程,并通过使用钙黄绿素蓝染料释放测定法获得的测量值确定质膜通透性。使用光吸收法测定酵母的活力和细胞的失活情况。在用PEF处理酵母并孵育3分钟后获取的实验数据表明,酵母对TPP(+)的摄取增加。该过程可以通过设置所施加PEF的幅度和脉冲持续时间来控制。使用二级绝对速率方程描述TPP(+)吸收过程的动力学。得出的结论是,作为TPP(+)主要屏障的酵母细胞壁上电荷的变化是由于质膜形成孔道所致。还讨论了TPP(+)吸收测量在酵母细胞电穿孔过程分析中的适用性。