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高压电脉冲作用导致溶液pH值的变化。

Changes of the solution pH due to exposure by high-voltage electric pulses.

作者信息

Saulis Gintautas, Lape Remigijus, Praneviciūte Rita, Mickevicius Donatas

机构信息

Department of Biology, Faculty of Nature Sciences, Vytautas Magnus University, 28 Daukanto str., 44246, Kaunas, Lithuania.

出版信息

Bioelectrochemistry. 2005 Sep;67(1):101-8. doi: 10.1016/j.bioelechem.2005.03.001.

Abstract

The change of the pH of a NaCl solution (139-149 mM NaCl) buffered with 5-15 mM sodium phosphates (pH 7.4) during electromanipulation was studied. It has been determined that an increase in the pH value of electroporation solution of a whole chamber volume, caused by the application of electric field pulses, commonly used in cell electromanipulation procedures, can exceed 1-2 pH units. Several materials for the cathode were tested. In all cases a stainless steel anode was utilized. The aluminum cathode gave a two-fold greater DeltapH in comparison with platinum, copper or stainless steel cathodes. In addition, a substantial release of aluminum (up to 1 mg/l) from the cathode was observed. It has also been found that the shift in pH depended on the medium conductivity: DeltapH of the solution, in which sucrose was substituted for NaCl, was about 5 times less. On the basis of the results obtained here, to avoid the plausible undesirable consequences of the cathodic electrolysis processes, in particular under the conditions of strong electric treatment, it could be recommended that chambers with aluminum electrodes not be utilized and one should use strongly buffered solutions of low conductivity and alternating current (sine or square wave) bipolar electric pulses.

摘要

研究了在电操控过程中,用5 - 15 mM磷酸钠(pH 7.4)缓冲的NaCl溶液(139 - 149 mM NaCl)的pH变化。已确定,在细胞电操控程序中常用的电场脉冲作用下,整个腔室体积的电穿孔溶液的pH值增加可能超过1 - 2个pH单位。测试了几种阴极材料。在所有情况下均使用不锈钢阳极。与铂、铜或不锈钢阴极相比,铝阴极产生的pH变化大两倍。此外,观察到阴极有大量铝释放(高达1 mg/l)。还发现pH的变化取决于介质电导率:用蔗糖替代NaCl的溶液的pH变化约小5倍。基于此处获得的结果,为避免阴极电解过程可能产生的不良后果,特别是在强电处理条件下,建议不要使用带有铝电极的腔室,应使用低电导率的强缓冲溶液和交流电(正弦或方波)双极电脉冲。

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