Clausell Mathis, Fang Zhihui, Chen Wei
Department of Physics, Cellular and Molecular Biophysics Lab, University of South Florida, Tampa, FL, 33620, USA.
J Membr Biol. 2014 Jul;247(7):601-9. doi: 10.1007/s00232-014-9676-6. Epub 2014 Jun 4.
Synchronization modulation (SM) electric field has been shown to effectively activate function of Na(+)/K(+) pumps in various cells and tissues, including skeletal muscle cells, cardiomyocyte, monolayer of cultured cell line, and peripheral blood vessels. We are now reporting the in vivo studies in application of the SM electric field to kidney of living rats. The field-induced changes in the transepithelial potential difference (TEPD) or the lumen potential from the proximal convoluted tubules were monitored. The results showed that a short time (20 s) application of the SM electric field can significantly increase the magnitude of TEPD from 1-2 mV to about 20 mV. The TEPD is an active potential representing the transport current of the Na/K pumps in epithelial wall of renal tubules. This study showed that SM electric field can increase TEPD by activation of the pump molecules. Considering renal tubules, many active transporters are driven by the Na(+) concentration gradient built by the Na(+)/K(+) pumps, activation of the pump functions and increase in the magnitude of TEPD imply that the SM electric field may improve reabsorption functions of the renal tubules.
同步调制(SM)电场已被证明能有效激活各种细胞和组织中钠钾泵的功能,包括骨骼肌细胞、心肌细胞、培养细胞系单层以及外周血管。我们现在报告将SM电场应用于活体大鼠肾脏的体内研究。监测了电场诱导的近端曲管跨上皮电位差(TEPD)或管腔电位的变化。结果表明,短时间(20秒)施加SM电场可使TEPD的幅度从1 - 2毫伏显著增加到约20毫伏。TEPD是一种主动电位,代表肾小管上皮壁中钠钾泵的转运电流。这项研究表明,SM电场可通过激活泵分子来增加TEPD。考虑到肾小管,许多主动转运体由钠钾泵建立的钠浓度梯度驱动,泵功能的激活和TEPD幅度的增加意味着SM电场可能改善肾小管的重吸收功能。