Garcia-Diaz J F, Stump S, Armstrong W M
Am J Physiol. 1984 Mar;246(3 Pt 1):C339-46. doi: 10.1152/ajpcell.1984.246.3.C339.
A device is described that permits continuous measurement of electrophysiological parameters in epithelial tissues in the open-circuit mode. Transepithelial potential (VT) and microelectrode (either conventional or ion-selective) potential (VM) are directly measured. Application of transepithelial current pulses allows continuous monitoring of transepithelial resistance (RT) and the ratio between the changes in VM and VT induced by these pulses. Measurement of this ratio, which under some circumstances reflects the apical fractional resistance of the cellular pathway, is important in assessing membrane damage during microelectrode impalement and/or as an index that the microelectrode tip is inside a cell. This is particularly useful when the change in VM during impalement is small. Application of 0.5-nA current pulses through open-tip microelectrodes allows continuous recording of the microelectrode resistance (RM). In epithelia where the individual cells are electrically coupled this permits acceptable impalements (RM remains nearly constant) to be distinguished from those affected by tip potential artifacts due to plugging of the microelectrode tip (RM increases after penetration of the cell membrane). The device provides compensation for the IR voltage drop in the solution between the potential measuring salt bridges and the epithelial surfaces. The microelectrode electrometer has an input impedance greater than 10(15) and is provided with stray capacitance neutralization.
描述了一种装置,该装置允许在开路模式下连续测量上皮组织中的电生理参数。可直接测量跨上皮电位(VT)和微电极(传统微电极或离子选择性微电极)电位(VM)。施加跨上皮电流脉冲可连续监测跨上皮电阻(RT)以及由这些脉冲引起的VM和VT变化之间的比率。在某些情况下,该比率的测量反映了细胞途径的顶端分数电阻,这对于评估微电极刺入过程中的膜损伤和/或作为微电极尖端位于细胞内的指标很重要。当刺入过程中VM的变化很小时,这一点特别有用。通过开口尖端微电极施加0.5 nA的电流脉冲可连续记录微电极电阻(RM)。在单个细胞电耦合的上皮组织中,这可以将可接受的刺入(RM几乎保持恒定)与由于微电极尖端堵塞而受尖端电位伪影影响的刺入区分开来(细胞膜穿透后RM增加)。该装置可补偿电位测量盐桥与上皮表面之间溶液中的IR电压降。微电极静电计的输入阻抗大于10(15),并具有杂散电容中和功能。