Canis M, Ortner M, Olzowy B, Jahn K, Strupp M, Hemmert W, Berghaus A, Suckfuell M
Department of Otorhinolaryngology, Head and Neck Surgery, University of Munich, Germany.
Acta Otolaryngol. 2008 Mar;128(3):228-32. doi: 10.1080/00016480701411502.
Videomicroscopy with subpixel analysis is an excellent system for quantification of outer hair cell (OHC) movements. The resolution of a few nanometers is accurate enough to show induced differences of electromotility.
Electromotility of OHCs is a voltage-dependent process resulting from a membrane protein named prestin. Voltage sensitivity is conferred to prestin by intracellular anions. Reduction of these anions reduces electromotility. Videomicroscopy and subpixel tracking combine video-based analysis with a resolution of few nanometers. The aim of this study was to show the feasibility of a system for quantification of OHC movements.
Electromotility was investigated under normal and reduced intracellular chloride conditions. Cells were stimulated by the patch-clamp technique. Voltage steps were 500 ms long, ranging from -170 to +30 mV in 10 mV steps.
As in previous studies our results show the following. The direction of OHC movement depends on the polarity of voltage steps, length changes are not equal for symmetrical voltage steps of opposite polarity, average shortening for a depolarizing step (-70 mV to +30 mV) is about 13 nm/mV. Hyperpolarization (-70 mV to -170 mV) on average evokes elongations of about 3 nm/mV. Half maximal chloride concentration reduces motility by 14%; half maximal electromotility is reached by a 94% reduction of chloride.
采用亚像素分析的视频显微镜是一种用于量化外毛细胞(OHC)运动的出色系统。几纳米的分辨率足以准确显示电运动性的诱导差异。
OHC的电运动性是一种由名为prestin的膜蛋白引起的电压依赖性过程。细胞内阴离子赋予prestin电压敏感性。这些阴离子的减少会降低电运动性。视频显微镜和亚像素跟踪将基于视频的分析与几纳米的分辨率相结合。本研究的目的是展示一种用于量化OHC运动的系统的可行性。
在正常和细胞内氯化物减少的条件下研究电运动性。通过膜片钳技术刺激细胞。电压阶跃持续500毫秒,以10毫伏的步长从-170毫伏到+30毫伏变化。
与先前的研究一样,我们的结果如下所示。OHC运动的方向取决于电压阶跃的极性,对于相反极性的对称电压阶跃,长度变化并不相等,去极化阶跃(-70毫伏至+30毫伏)时的平均缩短约为13纳米/毫伏。超极化(-70毫伏至-170毫伏)平均引起约3纳米/毫伏的伸长。半数最大氯化物浓度会使运动性降低14%;氯化物减少94%时达到半数最大电运动性。