Gliko Olga, Saggau Peter, Brownell William E
Department of Otorhinolaryngology-Head and Neck Surgery, Baylor College of Medicine, Houston, Texas, USA.
Biophys J. 2009 Aug 19;97(4):1215-24. doi: 10.1016/j.bpj.2009.06.011.
In the outer hair cell (OHC), the extracisternal space (ECiS) is a conduit and reservoir of the molecular and ionic substrates of the lateral wall, including those necessary for electromotility. To determine the mechanisms through which molecules are transported in the ECiS of the OHC, we selectively imaged the time-dependent spatial distribution of fluorescent molecules in a <100 nm layer near the cell/glass interface of the recording chamber after their photolytic activation in a diffraction-limited volume. The effective diffusion coefficient was calculated using the analytical solution of the diffusion equation. It was found that diffusion in the ECiS is isotropic and not affected by depolarizing the OHC. Compared with free solution, the diffusion of 10 kDa dextran was slowed down in both the ECiS and the axial core by a factor of 4.6 and 1.6, respectively.
在外毛细胞(OHC)中,细胞外池外空间(ECiS)是侧壁分子和离子底物的通道和储存库,包括电运动所需的那些底物。为了确定分子在OHC的ECiS中运输的机制,我们在记录室的细胞/玻璃界面附近<100 nm层中对荧光分子进行光解激活后,选择性地成像其随时间变化的空间分布,该层位于衍射极限体积内。使用扩散方程的解析解计算有效扩散系数。结果发现,ECiS中的扩散是各向同性的,并且不受OHC去极化的影响。与自由溶液相比,10 kDa葡聚糖在ECiS和轴向核心中的扩散分别减慢了4.6倍和1.6倍。