Hudspeth A J, Corey D P
Proc Natl Acad Sci U S A. 1977 Jun;74(6):2407-11. doi: 10.1073/pnas.74.6.2407.
Hair cells, the primary receptors of the auditory, vestibular, and lateral-line sensory systems, produce electrical signals in response to mechanical stimulation of their apical hair bundles. We employed an in vitro preparation and intracellular recording to investigate the transduction mechanism of hair cells in the sacculus from the inner ear of the bullfrog (Rana catesbeiana). When stimulated directly by mechanical deflection of their hair bundles, these cells gave graded responses up to 15 mV in amplitude; the peak sensitivity was about 20 mV/micron deflection. The depolarizing component of the receptor potential corresponding to stimuli directed towards the kinocilium. Depolarizing responses were associated with a membrane resistance decrease, and hyperpolarizing responses with a resistance increase. Action potentials, possibly calcium spikes, were occasionally evoked in hair cells by mechanical or electrical stimulation.
毛细胞是听觉、前庭和侧线感觉系统的主要感受器,其顶端的毛束受到机械刺激时会产生电信号。我们采用体外制备和细胞内记录的方法,研究牛蛙(Rana catesbeiana)内耳球囊毛细胞的转导机制。当毛束受到直接的机械偏转刺激时,这些细胞会产生幅度高达15 mV的分级反应;峰值灵敏度约为20 mV/微米偏转。感受器电位的去极化成分对应于朝向动纤毛的刺激。去极化反应与膜电阻降低相关,超极化反应与电阻增加相关。机械或电刺激偶尔会在毛细胞中诱发动作电位,可能是钙峰电位。