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本文引用的文献

1
Effects of aspirin on human auditory filters.
Hear Res. 1993 Apr;66(2):233-44. doi: 10.1016/0378-5955(93)90143-o.
2
Effect of stress on the membrane capacitance of the auditory outer hair cell.应激对听觉外毛细胞膜电容的影响。
Biophys J. 1993 Jul;65(1):492-8. doi: 10.1016/S0006-3495(93)81053-1.
3
Mapping the distribution of the outer hair cell motility voltage sensor by electrical amputation.通过电切断法绘制外毛细胞运动电压传感器的分布
Biophys J. 1993 Nov;65(5):2228-36. doi: 10.1016/S0006-3495(93)81248-7.
4
Harmonics of outer hair cell motility.外毛细胞运动的谐波。
Biophys J. 1993 Nov;65(5):2217-27. doi: 10.1016/S0006-3495(93)81247-5.
5
Charge displacement induced by rapid stretch in the basolateral membrane of the guinea-pig outer hair cell.豚鼠外毛细胞基底外侧膜快速拉伸诱导的电荷位移
Proc Biol Sci. 1994 Mar 22;255(1344):243-9. doi: 10.1098/rspb.1994.0035.
6
Motility voltage sensor of the outer hair cell resides within the lateral plasma membrane.外毛细胞的运动电压传感器位于外侧质膜内。
Proc Natl Acad Sci U S A. 1994 Dec 6;91(25):12268-72. doi: 10.1073/pnas.91.25.12268.
7
A membrane motor model for the fast motility of the outer hair cell.
J Acoust Soc Am. 1994 Oct;96(4):2216-24. doi: 10.1121/1.410094.
8
Membrane tension directly shifts voltage dependence of outer hair cell motility and associated gating charge.膜张力直接改变外毛细胞运动性及相关门控电荷的电压依赖性。
Biophys J. 1995 May;68(5):2190-7. doi: 10.1016/S0006-3495(95)80401-7.
9
Action of salicylate on membrane capacitance of outer hair cells from the guinea-pig cochlea.水杨酸盐对豚鼠耳蜗外毛细胞膜电容的作用。
J Physiol. 1995 Jun 15;485 ( Pt 3)(Pt 3):739-52. doi: 10.1113/jphysiol.1995.sp020765.
10
Cellular mechanism of acetylcholine-induced response in dissociated outer hair cells of guinea-pig cochlea.豚鼠耳蜗离体外毛细胞中乙酰胆碱诱导反应的细胞机制。
J Physiol. 1993 Apr;463:227-44. doi: 10.1113/jphysiol.1993.sp019592.

水杨酸盐和镧系元素对外毛细胞能动性及相关门控电荷的影响。

Effects of salicylate and lanthanides on outer hair cell motility and associated gating charge.

作者信息

Kakehata S, Santos-Sacchi J

机构信息

Section of Otolaryngology, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Neurosci. 1996 Aug 15;16(16):4881-9. doi: 10.1523/JNEUROSCI.16-16-04881.1996.

DOI:10.1523/JNEUROSCI.16-16-04881.1996
PMID:8756420
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6579298/
Abstract

Salicylate, one of the most widely used drugs, is known to induce reversible tinnitus and hearing loss. Salicylate interferes with outer hair cells (OHCs), which are believed to underlie normal auditory frequency selectivity and sensitivity. In the present experiments, the effects of salicylate and lanthanides on OHC motility and nonlinear capacitance were investigated by using isolated guinea-pig OHCs while attempting to avoid inadvertent intracellular pressure change, which itself can affect OHC motility and capacitance. Either extracellularly or intracellularly applied salicylate reduced nonlinear peak capacitance (Cmpk) and shifted the voltage at peak capacitance to depolarized levels. Concentration-response curves for reduction in Cmpk by salicylate and GdCl3 revealed a half-maximal concentration and Hill coefficient of 1.6 mM and 1.0, and 0.6 mM and 1.2, respectively. In comparable groups of OHCs, the normal Cmpk values of which were near 40 pF, average Cmpk decreased to 28 and 36 pF for intracellularly and extracellularly applied salicylate, respectively. Salicylate reduced, but did not completely block, the voltage-induced length change. Extracellularly, but not intracellularly, applied lanthanide blocked voltage-induced movement and capacitance almost completely. After intracellular trypsin treatment, salicylate reduced voltage-dependent capacitance reversibly, suggesting that salicylate directly acts on the sensor/motor and not via effects on intracellular structures, such as the subsurface cisternae. The results are consistent with the hypothesis that the dissociated, charged form of salicylate directly interacts with the sensor/motor on the inner aspect of the OHC plasma, whereas lanthanides interact on the outer aspect.

摘要

水杨酸酯是使用最为广泛的药物之一,已知其会诱发可逆性耳鸣和听力损失。水杨酸酯会干扰外毛细胞(OHC),据信外毛细胞是正常听觉频率选择性和灵敏度的基础。在本实验中,通过使用分离的豚鼠外毛细胞研究了水杨酸酯和镧系元素对外毛细胞运动性和非线性电容的影响,同时试图避免意外的细胞内压力变化,因为这种变化本身会影响外毛细胞的运动性和电容。细胞外或细胞内施加水杨酸酯都会降低非线性峰值电容(Cmpk),并使电容峰值处的电压向去极化水平偏移。水杨酸酯和氯化钆使Cmpk降低的浓度-反应曲线显示,半数最大浓度和希尔系数分别为1.6 mM和1.0,以及0.6 mM和1.2。在可比的外毛细胞组中,其正常Cmpk值接近40 pF,细胞内和细胞外施加水杨酸酯时,平均Cmpk分别降至28 pF和36 pF。水杨酸酯会降低,但不会完全阻断电压诱导的长度变化。细胞外而非细胞内施加镧系元素几乎完全阻断了电压诱导的运动和电容。细胞内胰蛋白酶处理后,水杨酸酯可逆地降低了电压依赖性电容,这表明水杨酸酯直接作用于传感器/马达,而非通过影响细胞内结构(如表面下池)起作用。这些结果与以下假设一致:水杨酸酯的解离带电形式直接与外毛细胞质膜内侧的传感器/马达相互作用,而镧系元素则在外侧相互作用。