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庆大霉素和pH值对豚鼠顶端和基底外侧毛细胞胞内钙离子浓度的影响。

Effects of gentamicin and pH on [Ca2+]i in apical and basal outer hair cells from guinea pigs.

作者信息

Tan C T, Lee S Y, Yao C J, Liu S H, Lin-Shiau S Y

机构信息

Institute of Toxicology, College of Medicine, National Taiwan University, Taipei.

出版信息

Hear Res. 2001 Apr;154(1-2):81-7. doi: 10.1016/s0378-5955(01)00222-2.

Abstract

Aminoglycosides are widely used antibiotics and frequently produce acute ototoxicity. In this study we attempted to comparatively investigate the effects of gentamicin on Ca2+ influx of apical and basal outer hair cells (OHCs) isolated from guinea-pig cochlea. Since the solution of gentamicin sulfate salt is acidic (pH 3.1-3.3), we also explored the effect of external acidification on Ca2+ influx. By means of fura-2 microspectrofluorimetry, we measured the intracellular calcium concentration ([Ca2+]i) of OHCs bathed in Hanks' balanced salt solution (pH 7.40) during either a resting state or high K+-induced depolarization. Our results show that at the resting state, the baseline [Ca2+]i in apical OHCs (94+/-2.0 nM) was slightly lower than that in basal OHCs (101.1+/-2.4 nM). By contrast, the increase in [Ca2+]i evoked by high K+ depolarization in apical OHCs was about two-fold greater than that in basal OHCs. Nifedipine (30 microM) abolished the increased [Ca2+]i in both types of OHCs, suggesting that Ca2+ influx was mainly through L-type Ca2+ channels of OHCs. While gentamicin and extracellular acidification (pH 7.14) can separately attenuate this increase in [Ca2+]i in both types of OHCs, their suppressive effects are additive in basal OHCs, but not in apical OHCs. The implications of these findings are that: (1) apical and basal OHCs behave differently in response to depolarization-increased [Ca2+]i, and (2) basal OHCs are more vulnerable to the impairment of Ca2+ entry during depolarization by a combination of gentamicin and extracellular acidification, which is correlated with the clinical observation that ototoxicity of aminoglycosides at the basal coil of OHCs is more severe than that at the apical coils. Moreover, the possibility that extracellular acidification may enhance the acute ototoxic effects of aminoglycosides should be considered especially in topical applications.

摘要

氨基糖苷类是广泛使用的抗生素,常引起急性耳毒性。在本研究中,我们试图比较研究庆大霉素对从豚鼠耳蜗分离的顶段和基底段外毛细胞(OHCs)钙离子内流的影响。由于硫酸庆大霉素盐溶液呈酸性(pH 3.1 - 3.3),我们还探讨了细胞外酸化对钙离子内流的影响。通过fura - 2显微分光荧光测定法,我们测量了在静止状态或高钾诱导的去极化过程中,置于汉克斯平衡盐溶液(pH 7.40)中的OHCs的细胞内钙浓度([Ca2+]i)。我们的结果表明,在静止状态下,顶段OHCs的基线[Ca2+]i(94±2.0 nM)略低于基底段OHCs(101.1±2.4 nM)。相比之下,高钾去极化引起的顶段OHCs的[Ca2+]i增加比基底段OHCs大约高两倍。硝苯地平(30 μM)消除了两种类型OHCs中[Ca2+]i的增加,表明钙离子内流主要通过OHCs的L型钙通道。虽然庆大霉素和细胞外酸化(pH 7.14)均可分别减弱两种类型OHCs中[Ca2+]i的这种增加,但其抑制作用在基底段OHCs中具有相加性,但在顶段OHCs中并非如此。这些发现的意义在于:(1)顶段和基底段OHCs对去极化增加的[Ca2+]i反应不同,(2)基底段OHCs在去极化过程中更容易受到庆大霉素和细胞外酸化联合作用导致的钙离子内流受损的影响,这与临床观察到的氨基糖苷类在OHCs基底螺旋的耳毒性比在顶段螺旋更严重相关。此外,特别是在局部应用中,应考虑细胞外酸化可能增强氨基糖苷类急性耳毒性作用的可能性。

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