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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >In vitro protection of auditory hair cells by salicylate from the gentamicin-induced but not neomycin-induced cell loss
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In vitro protection of auditory hair cells by salicylate from the gentamicin-induced but not neomycin-induced cell loss

机译:水杨酸酯对庆大霉素诱导而非新霉素诱导的细胞损失的体外保护

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摘要

Salicylate has been shown to protect animals and people from the gentamicin-induced hearing loss. The objective of our study was to determine if salicylate is otoprotective in vitro. In this fashion, we wanted to validate the use of explant culture system for future studies on the ototoxicity prevention. In addition, we wanted to find out if salicylate protects from the ototoxicity of other aminoglycosides. As a model, we used the membranous cochlear tissues containing the organ of Corti, spiral limbus and spiral ganglion neurons dissected from the cochleas of p3-p5 Wistar pups. The explants were divided into apical, medial and basal parts and cultured in presence or absence of 100 μM gentamicin, 100 μM neomycin and 5. mM salicylate. Following the tissue fixation and staining with phalloidin-TRITC, the number of inner and outer hair cells (IHCs, OHCs) was scored under the fluorescent microscope. Presence of 5. mM salicylate in explants cultures exposed to 100 μM gentamicin significantly reduced the loss of IHCs and OHCs, as compared to explants exposed to gentamicin alone. In contrast, neomycin-induced auditory hair cell loss remained unaffected by the presence of salicylate. Our results corroborate earlier in vivo findings and validate the use of cochlear explants for future studies on ototoxicity and its prevention. Moreover, the inability of salicylate to prevent neomycin-induced ototoxicity implies possible differences between the mechanisms of auditory hair cell loss induced by gentamicin and neomycin.
机译:水杨酸盐已被证明可以保护动物和人免受庆大霉素引起的听力损失。我们研究的目的是确定水杨酸酯在体外是否具有耳保护性。我们希望以此方式验证外植体培养系统在未来耳毒性预防研究中的应用。另外,我们想找出水杨酸酯是否能防止其他氨基糖苷类的耳毒性。作为模型,我们使用了膜皮质的耳蜗组织,其中包含从p3-p5 Wistar幼犬的耳蜗中解剖出来的Corti,螺旋角膜缘和螺旋神经节神经元的器官。将外植体分为顶端,内侧和基底部分,并在有或没有100μM庆大霉素,100μM新霉素和5 mM水杨酸盐存在下培养。组织固定并用鬼笔环肽-TRITC染色后,在荧光显微镜下对内部和外部毛细胞(IHC,OHC)的数量进行评分。与单独暴露于庆大霉素的外植体相比,暴露于100μM庆大霉素的外植体培养物中存在5 mM水杨酸盐可显着降低IHC和OHC的损失。相反,新霉素诱导的听觉毛细胞损失仍然不受水杨酸盐的影响。我们的结果证实了较早的体内发现,并验证了耳蜗外植体在耳毒性及其预防研究中的应用。此外,水杨酸盐不能预防新霉素诱导的耳毒性,表明庆大霉素和新霉素诱导的听觉毛细胞丧失机制之间可能存在差异。

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