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Ototoxin-induced cellular damage in neuromasts disrupts lateral line function in larval zebrafish

机译:Ototoxin诱导的神经瘤细胞损伤破坏了幼虫斑马鱼的侧线功能

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摘要

The ototoxicity of a number of marketed drugs is well documented, and there is an absence of convenient techniques to identify and eliminate this unwanted effect at a pre-clinical stage. We have assessed the validity of the larval zebrafish, or more specifically its lateral line neuromast hair cells, as a microplate-scale in vivo surrogate model of mammalian inner ear hair cell responses to ototoxin exposure. Here we describe an investigation of the pathological and functional consequences of hair cell loss in lateral line neuromasts of larval zebrafish after exposure to a range of well known human and non-human mammalian ototoxins. Using a previously described histological assay, we show that hair cell damage occurs in a concentration-dependent fashion following exposure to representatives from a range of drug classes, including the aminoglycoside antibiotics, salicylates and platinum-based chemotherapeutics, as well as a heavy metal. Furthermore, we detail the optimisation of a semi-automated method to analyse the stereotypical startle response in larval zebrafish, and use this to assess the impact of hair cell damage on hearing function in these animals. Functional assessment revealed robust and significant attenuation of the innate startle, rheotactic and avoidance responses of 5 day old zebrafish larvae after treatment with a number of compounds previously shown to induce hair cell damage and loss. Interestingly, a startle reflex (albeit reduced) was still present even after the apparent complete loss of lateral line hair cell fluorescence, suggesting some involvement of the inner ear as well as the lateral line neuromast hair cells in this reflex response. Collectively, these data provide evidence to support the use of the zebrafish as a pre-clinical indicator of drug-induced histological and functional ototoxicity.
机译:许多市售药物的耳毒性已有充分文献证明,并且缺乏在临床前阶段识别和消除这种不良作用的便捷技术。我们已经评估了幼虫斑马鱼,或更具体地说,其侧线神经肥大毛细胞的有效性,作为哺乳动物内耳毛细胞对毒素暴露反应的微孔板规模的体内替代模型。在这里,我们描述了在暴露于一系列众所周知的人类和非人类哺乳动物毒素后,幼虫斑马鱼侧线神经瘤中毛细胞丢失的病理和功能后果的研究。使用先前描述的组织学分析,我们显示,暴露于多种药物类别的代表(包括氨基糖苷类抗生素,水杨酸盐和铂基化学疗法以及重金属)后,毛细胞损伤以浓度依赖性的方式发生。此外,我们详细介绍了一种半自动化方法的优化,以分析斑马鱼幼体中的典型惊吓反应,并以此评估毛细胞损伤对这些动物听力功能的影响。功能评估显示,用多种先前显示可诱发毛细胞损伤和损失的化合物处理后,对5天大的斑马鱼幼虫的先天惊吓,变态反应和回避反应反应的抵抗力显着减弱。有趣的是,即使在侧线毛细胞荧光明显完全丧失后,仍会出现惊吓反射(尽管减弱),这表明内耳以及侧线神经肥大毛细胞都参与了这种反射反应。总体而言,这些数据提供了证据来支持斑马鱼作为药物诱导的组织学和功能性耳毒性的临床前指标的使用。

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