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Analysis of behavioral changes in zebrafish (Danio rerio) larvae caused by aminoglycoside-induced damage to the lateral line and muscles

机译:斑马鱼(Danio Rerio)幼虫造成的侧线和肌肉损伤引起的斑马鱼(Danio Rerio)幼虫的行为变化分析

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Zebrafish behavior is influenced by the lateral line hair cells and muscles. Drug-induced behavioral changes can serve as indicators in the evaluation of drug toxicity. The aminoglycoside family of antibiotics comprise a number of agents, including neomycin (NM) and gentamicin (GM). We hypothesized that NM and GM exert different effects on zebrafish larvae through their action on the lateral line and muscle fibers, inducing different swimming behavioral patterns such as locomotor behavior and the startle response. In this study, 125 mu M NM and 5, 10, 20 mu M GM induced hair cell damage in the anterior and posterior lateral lines of zebrafish larvae. However, unlike GM, 125 mu M NM also caused muscle damage. Locomotor behavior was decreased in the 125 mu M NM-exposed group compared to the group exposed to GM. Furthermore, 125 mu M NM exposure induced significantly different patterns of various indices of startle behavior compared with the GM exposure groups. Additionally, the larvae exhibited different startle responses depending on the concentration of GM. These results suggest that GM may be the drug-of-choice for analyzing behavioral changes in zebrafish caused by damage to the lateral line alone. Our study highlights the importance of confirming muscle damage in behavioral analyses using zebrafish.
机译:斑马鱼行为受到侧线毛细胞和肌肉的影响。药物诱导的行为变化可以作为评估药物毒性的指标。氨基糖苷系列抗生素家族包含许多药剂,包括新霉素(NM)和庆大霉素(GM)。我们假设NM和GM通过它们对侧线和肌肉纤维的作用对斑马鱼幼虫产生不同的影响,诱导不同的游泳行为模式,例如运动行为和惊吓反应。在本研究中,125亩Mnm和5,10,0,20μmG斑马鱼幼虫前后侧线的毛细胞损伤。然而,与GM不同,125亩Mnm也引起肌肉损伤。与暴露于GM的小组相比,125μmnm曝光组的运动行为减少。此外,与GM暴露组相比,125μmnm曝光引起的各种索引的各种索引的不同模式。另外,幼虫根据GM的浓度表现出不同的惊吓响应。这些结果表明,通用贷款可能是分析斑马鱼的行为变化的药物,由单独的横向损坏引起的。我们的研究突出了使用斑马鱼确认行为分析中肌肉损伤的重要性。

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