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首页> 外文期刊>The Journal of Comparative Neurology >Neomycin damage and regeneration of hair cells in both mechanoreceptor and electroreceptor lateral line organs of the larval Siberian sturgeon (Acipenser baerii)
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Neomycin damage and regeneration of hair cells in both mechanoreceptor and electroreceptor lateral line organs of the larval Siberian sturgeon (Acipenser baerii)

机译:幼虫西伯利亚st(Acipenser baerii)的机械感受器和电感受器侧线器官中的新霉素损伤和毛细胞再生

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The lateral line found in some amphibians and fishes has two distinctive classes of sensory organs: mechanoreceptors (neuromasts) and electroreceptors (ampullary organs). Hair cells in neuromasts can be damaged by aminoglycoside antibiotics and they will regenerate rapidly afterward. Aminoglycoside sensitivity and the capacity for regeneration have not been investigated in ampullary organs. We treated Siberian sturgeon (Acipenser baerii) larvae with neomycin and observed loss and regeneration of sensory hair cells in both organs by labeling with DASPEI and scanning electron microscopy (SEM). The numbers of sensory hair cells in both organs were reduced to the lowest levels at 6 hours posttreatment (hpt). New sensory hair cells began to appear at 12 hpt and were regenerated completely in 7 days. To reveal the possible mechanism for ampullary hair cell regeneration, we analyzed cell proliferation and the expression of neural placodal gene eya1 during regeneration. Both cell proliferation and eya1 expression were concentrated in peripheral mantle cells and both increased to the highest level at 12 hpt, which is consistent with the time course for regeneration of the ampullary hair cells. Furthermore, we used Texas Red-conjugated gentamicin in an uptake assay following pretreatment with a cation channel blocker (amiloride) and found that entry of the antibiotic was suppressed in both organs. Together, our results indicate that ampullary hair cells in Siberian sturgeon larvae can be damaged by neomycin exposure and they can regenerate rapidly. We suggest that the mechanisms for aminoglycoside uptake and hair cell regeneration are conserved for mechanoreceptors and electroreceptors. (c) 2015 Wiley Periodicals, Inc.
机译:在某些两栖动物和鱼类中发现的侧线具有两类独特的感觉器官:机械感受器(神经rom)和电感受器(壶腹)。氨基糖苷类抗生素会损害神经乳突中的毛细胞,之后它们会迅速再生。尚未在壶腹器官中研究氨基糖苷的敏感性和再生能力。我们用新霉素处理了西伯利亚st(Acipenser baerii)的幼虫,并通过DASPEI标记和扫描电子显微镜(SEM)观察了两个器官中感觉毛细胞的损失和再生。治疗后6小时(hpt),两个器官中的感觉毛细胞数量均降至最低水平。新的感觉毛细胞在12 hpt开始出现,并在7天后完全再生。为了揭示壶腹毛细胞再生的可能机制,我们分析了细胞增殖和再生过程中神经pl基因eya1的表达。细胞增殖和eya1表达都集中在外周套细胞中,并且在12 hpt时都增加到最高水平,这与壶腹毛细胞的再生时间一致。此外,在用阳离子通道阻滞剂(阿米洛利)进行预处理后,我们在吸收试验中使用了得克萨斯州红结合的庆大霉素,并发现抗生素的进入在两个器官中均受到抑制。总之,我们的结果表明,新霉素暴露可破坏西伯利亚st鱼幼虫壶腹毛细胞,并使它们迅速再生。我们建议对于机械感受器和电感受器保守氨基糖苷摄取和毛细胞再生的机制。 (c)2015年威利期刊有限公司

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