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首页> 外文期刊>Archives of Toxicology >Calyx junction dismantlement and synaptic uncoupling precede hair cell extrusion in the vestibular sensory epithelium during sub-chronic 3,3-iminodipropionitrile ototoxicity in the mouse
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Calyx junction dismantlement and synaptic uncoupling precede hair cell extrusion in the vestibular sensory epithelium during sub-chronic 3,3-iminodipropionitrile ototoxicity in the mouse

机译:在小鼠亚慢性3,3-亚尼二硫替替奥替唑中前庭感觉上皮溶解和突触拆卸和突触未耦合在小鼠中的亚慢性3,3-亚尼二硫替亚二腈耳毒性

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摘要

The cellular and molecular events that precede hair cell (HC) loss in the vestibular epithelium during chronic ototoxic exposure have not been widely studied. To select a study model, we compared the effects of sub-chronic exposure to different concentrations of 3,3-iminodipropionitrile (IDPN) in the drinking water of two strains of mice and of both sexes. In subsequent experiments, male 129S1/SvImJ mice were exposed to 30mM IDPN for 5 or 8 weeks; animals were euthanized at the end of the exposure or after a washout period of 13 weeks. In behavioral tests, IDPN mice showed progressive vestibular dysfunction followed by recovery during washout. In severely affected animals, light and electron microscopy observations of the vestibular epithelia revealed HC extrusion towards the endolymphatic cavity. Comparison of functional and ultrastructural data indicated that animals with fully reversible dysfunction did not have significant HC loss or stereociliary damage, but reversible dismantlement of the calyceal junctions that characterize the contact between type I HCs (HCI) and their calyx afferents. Immunofluorescent analysis revealed the loss of calyx junction proteins, Caspr1 and Tenascin-C, during exposure and their recovery during washout. Synaptic uncoupling was also recorded, with loss of pre-synaptic Ribeye and post-synaptic GluA2 puncta, and differential reversibility among the three different kinds of synaptic contacts existing in the epithelium. qRT-PCR analyses demonstrated that some of these changes are at least in part explained by gene expression modifications. We concluded that calyx junction dismantlement and synaptic uncoupling are early events in the mouse vestibular sensory epithelium during sub-chronic IDPN ototoxicity.
机译:在慢性耳毒性暴露期间前庭上皮损失的细胞和分子事件尚未得到广泛研究。为了选择一项研究模型,我们将亚慢性暴露于两种小鼠和两性的两种菌株的饮用水中的亚慢性暴露于不同浓度的3,3- ininodiphiollile(Idpn)的影响。在随后的实验中,将雄性129S1 / SVIMJ小鼠暴露于30mm IDPN 5或8周;在暴露结束时或在13周的冲洗期后被安乐死。在行为试验中,IDPN小鼠显示出进展前庭功能障碍,然后在冲洗期间恢复。在严重影响的动物中,前庭上皮的光和电子显微镜观察显示朝向内淋腔的HC挤出。功能性和超微结构数据的比较表明,具有完全可逆功能障碍的动物没有具有显着的HC损耗或立体损伤,但是抑制沟槽结的可逆拆除,其表征I型HCS(HCI)与其花萼交感会之间的接触。免疫荧光分析显示,在暴露期间,在暴露期间钙粘稠接线蛋白,Casp1和Tenascin-C的损失及其在冲洗过程中的恢复。还记录了突触解偶联,丧失突触前reseye和后突触后的Glua2斑点,并且在上皮内存在的三种不同种类的突触接触之间的差异可逆性。 QRT-PCR分析表明,这些变化中的一些至少部分地由基因表达修饰解释。我们得出结论,Calyx结拆解和突触解偶联是副慢性IDPN耳毒性期间小鼠前庭感觉上皮的早期事件。

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