首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Structure of the stereocilia side links and morphology of auditory hair bundle in relation to noise exposure in the chinchilla.
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Structure of the stereocilia side links and morphology of auditory hair bundle in relation to noise exposure in the chinchilla.

机译:横纹肌侧链的结构和听觉发束的形态与黄鼠的噪声暴露有关。

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摘要

Stereocilia side links are directly involved in the maintenance of stereociliary bundle integrity in hair cells. The structure of the stereocilia side links and morphology of the auditory hair bundle in relation to noise exposure in the chinchilla was investigated by transmission electron microscopy. The outer hair cell (OHC) stereocilia side link was suggested to consist of extracellular, juxta-membrane and thin filamentous regions. Two beaded filaments were folded at their distal ends and fastened in one globule in the center between stereocilia. An intracellular, submembraneous layer appeared to form a bridge between the actin core and the extracellular, juxta-membrane region of the side link. In normal physiological conditions, most OHC stereocilia had a regular distribution of side links, forming a 'zipper-like' lattice between stereocilium shafts. Side links of the inner hair cell (IHC) stereocilia had a similar filamentous appearance, but were observed less commonly and had decreased structural organization compared to those of the OHC stereocilia. Ultrastructural analysis of OHC and IHC stereocilia showed that a large number of the side links could survive acoustic stimulation of 114 dB SPL for 2 hrs or 123 dB SPL for 15 min, that resulted in temporarily elevated hearing thresholds in all animals. Disarray, separation, close attachment and fusion of stereocilia were more frequently observed for IHC stereocilia and OHC stereocilia that were poorly connected or that lacked side links. Most disarrayed OHC and IHC stereocilia recovered to a normal erect state with restored orientation of the side links after 14-28 days, which correlated with near-complete recovery of auditory sensitivity. However, direct attachment of plasma membranes, ruptured links, fusion and blebs were seen on some stereocilia even after 28 days and appear to be permanent.
机译:立体胞菌侧链直接参与毛细胞中立体睫毛束完整性的维持。通过透射电子显微镜研究了黄c的侧耳的结构和听觉发束的形态与黄鼠噪声的关系。外毛细胞(OHC)立体纤毛侧链建议由细胞外,近膜和细丝状区域组成。将两根串珠的细丝在其远端折叠,并固定在立体纤毛之间中心的一个小球中。细胞内亚膜下层似乎在肌动蛋白核心和侧链的细胞外近膜区之间形成了桥梁。在正常的生理条件下,大多数OHC立体纤毛具有规则的侧链分布,在立体纤毛轴之间形成“拉链状”晶格。内毛细胞(IHC)立体纤毛的侧链具有类似的丝状外观,但与OHC立体纤毛的侧链相比,观察较少,结构组织也有所减少。 OHC和IHC立体纤毛的超微结构分析表明,大量的侧链可以经受114 dB SPL的声刺激2小时或123 dB SPL的声刺激15分钟,从而导致所有动物的听力阈值暂时升高。 IHC立体纤毛和OHC立体纤毛连接不良或缺乏侧链的情况更常见于立体纤毛的混乱,分离,紧密附着和融合。大多数混乱的OHC和IHC立体纤毛在14-28天后恢复到正常的勃起状态,并恢复了侧链的方向,这与听觉敏感性的接近完全恢复有关。然而,即使在28天后,在某些纤毛虫上仍可见到质膜的直接附着,连接的破裂,融合和起泡,并且看起来是永久性的。

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