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Supernumerary human hair cells-signs of regeneration or impaired development? : A field emission scanning electron microscopy study

机译:人类毛细胞过多-再生或发育受损的迹象? :场发射扫描电子显微镜研究

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摘要

Background: Current attempts to regenerate cochlear sensorineural structures motivate further inspection of the human organ of hearing. Here, we analyzed the supernumerary inner hair cell (sIHC), a possible sign of regeneration and cell replacement. Methods: Human cochleae were studied using field emission scanning electron microscopy (FESEM; maximum resolution 2 nm) obtained from individuals aged 44, 48, and 58 years with normal sensorineural pure-tone average (PTA) thresholds (PTA < 20 dB). The wasted tissue was harvested during trans-cochlear approaches and immediately fixed for ultrastructural analysis. Results: All specimens exhibited sIHCs at all turns except at the extreme lower basal turn. In one specimen, it was possible to image and count the inner hair cells (IHCs) along the cochlea representing the 0.2 kHz-8 kHz region according to the Greenwood place/frequency scale. In a region with 2,321 IHCs, there were 120 scattered one-cell losses or 'gaps' (5%). Forty-two sIHCs were present facing the modiolus. Thirty-eight percent of the sIHCs were located near a 'gap' in the IHC row (+/- 6 IHCs). Conclusions: The prevalence of ectopic inner hair cells was higher than expected. The morphology and placement could reflect a certain ongoing regeneration. Further molecular studies are needed to verify if the regenerative capacity of the human auditory periphery might have been underestimated.
机译:背景:目前试图再生耳蜗感觉神经结构的尝试促使进一步检查人体的听觉器官。在这里,我们分析了多余的内毛细胞(sIHC),这可能是再生和细胞置换的信号。方法:使用场发射扫描电子显微镜(FESEM;最大分辨率2 nm),研究对象是年龄分别为44、48和58岁,具有正常感觉神经纯音平均(PTA)阈值(PTA <20 dB)的个体。在经耳蜗方法中收集浪费的组织,并立即固定以进行超微结构分析。结果:所有样本在所有转弯处均表现出sIHC,除了在极低的基础转弯处。在一个标本中,可以根据Greenwood位置/频率标度对代表0.2 kHz-8 kHz区域的耳蜗内的毛细胞进行成像和计数。在拥有2,321个IHC的地区,有120个分散的单细胞丢失或“缺口”(5%)。存在42个sIHC,它们面对着旋转陀螺。 38%的sIHC位于IHC行中的“缺口”附近(+/- 6个IHC)。结论:异位内毛细胞的患病率高于预期。形态和位置可以反映一定程度的持续再生。需要进一步的分子研究以验证人类听觉外周的再生能力是否可能被低估了。

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