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Variations in Shape-Sensitive Restriction Points Mirror Differences in the Regeneration Capacities of Avian and Mammalian Ears

机译:形状敏感限制点的变化反映了鸟类和哺乳动物耳朵再生能力的差异

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摘要

When inner ear hair cells die, humans and other mammals experience permanent hearing and balance deficits, but non-mammalian vertebrates quickly recover these senses after epithelial supporting cells give rise to replacement hair cells. A postnatal decline in cellular plasticity appears to limit regeneration in mammalian balance organs, where declining proliferation responses are correlated with decreased spreading of supporting cells on artificial and native substrates. By culturing balance epithelia on substrates that differed in flexibility, we assessed spreading effects independent of age, showing a strong correlation between shape change and supporting cell proliferation. Then we made excision wounds in utricles cultured from young and old chickens and mice and compared quantified levels of spreading and proliferation. In utricles from young mice, and both young and old chickens, wounds re-epithelialized in <24 hours, while those in utricles from mature mice took three times longer. More cells changed shape in the fastest healing wounds, which accounted for some differences in the levels of proliferation, but inter-species and age-related differences in shape-sensitive restriction points, i.e., the cellular thresholds for shape changes that promote S-phase, were evident and may be particularly influential in the responses to hair cell losses in vivo.
机译:当内耳毛细胞死亡时,人类和其他哺乳动物会出现永久性听力丧失和平衡缺陷,但是非哺乳动物的脊椎动物在上皮支持细胞产生替代性毛细胞后很快恢复了这些感觉。出生后细胞可塑性的下降似乎限制了哺乳动物平衡器官的再生,其中增殖反应下降与支持细胞在人工和天然底物上的扩散减少有关。通过在柔性不同的底物上培养平衡上皮,我们评估了不依赖年龄的扩散效应,显示了形状变化与支持细胞增殖之间的强相关性。然后,我们用幼小和成年鸡和小鼠培养的尿囊切开伤口,比较定量的扩散和增殖水平。在年轻小鼠的囊中,不论幼小鸡和老鸡,伤口均在不到24小时内重新上皮,而在成熟小鼠的囊中,伤口的上皮时间要长三倍。更多的细胞在最快愈合的伤口中改变了形状,这解释了增殖水平的某些差异,但是形状敏感的限制点的种间差异和与年龄相关的差异,即促进S期的形状改变的细胞阈值是明显的,并且在体内对毛细胞损失的反应中可能特别有影响。

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