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Innervation of Cochlear Hair Cells by Human Induced Pluripotent Stem Cell-Derived Neurons In Vitro

机译:体外人诱导多能干细胞衍生神经元的耳毛发细胞的支配

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Induced pluripotent stem cells (iPSCs) may serve as an autologous source of replacement neurons in the injured cochlea, if they can be successfully differentiated and reconnected with residual elements in the damaged auditory system. Here, we explored the potential of hiPSC-derived neurons to innervate early postnatal hair cells, using established in vitro assays. We compared two hiPSC lines against a well-characterized hESC line. After ten days' coculture in vitro, hiPSC-derived neural processes contacted inner and outer hair cells in whole cochlear explant cultures. Neural processes from hiPSC-derived neurons also made contact with hair cells in denervated sensory epithelia explants and expressed synapsin at these points of contact. Interestingly, hiPSC-derived neurons cocultured with hair cells at an early stage of differentiation formed synapses with a higher number of hair cells, compared to hiPSC-derived neurons cocultured at a later stage of differentiation. Notable differences in the innervation potentials of the hiPSC-derived neurons were also observed and variations existed between the hiPSC lines in their innervation efficiencies. Collectively, these data illustrate the promise of hiPSCs for auditory neuron replacement and highlight the need to develop methods to mitigate variabilities observed amongst hiPSC lines, in order to achieve reliable clinical improvements for patients.
机译:诱导多能干细胞(IPSC)可以用作受伤的耳蜗中的替换神经元的自体源,如果可以成功地分化和重新连接受损听觉系统中的残余元素。在这里,我们探讨了使用已建立的体外测定的髋关节衍生神经元的潜力来支配早期产后细胞。我们将两个HIPSC线与特征良好的HESC线进行了比较。在体外十天的共培养后,HIPSC衍生的神经过程在整个耳蜗外植体培养物中接触内部和外毛细胞。来自HIPSC衍生的神经元的神经过程也与神经的感觉上皮内外皮植体中的毛细胞接触,并在这些接触点表达Synapsin。有趣的是,与在稍后的分化阶段的肝脏衍生的神经元相比,在不同数量的毛细胞中,在分化的早期与毛细胞的突出突出的髋关节衍生的神经元。还观察到HIPSC衍生的神经元的支护电位的显着差异,并且在其支配效率的HIPSC线之间存在变化。总的来说,这些数据说明了对听觉神经元更换的HIPSC的承诺,并突出了开发方法来减轻髋关节线之间观察到的可变性的方法,以实现患者的可靠临床改进。

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