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AUDITORY HAIR CELL EXPLANT CO-CULTURES PROMOTE THE DIFFERENTIATION OF STEM CELLS INTO BIPOLAR NEURONS

机译:听觉毛细胞表达共培养促进干细胞向双侧神经元分化

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摘要

Auditory neurons, the target neurons of the cochlear implant, degenerate following a sensorineural hearing loss. The goal of this research is to direct the differentiation of embryonic stem cells (SCs) into bipolar auditory neurons that can be used to replace degenerating neurons in the deafened mammalian cochlea. Successful replacement of auditory neurons is likely to result in improved clinical outcomes for cochlear implant recipients. We examined two post-natal auditory co-culture models with and without neurotrophic support, for their potential to direct the differentiation of mouse embryonic SCs into characteristic, bipolar, auditory neurons. The differentiation of SCs into neuron-like cells was facilitated by co-culture with auditory neurons or hair cell explants, isolated from post-natal day five rats. The most successful combination was the co-culture of hair cell explants with whole embryoid bodies, which resulted in significantly greater numbers of neurofilament positive, neuron-like cells. While further characterisation of these differentiated cells will be essential before transplantation studies commence, these data illustrate the effectiveness of post-natal explant co-culture, at providing valuable molecular cues for directed differentiation of SCs towards an auditory neuron lineage.
机译:听觉神经元,即耳蜗植入物的目标神经元,在感觉神经性听力损失后退化。这项研究的目的是将胚胎干细胞(SCs)分化为双极听觉神经元,该神经元可用来替代耳聋的哺乳动物耳蜗中退化的神经元。听神经元的成功替换可能会改善人工耳蜗植入者的临床疗效。我们检查了两种有或没有神经营养支持的产后听觉共培养模型,它们具有将小鼠胚胎干细胞分化为特征性双极听觉神经元的潜力。与听神经元或毛细胞外植体共培养可促进SC分化为神经元样细胞,这些神经元是从出生后第5天的大鼠中分离出来的。最成功的组合是将毛细胞外植体与整个拟胚体共培养,这导致神经丝阳性,神经元样细胞的数量明显增加。虽然这些分化细胞的进一步表征对于移植研究开始之前是必不可少的,但这些数据说明了产后外植体共培养的有效性,可为SC向听神经元系的定向分化提供有价值的分子线索。

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