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Inner ear stem cells derived feeder layer promote directional differentiation of amniotic fluid stem cells into functional neurons

机译:内耳干细胞衍生的饲养层促进羊水干细胞的定向分化成功能神经元

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摘要

Intact spiral ganglion neurons are required for cochlear implantation or conventional hearing amplification as an intervention for sensorineural hearing loss. Treatment strategies to replace the loss of spiral ganglion neurons are needed. Recent reports have suggested that amniotic fluid-derived stem cells are capable of differentiating into neuron-like cells in response to cytokines and are not tumorigenic. Amniotic fluid stem cells represent a potential resource for cellular therapy of neural deafness due to spiral ganglion pathology. However, the directional differentiation of amniotic fluid stem cells is undetermined in the absence of cytokines and the consequence of inner ear supporting cells from the mouse cochlea organ of Corti on the differentiation of amniotic fluid stem cells remains to be defined. In an effort to circumvent these limitations, we investigated the effect of inner ear stem cells derived feeder layer on amniotic fluid stem cells differentiation in vitro. An inner ear stem cells derived feeder layer direct contact system was established to induce differentiation of amniotic fluid stem cells. Our results showed that inner ear stem cells derived feeder layer successfully promoted directional differentiation of amniotic fluid stem cells into neurons with characteristics of functionality. Furthermore, we showed that Wnt signaling may play an essential role in triggering neurogenesis. These findings indicate the potential use of inner ear stem cells derived feeder layer as a nerve-regenerative scaffold. A reliable and effective amniotic fluid stem cell differentiation support structure provided by inner ear stem cells derived feeder layer should contribute to efforts to translate cell-based strategies to the clinic.
机译:耳蜗植入或常规听力放大所需的完整螺旋神经节神经元作为感觉文体听力损失的干预。需要替代螺旋神经节神经元的处理策略。最近的报道表明,刚性液体衍生的干细胞能够响应细胞因子并且不是致瘤的神经元样细胞分化为神经元样细胞。由于螺旋神经节病理学,羊水干细胞代表了神经耳聋细胞治疗的潜在资源。然而,在没有细胞因子的情况下,羊水干细胞的定向分化未确定,并且内耳支撑细胞从皮质小鼠耳蜗器官的后果仍然定义羊水干细胞的分化。为了规避这些限制,我们研究了内耳干细胞衍生饲养层在体外分化的羊水干细胞分化的影响。建立内耳干细胞衍生的饲养层直接接触系统以诱导羊水干细胞的分化。我们的研究结果表明,内耳干细胞衍生的饲养层成功地将羊水干细胞的定向分化为具有功能特性的神经元。此外,我们表明WNT信号传导可能在触发神经发生中起重要作用。这些发现表明潜在使用内耳干细胞衍生的饲养层作为神经再生支架。由内耳干细胞衍生的饲养层提供的可靠且有效的羊水干细胞分化支持结构应有助于将基于细胞的策略转化为诊所的努力。

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