首页> 外文期刊>Neurochemical research >Taurine Enhances Excitability of Mouse Cochlear Neural Stem Cells by Selectively Promoting Differentiation of Glutamatergic Neurons Over GABAergic Neurons
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Taurine Enhances Excitability of Mouse Cochlear Neural Stem Cells by Selectively Promoting Differentiation of Glutamatergic Neurons Over GABAergic Neurons

机译:牛磺酸通过选择性促进谷氨酸能神经元在GABA能神经元上的分化来增强小鼠耳蜗神经干细胞的兴奋性。

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Taurine is a sulfur-containing amino acid present in high concentrations in mammalian tissues, and has been implicated in several processes involving brain development and neurotransmission. However, the role of taurine in inner ear neural development is still largely unknown. Here we report that taurine enhanced the viability and proliferation of in vitro mouse cochlear neural stem cell culture, as well as improved neurite outgrowth. Moreover, prolonged taurine treatment also increased the neural electrical activity by escalating changes of intracellular calcium concentration, the number of spontaneous Ca2+ oscillations in cells, and the frequencies of Ca2+ spikes. Most importantly, we found that this escalated neural excitability by taurine was due to combined effect of increase in the population of excitatory glutamatergic neuron and decrease in inhibitory GABAergic neuron population. This is the first report on the effect of taurine to selectively promote neural stem cell differentiation by altering neuron type commitment. Our study has supported the potential of taurine as treatment against hearing loss caused by neuron degeneration, or even as an agent to improve sensitivity of hearing by increasing overall excitability of auditory nervous system.
机译:牛磺酸是一种高浓度存在于哺乳动物组织中的含硫氨基酸,与涉及大脑发育和神经传递的若干过程有关。然而,牛磺酸在内耳神经发育中的作用仍然是未知的。在这里我们报告牛磺酸增强了体外小鼠耳蜗神经干细胞培养的活力和增殖,并改善了神经突的生长。此外,长期牛磺酸治疗还会通过增加细胞内钙浓度,细胞中自发性Ca2 +振荡次数以及Ca2 +尖峰频率的变化来增加神经电活动。最重要的是,我们发现牛磺酸提高的神经兴奋性是由于兴奋性谷氨酸能神经元的增加和抑制性GABA能神经元的减少共同作用的结果。这是关于牛磺酸通过改变神经元类型的选择选择性促进神经干细胞分化的作用的首次报道。我们的研究支持牛磺酸作为治疗神经元变性引起的听力损失的潜力,甚至可以作为通过提高听觉神经系统的整体兴奋性来提高听力敏感性的药物。

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