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发育中听觉通路活动的嘌呤能调节

Purinergic Modulation of Activity in the Developing Auditory Pathway.

作者信息

Jovanovic Sasa, Milenkovic Ivan

机构信息

School of Medicine and Health Sciences, Carl von Ossietzky University Oldenburg, 26129, Oldenburg, Germany.

出版信息

Neurosci Bull. 2020 Nov;36(11):1285-1298. doi: 10.1007/s12264-020-00586-4. Epub 2020 Oct 11.

Abstract

Purinergic P2 receptors, activated by endogenous ATP, are prominently expressed on neuronal and non-neuronal cells during development of the auditory periphery and central auditory neurons. In the mature cochlea, extracellular ATP contributes to ion homeostasis, and has a protective function against noise exposure. Here, we focus on the modulation of activity by extracellular ATP during early postnatal development of the lower auditory pathway. In mammals, spontaneous patterned activity is conveyed along afferent auditory pathways before the onset of acoustically evoked signal processing. During this critical developmental period, inner hair cells fire bursts of action potentials that are believed to provide a developmental code for synaptic maturation and refinement of auditory circuits, thereby establishing a precise tonotopic organization. Endogenous ATP-release triggers such patterned activity by raising the extracellular K concentration and contributes to firing by increasing the excitability of auditory nerve fibers, spiral ganglion neurons, and specific neuron types within the auditory brainstem, through the activation of diverse P2 receptors. We review recent studies that provide new models on the contribution of purinergic signaling to early development of the afferent auditory pathway. Further, we discuss potential future directions of purinergic research in the auditory system.

摘要

嘌呤能P2受体由内源性ATP激活,在听觉外周和中枢听觉神经元发育过程中在神经元和非神经元细胞上显著表达。在成熟的耳蜗中,细胞外ATP有助于离子稳态,并对噪声暴露具有保护作用。在这里,我们关注听觉下通路出生后早期发育过程中细胞外ATP对活动的调节。在哺乳动物中,在听觉诱发信号处理开始之前,自发的模式化活动沿着传入听觉通路传递。在这个关键的发育时期,内毛细胞发放动作电位爆发,据信这为突触成熟和听觉回路的细化提供了发育编码,从而建立精确的音调组织。内源性ATP释放通过提高细胞外钾浓度触发这种模式化活动,并通过激活多种P2受体增加听觉神经纤维、螺旋神经节神经元和听觉脑干内特定神经元类型的兴奋性,从而促进发放。我们综述了最近的研究,这些研究为嘌呤能信号传导对传入听觉通路早期发育的贡献提供了新模型。此外,我们讨论了听觉系统中嘌呤能研究未来的潜在方向。

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