大鼠耳蜗感觉毛细胞胆碱能传出突触功能的起始。

Onset of cholinergic efferent synaptic function in sensory hair cells of the rat cochlea.

机构信息

Department of Otolaryngology, Head and Neck Surgery, The Center for Hearing and Balance, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

J Neurosci. 2011 Oct 19;31(42):15092-101. doi: 10.1523/JNEUROSCI.2743-11.2011.

Abstract

In the developing mammalian cochlea, the sensory hair cells receive efferent innervation originating in the superior olivary complex. This input is mediated by α9/α10 nicotinic acetylcholine receptors (nAChRs) and is inhibitory due to the subsequent activation of calcium-dependent SK2 potassium channels. We examined the acquisition of this cholinergic efferent input using whole-cell voltage-clamp recordings from inner hair cells (IHCs) in acutely excised apical turns of the rat cochlea from embryonic day 21 to postnatal day 8 (P8). Responses to 1 mm acetylcholine (ACh) were detected from P0 on in almost every IHC. The ACh-activated current amplitude increased with age and demonstrated the same pharmacology as α9-containing nAChRs. Interestingly, at P0, the ACh response was not coupled to SK2 channels, so that the initial cholinergic response was excitatory and could trigger action potentials in IHCs. Coupling to SK current was detected earliest at P1 in a subset of IHCs and by P3 in every IHC studied. Clustered nAChRs and SK2 channels were found on IHCs from P1 on using Alexa Fluor 488 conjugated α-bungarotoxin and SK2 immunohistochemistry. The number of nAChRs clusters increased with age to 16 per IHC at P8. Cholinergic efferent synaptic currents first appeared in a subset of IHCs at P1 and by P3 in every IHC studied, contemporaneously with ACh-evoked SK currents, suggesting that SK2 channels may be necessary at onset of synaptic function. An analogous pattern of development was observed for the efferent synapses that form later (P6-P8) on outer hair cells in the basal cochlea.

摘要

在发育中的哺乳动物耳蜗中,感觉毛细胞接收来自上橄榄复合体的传出神经支配。这种输入是由α9/α10 烟碱型乙酰胆碱受体(nAChR)介导的,由于随后激活钙依赖性 SK2 钾通道,因此是抑制性的。我们使用从胚胎第 21 天到出生后第 8 天(P8)的急性离体耳蜗顶圈中的内毛细胞(IHC)的全细胞电压钳记录来检查这种胆碱能传出输入的获得。从 P0 开始,几乎每个 IHC 都可以检测到 1mm 乙酰胆碱(ACh)的反应。ACh 激活电流幅度随年龄增长而增加,并表现出与包含α9 的 nAChR 相同的药理学。有趣的是,在 P0 时,ACh 反应与 SK2 通道不偶联,因此初始的胆碱能反应是兴奋性的,可以在 IHC 中触发动作电位。最早在 P1 时在一小部分 IHC 中检测到与 SK 电流的偶联,而在研究的每一个 IHC 中都在 P3 时检测到。从 P1 开始,使用 Alexa Fluor 488 缀合的α-银环蛇毒素和 SK2 免疫组织化学,在 IHC 上发现了聚集的 nAChR 和 SK2 通道。nAChR 簇的数量随年龄增加到 P8 时每个 IHC 增加到 16 个。胆碱能传出突触电流最早在 P1 时出现在一小部分 IHC 中,在研究的每个 IHC 中都在 P3 时出现,与 ACh 诱导的 SK 电流同时出现,这表明 SK2 通道可能是突触功能开始时所必需的。在基底耳蜗中形成较晚的(P6-P8)外毛细胞的传出突触也观察到类似的发育模式。

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