首页> 外文期刊>The Journal of Comparative Neurology >Opposing expression gradients of calcitonin‐related polypeptide alpha ( Calca Calca / Cgrp Cgrp α) and tyrosine hydroxylase ( Th Th ) in type II afferent neurons of the mouse cochlea
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Opposing expression gradients of calcitonin‐related polypeptide alpha ( Calca Calca / Cgrp Cgrp α) and tyrosine hydroxylase ( Th Th ) in type II afferent neurons of the mouse cochlea

机译:鼠标耳蜗II型传入神经元中钙素相关多肽α(Calca Calca / CGRP CGRPα)和酪氨酸羟化酶(TH)的相反表达梯度

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摘要

Abstract Type II spiral ganglion neurons (SGNs) are small caliber, unmyelinated afferents that extend dendritic arbors hundreds of microns along the cochlear spiral, contacting many outer hair cells (OHCs). Despite these many contacts, type II afferents are insensitive to sound and only weakly depolarized by glutamate release from OHCs. Recent studies suggest that type II afferents may be cochlear nociceptors, and can be excited by ATP released during tissue damage, by analogy to somatic pain‐sensing C‐fibers. The present work compares the expression patterns among cochlear type II afferents of two genes found in C‐fibers: calcitonin‐related polypeptide alpha ( Calca/Cgrpα ), specific to pain‐sensing C‐fibers, and tyrosine hydroxylase ( Th ), specific to low‐threshold mechanoreceptive C‐fibers, which was shown previously to be a selective biomarker of type II versus type I cochlear afferents (Vyas et al., [Vyas, P., 2016]). Whole‐mount cochlear preparations from 3‐week‐ to 2‐month‐old CGRPα‐EGFP (GENSAT) mice showed expression of Cgrp α in a subset of SGNs with type II‐like peripheral dendrites extending beneath OHCs. Double labeling with other molecular markers confirmed that the labeled SGNs were neither type I SGNs nor olivocochlear efferents. Cgrp α starts to express in type II SGNs before hearing onset, but the expression level declines in the adult. The expression patterns of Cgrp α and Th formed opposing gradients, with Th being preferentially expressed in apical and Cgrp α in basal type II afferent neurons, indicating heterogeneity among type II afferent neurons. The expression of Th and Cgrp α was not mutually exclusive and co‐expression could be observed, most abundantly in the middle cochlear turn.
机译:摘要II型螺旋神经节神经元(SGNS)是小口径,未封闭的传统,沿着耳蜗螺旋延伸数百微米的树突序列,接触许多外毛细胞(OHCs)。尽管存在这些触点,但II型引入对声音不敏感,并且仅通过从OCCS释放谷氨酸释放的弱化弱化。最近的研究表明,II型引入可能是耳蜗伤害剂,可以通过ATP在组织损伤期间释放的ATP激发,通过类似于体细胞疼痛感测的C纤维。本作本作比较C纤维中发现的两个基因的耳蜗型II传入中的表达模式:Calcitonin相关的多肽α(Calca /CGRPα),特异于疼痛感应的C纤维,以及特定于酪氨酸羟化酶(TH)。低阈值力学C纤维,其先前被显示为II型的选择性生物标志物与I型耳蜗传入(Vyas等,[Vyas,P.,2016])。从3周至2个月大的CGRPα-EGFP(Gensat)小鼠的全架耳蜗制剂显示CGRPα在SGNS子集中的表达,其中II型外周枝形延伸在OHCS下方。与其他分子标记的双标记证实标记的SGNS既不是I型SGNS也不是OlivoChlear experents。 CGRPα开始在听力发作之前在II型SGN中表达,但成年人的表达水平下降。 CGRPα和Th形成的相对梯度的表达模式,其在基础II型传入神经元中优先以顶端和CGRPα中的表达,表明II型传入神经元之间的异质性。 TH和CGRPα的表达不是相互排斥的,并且可以在中间耳蜗转弯中大量地观察到共同表达。

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