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Morphological phenotyping of the aging cochlea in inbred C57BL/6N and outbred CD1 mouse strains

机译:近交 C57BL/6N 和远交 CD1 小鼠品系衰老耳蜗的形态学表型

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摘要

Morphological mouse phenotyping plays a pivotal role in the translational setting and even more in the area of auditory research, where mouse is a central model organism due to the evolutionary genetic relationship and morpho‐functional analogies with the human auditory system. However, some results obtained in murine models cannot be translated to humans due to the inadequate description of experimental conditions underlying poor reproducibility. We approach the characterization of the aging process of the mouse cochlea in animals up to 18 months of age belonging to two of the most used outbred (CD1) and inbred (C57BL/6N) strains. Striving to reduce any environmental variable we performed our study compliantly to the ARRIVE guidelines. We integrated instrumental data (auditory brainstem response test), with morphological analyses to correlate functional discrepancies to morphological changes and track the differences in the evolution of sensorineural hearing loss in the two strains. We featured the localization of Gipc3, Myosin VIIa, and TMC1 in hair cells of the Corti organ as well as NF 200 and the density of type I neuron in the spiral ganglion. We outlined age‐related hearing loss (ARHL) in both strains, and a clear drop in the selected marker localization. However, in CD1 we detected a different trend allowing the identification of potential strain‐specific mechanisms, namely an increase in myosin VIIa in 6 months aging mice in comparison to 2 months old animals. Our findings represent an asset to investigate the strain‐dependent physiological trigger of ARHL providing new insights in the translational area.
机译:形态学小鼠表型在转化环境中起着关键作用,在听觉研究领域更是如此,由于与人类听觉系统的进化遗传关系和形态功能类比,小鼠是核心模式生物。然而,由于对可重复性差的实验条件的描述不充分,在小鼠模型中获得的一些结果无法转化为人类。我们接近 18 个月以下动物小鼠耳蜗衰老过程的特征,这些动物属于两种最常用的远交 (CD1) 和近交 (C57BL/6N) 品系。为了减少任何环境变量,我们按照 ARRIVE 指南进行了研究。我们将仪器数据 (听觉脑干反应测试) 与形态学分析相结合,以将功能差异与形态变化相关联,并跟踪两种菌株中感音神经性听力损失演变的差异。我们表征了 Gipc3 、 肌球蛋白 VIIa 和 TMC1 在 Corti 器官毛细胞中的定位,以及 NF 200 和螺旋神经节中 I 型神经元的密度。我们概述了两种菌株的年龄相关性听力损失 (ARHL),并且所选标志物定位明显下降。然而,在 CD1 中,我们检测到一种不同的趋势,允许识别潜在的菌株特异性机制,即与 2 个月大的动物相比,6 个月大的小鼠的肌球蛋白 VIIa 增加。我们的研究结果代表了研究 ARHL 的应变依赖性生理触发因素的资产,为转化领域提供了新的见解。

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