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Prolactin Expression in the Cochlea of Aged BALB/c Mice Is Gender Biased and Correlates to Loss of Bone Mineral Density and Hearing Loss

机译:催乳素在老年BALB / c小鼠耳蜗中的表达受到性别偏见并与骨矿物质密度的丧失和听力损失有关

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摘要

Prolactin is a versatile hormone with over 300 known functions and predominantly expressed in the pituitary. However, its expression has additionally been found in a number of extrapituitary organs. Recently, we described the expression of prolactin in the inner ear of mice, where it was correlated to age. Previous research has shown prolactin to be linked to abnormal bone metabolism and hearing loss due to changes in morphology of the bony otic capsule. Here we further investigated the relationship between prolactin, hearing loss and cochlea bone metabolism. BALB/c mice were tested for hearing using ABR at 6 and 12 months of age. Bone mineral density of the cochlea was evaluated using microCT scanning. Prolactin expression was calculated using quantitative real time PCR. Expression of the key regulators of bone metabolism, osteoprotegerin and receptor activator of nuclear factor-kappaB ligand were also determined. We found that prolactin expression was exclusive to the female mice. This also correlated to a greater threshold shift in hearing for the females between 6 and 12 months of age. Analyses of the cochlea also show that the bone mineral density was lower in females compared to males. However, no gender differences in expression of osteoprotegerin or receptor activator of nuclear factor-kappaB ligand could be found. Further analysis of cochlea histological sections revealed larger ostocyte lacunae in the females. These results provide a possible mechanism for an age related hearing loss sub-type that is associated with gender and provides clues as to how this gender bias in hearing loss develops. In addition, it has the potential to lead to treatment for this specific type of hearing loss.
机译:催乳素是一种具有300多种已知功能的多功能激素,主要在垂体中表达。但是,它的表达还发现在许多垂体外器官中。最近,我们描述了催乳素在小鼠内耳中的表达,与年龄相关。先前的研究表明,催乳素与由于骨性耳囊形态改变而引起的异常骨骼代谢和听力下降有关。在这里,我们进一步研究了催乳素,听力损失和耳蜗骨代谢之间的关系。使用6个月和12个月大的ABR测试BALB / c小鼠的听力。使用microCT扫描评估耳蜗的骨矿物质密度。使用定量实时PCR计算催乳素表达。还确定了骨代谢关键调节因子,骨保护素和核因子-κB配体的受体激活剂的表达。我们发现催乳素的表达是雌性小鼠所独有的。这也与6到12个月大的女性听力阈值偏移更大有关。耳蜗的分析还表明,女性的骨矿物质密度低于男性。但是,在骨保护素或核因子-κB配体的受体激活剂的表达中未发现性别差异。对耳蜗组织学切片的进一步分析显示雌性中较大的造血细胞腔。这些结果为与年龄相关的与年龄相关的听力损失亚型提供了一种可能的机制,并提供了有关这种听力损失中的性别偏见如何发展的线索。另外,它有可能导致针对这种特定类型的听力损失的治疗。

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