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tau 磷酸化和耳蜗细胞凋亡导致阿尔茨海默病 3×Tg-AD 模型小鼠的听力损失。

Tau phosphorylation and cochlear apoptosis cause hearing loss in 3×Tg-AD Mouse Model of Alzheimer's Disease.

机构信息

School of Life Sciences, National Taiwan Normal University, Taipei; Department of Pathological, Saint Paul's Hospital, Taoyuan City, Taiwan.

School of Life Sciences, National Taiwan Normal University, Taipei, Taiwan.

出版信息

Chin J Physiol. 2021 Mar-Apr;64(2):61-71. doi: 10.4103/CJP.CJP_79_20.

DOI:10.4103/CJP.CJP_79_20
PMID:33938816
Abstract

Clinically typical dementia Alzheimer's disease (AD) is associated with abnormal auditory processing. However, possible molecular mechanisms responsible for the auditory pathology of AD patients are not known. According to our past research findings that the thresholds of auditory brainstem response, but not distortion product otoacoustic emissions, were significantly increased in AD mice from 9 months of age and thereafter. Thus, we further explored the possible mechanism of auditory degradation of 3×Tg-AD mice in this study. Our histochemical staining evidence showed the cochlear spiral ganglion neurons (SGN), but not the cochlear hair cells, were lost significantly in the cochlea of 3×Tg-AD mice from 9 months of age and thereafter. Our immunostaining and western blotting evidence showed that phosphorylated tau protein (p-Tau), p-glycogen synthase kinase 3, neurofilament, and apoptosis-related p53, Bcl2-associated X protein, cytochrome c, caspase-9, and caspase-3 were gradually increased, but B-cell lymphoma 2 was gradually decreased with age growth in the cochlea of 3×Tg-AD mice. We suggested that tau hyperphosphorylation and p-Tau 181 aggregation, and mitochondria- and endoplasmic reticulum stress-mediated apoptosis may play a role in the degeneration of SGN in the cochlea. Progressive SGN degeneration in the cochlea may contribute to hearing loss of aging 3×Tg-AD mice.

摘要

临床上典型的阿尔茨海默病(AD)与听觉处理异常有关。然而,导致 AD 患者听觉病理的可能分子机制尚不清楚。根据我们过去的研究发现,AD 小鼠从 9 个月大开始,听觉脑干反应的阈值,但不是畸变产物耳声发射的阈值,显著增加。因此,我们在这项研究中进一步探索了 3×Tg-AD 小鼠听觉退化的可能机制。我们的组织化学染色证据表明,9 个月大及以后,3×Tg-AD 小鼠耳蜗中的螺旋神经节神经元(SGN)而非耳蜗毛细胞显著丢失。我们的免疫染色和 Western blot 证据表明,磷酸化tau 蛋白(p-Tau)、p-糖原合酶激酶 3、神经丝、凋亡相关的 p53、Bcl2 相关 X 蛋白、细胞色素 c、caspase-9 和 caspase-3 逐渐增加,而 B 细胞淋巴瘤 2 随着年龄的增长而逐渐减少在 3×Tg-AD 小鼠耳蜗中的表达。我们认为,tau 过度磷酸化和 p-Tau181 聚集,以及线粒体和内质网应激介导的细胞凋亡可能在耳蜗 SGN 变性中起作用。耳蜗中 SGN 的进行性退化可能导致衰老 3×Tg-AD 小鼠的听力损失。

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