Shen Haitao, Liu Weilin, Geng Qiaowei, Li Hongchen, Lu Mingshun, Liang Peng, Zhang Bo, Yamoah Ebenezer N, Lv Ping
Laboratory of Pathology, Hebei Medical University, Shijiazhuang, China.
Division of Cardiovascular Medicine, Hebei Province Geriatric Hospital, Shijiazhuang, China.
Front Aging Neurosci. 2018 Nov 6;10:353. doi: 10.3389/fnagi.2018.00353. eCollection 2018.
Age-related hearing loss (AHL) is the most common sensory disorder in the elderly population, and the etiologies are diverse. To understand the underlying mechanisms of AHL, one strategy is to identify correlates of the disease for comprehensive evaluation of treatment approaches. Dysfunction and degeneration of spiral ganglion neurons (SGNs) are major contributors to AHL. Previously, we showed that one of the changes in the aging auditory system is SGN excitability increase in mice. Since hyperpolarization-activated cyclic nucleotide-gated (HCN) channels play important roles in determining neuronal excitability, we predicted that HCN channels in SGNs are involved in AHL. To investigate the contribution of HCN channels to AHL, we examined the expression and biophysical properties of HCN channels in SGNs from adult (2-3 months) and 11-12-month-old mice. We report a dramatic increase of HCN channel current (Ih) in SGNs in old mice (11-12 months old). The results matched well with increased expression of HCN1 and HCN2 subunits, suggesting that upregulation of HCN channels in SGNs is one of the important facets of the aging SGNs. Moreover, the activity of Ih produced a major impact on the firing properties of SGNs in older mice. The upregulation of Ih may contribute to AHL by regulating SGN excitability. We assessed whether increased SGNs excitability dovetail with neurodegeneration. Apoptosis-inducing factor (AIF)-mediated apoptosis in SGNs was observed in old mice and activation of HCN channels mediates AIF activation. Thus, these findings demonstrate stark correlation between age-dependent increased expression of HCN channels and Ih, and apoptosis in SGNs, which may contribute towards the varied mechanisms of AHL.
年龄相关性听力损失(AHL)是老年人群中最常见的感觉障碍,其病因多种多样。为了了解AHL的潜在机制,一种策略是识别该疾病的相关因素,以便对治疗方法进行全面评估。螺旋神经节神经元(SGNs)的功能障碍和退化是AHL的主要原因。此前,我们发现衰老听觉系统的变化之一是小鼠SGNs兴奋性增加。由于超极化激活的环核苷酸门控(HCN)通道在决定神经元兴奋性方面起重要作用,我们预测SGNs中的HCN通道与AHL有关。为了研究HCN通道对AHL的作用,我们检测了成年(2 - 3个月)和11 - 12个月大小鼠SGNs中HCN通道的表达和生物物理特性。我们报告老年小鼠(11 - 12个月大)的SGNs中HCN通道电流(Ih)显著增加。结果与HCN1和HCN2亚基表达增加相匹配,表明SGNs中HCN通道的上调是衰老SGNs的重要特征之一。此外,Ih的活性对老年小鼠SGNs的放电特性产生了重大影响。Ih的上调可能通过调节SGNs兴奋性导致AHL。我们评估了SGNs兴奋性增加是否与神经退行性变相吻合。在老年小鼠中观察到凋亡诱导因子(AIF)介导的SGNs凋亡,并且HCN通道的激活介导AIF激活。因此,这些发现表明HCN通道和Ih的年龄依赖性表达增加与SGNs凋亡之间存在明显相关性,这可能有助于解释AHL的多种机制。