Department of Physiology and Cell Biology, University of Nevada, Reno School of Medicine, Reno, NV, USA.
Department of Biology, University of Nevada, Reno, Reno, NV, USA.
Neurobiol Aging. 2018 Jul;67:108-119. doi: 10.1016/j.neurobiolaging.2018.03.015. Epub 2018 Mar 21.
Hearing acuity and sound localization are affected by aging and may contribute to cognitive dementias. Although loss of sensorineural conduction is well documented to occur with age, little is known regarding short-term synaptic plasticity in central auditory nuclei. Age-related changes in synaptic transmission properties were evaluated at the mouse calyx of Held, a sign-inverting relay synapse in the circuit for sound localization, in juvenile adults (1 month old) and late middle-aged (18-21 months old) mice. Synaptic timing and short-term plasticity were severely disrupted in older mice. Surprisingly, acetyl-l-carnitine (ALCAR), an anti-inflammatory agent that facilitates mitochondrial function, fully reversed synaptic transmission delays and defects in short-term plasticity in aged mice to reflect transmission similar to that seen in juvenile adults. These findings support ALCAR supplementation as an adjuvant to improve short-term plasticity and potentially central nervous system performance in animals compromised by age and/or neurodegenerative disease.
听力敏锐度和声音定位受到年龄的影响,可能导致认知痴呆。尽管随着年龄的增长,感觉神经传导的损失已被充分记录,但对于中枢听觉核内的短期突触可塑性知之甚少。在声音定位回路中的一个反转信号传递突触——小鼠的 Held 小球,评估了与年龄相关的突触传递特性变化,在幼鼠(1 个月大)和中老年鼠(18-21 个月大)中进行了研究。在老年小鼠中,突触定时和短期可塑性严重受损。令人惊讶的是,乙酰左旋肉碱(ALCAR)是一种促进线粒体功能的抗炎剂,可完全逆转老年小鼠的突触传递延迟和短期可塑性缺陷,使其类似于在幼鼠中观察到的情况。这些发现支持 ALCAR 补充作为一种辅助手段,以改善因年龄和/或神经退行性疾病而受损的动物的短期可塑性和潜在的中枢神经系统性能。