Olde Engberink Anneke H O, de Torres Gutiérrez Pablo, Chiosso Anna, Das Ankita, Meijer Johanna H, Michel Stephan
Laboratory for Neurophysiology, Department of Cell and Chemical Biology, Leiden University Medical Center, Leiden, Netherlands.
Front Neurosci. 2023 May 16;17:1178457. doi: 10.3389/fnins.2023.1178457. eCollection 2023.
Aging impairs the function of the central circadian clock in mammals, the suprachiasmatic nucleus (SCN), leading to a reduction in the output signal. The weaker timing signal from the SCN results in a decline in rhythm strength in many physiological functions, including sleep-wake patterns. Accumulating evidence suggests that the reduced amplitude of the SCN signal is caused by a decreased synchrony among the SCN neurons. The present study was aimed to investigate the hypothesis that the excitation/inhibition (E/I) balance plays a role in synchronization within the network.
Using calcium (Ca) imaging, the polarity of Ca transients in response to GABA stimulation in SCN slices of old mice (20-24 months) and young controls was studied.
We found that the amount of GABAergic excitation was increased, and that concordantly the E/I balance was higher in SCN slices of old mice when compared to young controls. Moreover, we showed an effect of aging on the baseline intracellular Ca concentration, with higher Ca levels in SCN neurons of old mice, indicating an alteration in Ca homeostasis in the aged SCN. We conclude that the change in GABAergic function, and possibly the Ca homeostasis, in SCN neurons may contribute to the altered synchrony within the aged SCN network.
衰老会损害哺乳动物中枢生物钟视交叉上核(SCN)的功能,导致输出信号减弱。来自SCN的较弱定时信号会导致包括睡眠-觉醒模式在内的许多生理功能的节律强度下降。越来越多的证据表明,SCN信号幅度的降低是由SCN神经元之间同步性降低所致。本研究旨在探讨兴奋/抑制(E/I)平衡在网络同步中起作用这一假说。
使用钙(Ca)成像技术,研究了老年小鼠(20 - 24个月)和年轻对照小鼠SCN切片中对GABA刺激的Ca瞬变极性。
我们发现老年小鼠SCN切片中GABA能兴奋量增加,与之相应地,与年轻对照相比,老年小鼠SCN切片中的E/I平衡更高。此外,我们显示衰老对基线细胞内Ca浓度有影响,老年小鼠SCN神经元中的Ca水平更高,表明老年SCN中Ca稳态发生改变。我们得出结论,SCN神经元中GABA能功能的变化以及可能的Ca稳态变化,可能导致老年SCN网络内同步性改变。