Medical faculty, Institute of Physiology, RWTH Aachen University, Aachen, Germany.
J Pineal Res. 2024 Jan;76(1):e12919. doi: 10.1111/jpi.12919. Epub 2023 Oct 5.
Besides its role in the circadian rhythm, the pineal gland hormone melatonin (MLT) also possesses antiepileptogenic, antineoplastic, and cardioprotective properties, among others. The dosages necessary to elicit beneficial effects in these diseases often far surpass physiological concentrations. Although even high doses of MLT are considered to be largely harmless to humans, the possible side effects of pharmacological concentrations are so far not well investigated. In the present study, we report that pharmacological doses of MLT (3 mM) strongly altered the electrophysiological characteristics of cultured primary mouse cerebellar granule cells (CGCs). Using whole-cell patch clamp and ratiometric Ca imaging, we observed that pharmacological concentrations of MLT inhibited several types of voltage-gated Na , K , and Ca channels in CGCs independently of known MLT-receptors, altering the character and pattern of elicited action potentials (APs) significantly, quickly and reversibly. Specifically, MLT reduced AP frequency, afterhyperpolarization, and rheobase, whereas AP amplitude and threshold potential remained unchanged. The altered biophysical profile of the cells could constitute a possible mechanism underlying the proposed beneficial effects of MLT in brain-related disorders, such as epilepsy. On the other hand, it suggests potential adverse effects of pharmacological MLT concentrations on neurons, which should be considered when using MLT as a pharmacological compound.
除了在生物钟节律中发挥作用外,松果体激素褪黑素(MLT)还具有抗癫痫、抗肿瘤和心脏保护等特性。在这些疾病中,产生有益效果所需的剂量往往远远超过生理浓度。尽管即使是高剂量的 MLT 被认为对人类基本无害,但目前尚未充分研究药理浓度下的可能副作用。在本研究中,我们报告称,药理剂量的 MLT(3mM)强烈改变了培养的原代小鼠小脑颗粒细胞(CGC)的电生理特性。通过全细胞膜片钳和比率 Ca2+成像,我们观察到药理浓度的 MLT 独立于已知的 MLT 受体,抑制了 CGC 中的几种电压门控 Na+、K+和 Ca2+通道,显著改变了诱发动作电位(AP)的特性和模式,这种改变快速且可逆。具体而言,MLT 降低了 AP 的频率、后超极化和阈强度,而 AP 的幅度和阈电位保持不变。细胞的这种改变的生物物理特性可能构成了 MLT 在与大脑相关的疾病(如癫痫)中提出的有益作用的可能机制。另一方面,它提示药理 MLT 浓度对神经元可能存在潜在的不良影响,在将 MLT 用作药理学化合物时应考虑这些影响。