Institute of Cell Biophysics, Russian Academy of Sciences, PSCBR RAS, Institutskaya Str. 3, 142290 Moscow, Russia.
Int J Mol Sci. 2022 Apr 7;23(8):4109. doi: 10.3390/ijms23084109.
Pathways regulating cell senescence and cell cycle underlie many processes associated with ageing and age-related pathologies, and they also mediate cellular responses to exposure to stressors. Meanwhile, there are central mechanisms of the regulation of stress responses that induce/enhance or weaken the response of the whole organism, such as hormones of the hypothalamic-pituitary-adrenal (HPA) axis, sympathetic and parasympathetic systems, thymic hormones, and the pineal hormone melatonin. Although there are many analyses considering relationships between the HPA axis and organism ageing, we found no systematic analyses of relationships between the neuroendocrine regulators of stress and inflammation and intracellular mechanisms controlling cell cycle, senescence, and apoptosis. Here, we provide a review of the effects of neuroendocrine regulators on these mechanisms. Our analysis allowed us to postulate a multilevel system of central regulators involving neurotransmitters, glucocorticoids, melatonin, and the thymic hormones. This system finely regulates the cell cycle and metabolic/catabolic processes depending on the level of systemic stress, stage of stress response, and energy capabilities of the body, shifting the balance between cell cycle progression, cell cycle stopping, senescence, and apoptosis. These processes and levels of regulation should be considered when studying the mechanisms of ageing and the proliferation on the level of the whole organism.
调控细胞衰老和细胞周期的途径是许多与衰老和衰老相关病理相关过程的基础,它们也介导细胞对应激源暴露的反应。与此同时,还有一些调节应激反应的核心机制,这些机制会诱导/增强或削弱整个生物体的反应,例如下丘脑-垂体-肾上腺 (HPA) 轴、交感和副交感神经系统、胸腺激素和松果腺激素褪黑素等激素。尽管有许多分析考虑了 HPA 轴与机体衰老之间的关系,但我们没有发现关于应激的神经内分泌调节剂与控制细胞周期、衰老和细胞凋亡的细胞内机制之间关系的系统分析。在这里,我们综述了神经内分泌调节剂对这些机制的影响。我们的分析使我们能够假设一个涉及神经递质、糖皮质激素、褪黑素和胸腺激素的中枢调节剂多层次系统。该系统根据全身应激水平、应激反应阶段和身体的能量能力,精细地调节细胞周期和代谢/分解代谢过程,在细胞周期进展、细胞周期停止、衰老和细胞凋亡之间转换平衡。在研究衰老机制和整个生物体水平上的增殖时,应该考虑这些过程和调节水平。