University of Göttingen, Johann Friedrich Blumenbach Institute of Zoology and Anthropology, Göttingen, Germany.
Expert Opin Investig Drugs. 2010 Jun;19(6):747-64. doi: 10.1517/13543784.2010.482926.
Melatonin is a major chronobiological regulator involved in circadian phasing, sleep, and numerous other functions including cyto-/neuroprotection, immune modulation, and energy metabolism. The suitability of melatonin as a drug is limited because of its short half-life. Therefore, various indolic and non-indolic melatonergic agonists have been developed. Frequent health problems such as sleep disturbances, neuropsychiatric disorders related to circadian dysphasing, and metabolic diseases associated with insulin resistance are targeted by melatonergic agonists.
Various synthetic melatonergic drugs are compared with regard to receptor affinities, selectivity, effects on sleep, endogenous melatonin, circadian phase and insulin-related metabolism.
The chemical design of melatonin receptor agonists is discussed in relation to consequences for receptor affinity, selectivity, metabolism, and spectrum of effects.
Melatonergic agonists are suitable for phase-shifting circadian rhythms, and may be used for treating disorders related to circadian dysfunction including sleep difficulties. Facilitation of sleep onset is a general property, whereas promotion of sleep maintenance is demonstrable but not always fully sufficient. Details are especially available for tasimelteon. Support of insulin sensitivity may become a new area of application for compounds such as NEU-P11. Some drugs acting additionally as serotonergic antagonists display antidepressant properties.
褪黑素是一种主要的生物钟调节剂,参与昼夜节律的调相、睡眠以及许多其他功能,包括细胞/神经保护、免疫调节和能量代谢。褪黑素半衰期短,作为药物的适用性有限。因此,已经开发了各种吲哚和非吲哚类褪黑素能激动剂。褪黑素能激动剂针对睡眠障碍等常见健康问题、与昼夜节律失调相关的神经精神障碍以及与胰岛素抵抗相关的代谢疾病。
各种合成褪黑素能药物在受体亲和力、选择性、对睡眠、内源性褪黑素、昼夜节律和与胰岛素相关的代谢的影响方面进行了比较。
褪黑素受体激动剂的化学设计与受体亲和力、选择性、代谢和作用谱的后果进行了讨论。
褪黑素能激动剂适合调整昼夜节律,可用于治疗与昼夜节律功能障碍相关的疾病,包括睡眠困难。促进睡眠起始是一般特性,而促进睡眠维持则是可证明的,但并非总是完全足够。tasimelteon 尤其如此。对于 NEU-P11 等化合物,支持胰岛素敏感性可能成为新的应用领域。一些作为 5-羟色胺能拮抗剂的药物具有抗抑郁作用。