同时激活不同亚型多巴胺受体可能导致激活稳态睡眠调节机制。

IF 3.3 3区 心理学 Q1 BEHAVIORAL SCIENCES Pharmacology Biochemistry and Behavior Pub Date : 2025-01-10 DOI:10.1016/j.pbb.2025.173954
Dóra Keserű , Tünde Hajnik , Máté Pethő , László Détári , Maarten Van Den Bossche , Attila Tóth
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引用次数: 0

摘要

多巴胺能系统在稳态睡眠调节中占有重要地位,但不同多巴胺受体的作用尚不明确。72 h大鼠在临床应用单次多巴胺能药物或至少进行临床试验后进行皮质电图和睡眠记录。非选择性激动剂阿波啡引起短暂的药理学睡眠剥夺,伴有强烈的清醒,随后出现明显的睡眠反弹。D2激动剂溴隐亭诱导清醒度中度和延长增加,无稳态睡眠替代,但慢波睡眠需求下调72 h。选择性D1激动剂SKF-38393未能诱导足以替代睡眠的增强清醒。舒必利大剂量D2拮抗剂暂时增强清醒。单次用药后,所有药物均诱发延长(72 h)睡眠变化。溴隐亭和舒必利应用不同剂量后出现相反的睡眠变化。θ、β和γ能量反映了药物诱导觉醒阶段的强度差异。阿波吗啡和高剂量舒必利诱导的清醒在所有三个频带中均显示功率升高。溴隐亭诱导的觉醒以β活动为主。在清醒时,多种类型的皮质电图活动的增强是激活睡眠稳态的先决条件。根据目前的资料,D1或d2样受体激动作用并不单独参与慢波睡眠的稳态调节。同时和非选择性的对DA受体的激动作用是诱发高强度W的最有效方式,而高强度W随后是慢波睡眠反弹。D2激动作用可诱发快速眼动睡眠反弹。反弹表明激活了体内平衡睡眠调节,但其确切机制尚不清楚。
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Simultaneous activation of different subtypes of dopamine receptors may lead to activation of homeostatic sleep regulatory mechanisms
Dopaminergic system gains importance in homeostatic sleep regulation, but the role of different dopamine receptors is not well-defined. 72 h rat electrocorticogram and sleep recordings were made after single application of dopaminergic drugs in clinical use or at least underwent clinical trials. The non-selective agonist apomorphine evoked short pharmacological sleep deprivation with intense wakefulness followed by pronounced sleep rebound. D2 agonist bromocriptine induced moderate and extended increase in wakefulness without a homeostatic sleep replacement but downregulated slow wave sleep need for 72 h. Selective D1 agonist SKF-38393 failed to induce enhanced waking sufficient for sleep replacement. High-dose D2 antagonism by sulpiride temporarily enhanced wakefulness. All drugs evoked extended (72 h) sleep changes after single application. Opposite sleep changes could be seen after the application of different doses in case of both bromocriptine and sulpiride.
Theta, beta and gamma power reflected intensity differences in drug-induced wakefulness stages. Apomorphine- and high sulpiride dose-induced waking showed elevated power in all three frequency bands. Bromocriptine-induced wakefulness dominated by beta activity. Enhancement of more, than one type of electrocorticogram activities during wakefulness was a prerequisite for the activation of sleep homeostasis.
According to present data, D1- or D2-like receptor agonism are not separately involved in the homeostatic regulation of slow wave sleep. Simultaneous and non-selective agonism on DA receptors is the most effective way to elicit intense W, which is followed by slow wave sleep rebound. REM sleep rebound could be evoked by D2 agonism. Rebound indicates the activation of homeostatic sleep regulation, but with unknown exact mechanisms.
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来源期刊
CiteScore
6.40
自引率
2.80%
发文量
122
审稿时长
38 days
期刊介绍: Pharmacology Biochemistry & Behavior publishes original reports in the areas of pharmacology and biochemistry in which the primary emphasis and theoretical context are behavioral. Contributions may involve clinical, preclinical, or basic research. Purely biochemical or toxicology studies will not be published. Papers describing the behavioral effects of novel drugs in models of psychiatric, neurological and cognitive disorders, and central pain must include a positive control unless the paper is on a disease where such a drug is not available yet. Papers focusing on physiological processes (e.g., peripheral pain mechanisms, body temperature regulation, seizure activity) are not accepted as we would like to retain the focus of Pharmacology Biochemistry & Behavior on behavior and its interaction with the biochemistry and neurochemistry of the central nervous system. Papers describing the effects of plant materials are generally not considered, unless the active ingredients are studied, the extraction method is well described, the doses tested are known, and clear and definite experimental evidence on the mechanism of action of the active ingredients is provided.
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