调节褪黑激素受体可调节生殖生理:阿戈美拉汀对大鼠发情周期、妊娠、后代和子宫收缩的影响

IF 1.9 4区 医学 Q3 PHYSIOLOGY Physiological research Pub Date : 2023-12-31
E Kacar, F Tan, S Sahinturk, G Zorlu, I Serhatlioglu, O Bulmus, Z Ercan, H Kelestimur
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引用次数: 0

摘要

阿戈美拉汀是一种药物化合物,可作为褪黑激素受体的激动剂,对 MT1 和 MT2 受体亚型具有特殊的亲和力。它的作用模式与多种生理过程的调节密不可分,包括昼夜节律的协调、睡眠-觉醒周期和情绪调节。在本研究中,我们深入探讨了阿戈美拉汀与发情周期、妊娠期、后代数量和子宫收缩调节之间错综复杂的相互作用,揭示了它们对生殖生理的共同影响。实验同时进行了体内和体外实验。Wistar Albino 大鼠分为四组:两组非妊娠组(D1 和 D2)和两组妊娠组(G1 和 G2)。D1 和 G1 组为对照组,D2 和 G2 组长期服用阿戈美拉汀(10 毫克/千克)。使用子宫肌层条在体外评估子宫收缩情况。褪黑激素受体拮抗剂卢吲哚(Luzindole)被用来研究阿戈美拉汀对子宫收缩影响的介导途径。在体内研究中,长期服用阿戈美拉汀可延长发情期(p
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Modulation of Melatonin Receptors Regulates Reproductive Physiology: The Impact of Agomelatine on the Estrus Cycle, Gestation, Offspring, and Uterine Contractions in Rats.

Agomelatine is a pharmaceutical compound that functions as an agonist for melatonin receptors, with a particular affinity for the MT1 and MT2 receptor subtypes. Its mode of action is integral to the regulation of diverse physiological processes, encompassing the orchestration of circadian rhythms, sleep-wake cycles, and mood modulation. In the present study, we delve into the intricate interplay between agomelatine and the modulation of estrus cycles, gestation periods, offspring numbers, and uterine contractions, shedding light on their collective impact on reproductive physiology. Both in vivo and in vitro experiments were performed. Wistar Albino rats, divided into four groups: two non-pregnant groups (D1 and D2) and two pregnant groups (G1 and G2). The D1 and G1 groups served as control groups, while the D2 and G2 groups received chronic agomelatine administration (10 mg/kg). Uterine contractions were assessed in vitro using myometrial strips. Luzindole, a melatonin receptor antagonist, was employed to investigate the pathway mediating agomelatine's effects on uterine contractions. In in vivo studies, chronic agomelatine administration extended the diestrus phase (p<0.05) in non-pregnant rats, prolonged the gestational period (p<0.01), and increased the fetal count (p<0.01) in pregnant rats. Additionally, agomelatine reduced plasma oxytocin and prostoglandin-E levels (p<0.01) during pregnancy. In vitro experiments showed that agomelatine dose-dependently inhibited spontaneous and oxytocin-induced myometrial contractions. Luzindole (2 µM) reverse the agomelatine-induced inhibition of myometrial contractions. These findings suggest that agomelatine holds the potential to modulate diverse reproductive parameters during the gestational period, influencing estrus cycling, gestational progression, offspring development, and the orchestration of uterine contractions.

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来源期刊
Physiological research
Physiological research 医学-生理学
CiteScore
4.00
自引率
4.80%
发文量
108
审稿时长
3 months
期刊介绍: Physiological Research is a peer reviewed Open Access journal that publishes articles on normal and pathological physiology, biochemistry, biophysics, and pharmacology. Authors can submit original, previously unpublished research articles, review articles, rapid or short communications. Instructions for Authors - Respect the instructions carefully when submitting your manuscript. Submitted manuscripts or revised manuscripts that do not follow these Instructions will not be included into the peer-review process. The articles are available in full versions as pdf files beginning with volume 40, 1991. The journal publishes the online Ahead of Print /Pre-Press version of the articles that are searchable in Medline and can be cited.
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