Two thalidomide analogs induce persistent estrous behavior and inhibit uterus contractility in rats: The central role of cAMP
•Thalidomide analogs stimulate lordosis behavior throughout the estrogen receptors•Thalidomide analogs stimulate lordosis behavior throughout the progesterone receptors•cAMP pathway mediates the effect of thalidomide analogs on lordosis behavior•Thalidomide analogs inhibit the K+-induced tonic contr...
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Veröffentlicht in: | Neuroscience letters 2020-01, Vol.714, p.134612, Article 134612 |
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Sprache: | eng |
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Zusammenfassung: | •Thalidomide analogs stimulate lordosis behavior throughout the estrogen receptors•Thalidomide analogs stimulate lordosis behavior throughout the progesterone receptors•cAMP pathway mediates the effect of thalidomide analogs on lordosis behavior•Thalidomide analogs inhibit the K+-induced tonic contractions in rat uterus•Thalidomide analogs inhibit the Ca2+-induced tonic contractions in rat uterus
The effects of 4NO2PDPMe and 4APDPMe, which are thalidomide (Tha) analogs that act as selective phosphodiesterase (PDE-4) inhibitors, on estrous behavior (lordosis and proceptive behaviors) and on uterine contraction were studied in ovariectomized (OVX) estrogen-primed Sprague Dawley (SD) and in intact non-pregnant Wistar rats, respectively. We found that intracerebroventricular (ICV) infusion of either 4NO2PDPMe or 4APDPMe (20 to 80 μg) stimulated intense lordosis and proceptive behavior in response to mounts from a sexually active male, within the first 4 h after infusion, and persisting for up to 24 h. Inhibitors of the progesterone receptor (RU486, administered subcutaneously), the estrogen receptor (tamoxifen, ICV), the adenylate cyclase (AC)/ cyclic AMP (cAMP)/protein kinase A (PKA) pathway (administered ICV), and the mitogen activated protein kinase (MAPK) pathway (administered ICV) significantly decreased lordosis and proceptive behavior induced by Tha analogs. Uterine contractility studies showed that Tha analogs inhibited both the K+- and the Ca2+-induced tonic contractions in rat uterus. Tha analogs were equally effective, but 4APDPMe was more potent than 4NO2PDPMe. These results strongly suggest the central role of cAMP in both processes, sexual behavior, and uterine relaxation, and suggest that Tha analogs may also act as Ca2+-channel blockers. |
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ISSN: | 0304-3940 1872-7972 |
DOI: | 10.1016/j.neulet.2019.134612 |