Effects of the Polyphenol Resveratrol on Contractility of Human Term Pregnant Myometrium
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Reproductive Medicine
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The ideal agent for prevention and treatment of uterine abnormal contractility has not been found. The polyphenol resveratrol possesses a wide spectrum of pharmacologic properties, but its influence on the contractility of human myometrium is not defined. The present study evaluated the effect of resveratrol on the oxytocin-induced contractions of human term pregnant myometrium in vitro and the contribution of different K(+) channels to resveratrol action. Resveratrol induced a concentration-dependent relaxation of myometrium contractions (pD2 value and maximal responses were 4.52 and 82.25%, respectively). Glibenclamide, a selective blocker of ATP-sensitive (KATP), iberiotoxin, a selective blockers of big-calcium sensitive (BK(Ca)) and 4-aminopiridine, a non-selective blocker of voltage-sensitive (Kv) channels induced a significant shift to the right of the concentration-response curves of resveratrol. Inhibition achieved by 0.1 mM resveratrol was insensitive to all K(+) channel blockers. A K(+) channel opener, pinacidil, inhibited oxytocin-induced contractions of pregnant myometrium with comparable potency and efficacy to resveratrol (pD2 values and maximal relaxation were 4.52 and 83.67%, respectively). Based on K(+) channel opener/blocker affinities, it appears that the inhibitory response of resveratrol involves different myometrial K(+) channels. When applied in high concentrations, resveratrol has an additional K(+)-channel-independent mechanism(s) of action. Furthermore, immunohistochemistry staining and western blot analyses detected the presence and distribution of KATP, BK(Ca) and Kv channel proteins in pregnant myometrium.
Resveratrol and Female Fertility: A Systematic Review.
Bertoldo A, Pizzol D, Yon D, Callegari M, Gobbo V, Cuccurese P Int J Mol Sci. 2024; 25(23).
PMID: 39684501 PMC: 11641680. DOI: 10.3390/ijms252312792.
Ilicic M, Zakar T, Gregson A, Hussein W, Smith R, Paul J Reprod Sci. 2021; 29(11):3134-3146.
PMID: 34713433 DOI: 10.1007/s43032-021-00778-x.
Study of Magnesium Formulations on Intestinal Cells to Influence Myometrium Cell Relaxation.
Uberti F, Morsanuto V, Ruga S, Galla R, Farghali M, Notte F Nutrients. 2020; 12(2).
PMID: 32098378 PMC: 7071389. DOI: 10.3390/nu12020573.
Kraus J, Koulen P Mol Neurobiol. 2019; 57(1):422-434.
PMID: 31376069 PMC: 6980486. DOI: 10.1007/s12035-019-01705-7.
Bariani M, Correa F, Leishman E, Dominguez Rubio A, Arias A, Stern A Mol Hum Reprod. 2017; 23(8):571-581.
PMID: 28810692 PMC: 5909859. DOI: 10.1093/molehr/gax036.