Endometrial stromal cell miR-29c-3p regulates uterine contraction
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Endometrial miR-29c-3p regulates uterine contraction by targeting OXTR and reducing PGF2α release, with its overexpression associated with hypoperistalsis.
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Abstract
Uterine peristalsis plays a vital role in fertility and female reproductive health. Although uterine peristalsis is thought to be correlated with some hormones and uterine pathologies, the physiological mechanisms underlying uterine peristalsis remain not quite clear. This study aimed to identify changes in miRNA in the endometrium of patients with abnormally high-frequency (hyper-) and low-frequency (hypo-) peristalsis to clarify whether miRNAs regulate uterine peristalsis. We used a miRNA microarray and RT-qPCR to identify changes in miRNA in endometrial tissue, a collagen gel contraction assay on co-cultured human endometrial stromal cells (ESCs) to analyze how the altered regulation of miRNAs influences uterine smooth muscle (USM) contraction, Western blots and other assays to elucidate the potential mechanisms involved. We found that among several differentially regulated miRNAs, miR-29c-3p was overexpressed in endometrial samples from patients with hypoperistalsis; oxytocin receptor (OXTR) expression was low in endometrial samples from patients with hypoperistalsis. Bioinformatic analysis and luciferase assays indicated that OXTR is a target of miR-29c-3p, which attenuates its expression. Additionally, downregulation of miR-29c-3p in ESC cultures increased the expression of aldo-keto reductase family 1, member C3 (AKR1C3) and increased the release of prostaglandin F2 alpha (PGF2α). Co-cultured ESCs overexpressing miR-29c-3p reduced USM cell contractions; the opposite tendency was found when ESCs were transfected with a miR-29c-3p inhibitor. To conclude, miR-29c-3p in endometrial cells regulates uterine contractility by attenuating the expression of OXTR and reducing PGF2α release.
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References (39)
- Administration of atosiban in patients with endometriosis undergoing frozen–thawed embryo transfer: a prospective, randomized study via openalex
- Influence of controlled ovarian hyperstimulation on uterine peristalsis in infertile women via openalex
- Possible roles of oxytocin receptor and vasopressin-1α receptor in the pathomechanism of dysperistalsis and dysmenorrhea in patients with adenomyosis uteri via openalex
- Role of estrogen and progesterone in the regulation of uterine peristalsis: results from perfused non-pregnant swine uteri via openalex
- The cyclic pattern of the immunocytochemical expression of oestrogen and progesterone receptors in human myometrial and endometrial layers: characterization of the endometrialsubendometrial unit via openalex
- Ultramicro-trauma in the endometrial-myometrial junctional zone and pale cell migration in adenomyosis via openalex
- Uterine peristalsis during the follicular phase of the menstrual cycle: effects of oestrogen, antioestrogen and oxytocin via openalex
- Uterine peristalsis exerts control over fluid migration after mock embryo transfer via openalex
- Uterine peristalsis-induced stresses within the uterine wall may sprout adenomyosis via openalex
- Uterine Peristaltic Activity and the Development of Endometriosis via openalex
- Uterine peristaltic activity during the menstrual cycle: characterization, regulation, function and dysfunction via openalex
- W2018925187 via openalex
- W2082953794 via openalex
- W2082993375 via openalex
- W2097443687 via openalex
- W2106194989 via openalex
- W2015363208 via openalex
- W1990388343 via openalex
- W2109831510 via openalex
- W2121014368 via openalex
- W2122148434 via openalex
- W2125836586 via openalex
- W2127565362 via openalex
- W1973250608 via openalex
- W2136302785 via openalex
- W2137385355 via openalex
- W2153757714 via openalex
- W2161350899 via openalex
- W2165031064 via openalex
- W2166169133 via openalex
- W2466655046 via openalex
- W2563746937 via openalex
- W2769166145 via openalex
- W2796038664 via openalex
- W2872471934 via openalex
- W2024597485 via openalex
- W2035379516 via openalex
- W2038304290 via openalex
- W2049478081 via openalex
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- last seen: 2026-06-10T17:14:06.276822+00:00
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