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首页> 外文期刊>Molecular human reproduction. >Prostaglandin F(2alpha), cytokines and cyclic mechanical stretch augment matrix metalloproteinase-1 secretion from cultured human uterine cervical fibroblast cells.
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Prostaglandin F(2alpha), cytokines and cyclic mechanical stretch augment matrix metalloproteinase-1 secretion from cultured human uterine cervical fibroblast cells.

机译:前列腺素F(2alpha),细胞因子和循环机械拉伸从培养的人子宫宫颈成纤维细胞分泌基质金属蛋白酶-1分泌。

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摘要

Human uterine cervical tissue is composed mainly of fibroblast cells and the extracellular matrix in which collagen types I and III predominate. It is hypothesized that these collagens are degraded by matrix metalloproteinases (MMPs) in the initial step of uterine cervical ripening during parturition. Among the MMPs, MMP-1, -8 and -13 have substrate selectivity for collagen types I and III. In the present study, we examined the regulation of MMP-1 secretion from the human uterine cervix. Immunohistochemistry detected strong staining of MMP-1, but not of MMP-8 or -13, in stromal cells of the pregnant uterine cervix. The MMP-1 expression in the pregnant uterine cervix was further confirmed by Western blot analysis and RT-PCR. To clarify the regulation of MMP-1 production, we subsequently investigated the effects of prostaglandins, inflammatory cytokines and cyclic mechanical stretch on the secretion of MMP-1 from cultured human uterine cervical fibroblast cells. Treatment with prostaglandin (PG)F(2alpha) (10(-7) to 10(-5) mol/l) or interleukin (IL)-1alpha (0.01-1.0 ng/ml) or stimulation with cyclic mechanical stretch increased MMP-1 secretion from cultured human uterine cervical fibroblast cells, with maximal increases of 3.4-, 4.5- and 1.9-fold respectively (24 h of treatment, P < 0.05 for all comparisons). These data suggest that MMP-1 may play a significant role in the degradation of extracellular collagen types I and III in the pregnant uterine cervix during the process of cervical ripening, in response to various stimulations such as PGF(2alpha), IL-1alpha and mechanical stretch.
机译:人子宫宫颈组织主要由成纤维细胞和细胞外基质组成,其中I型和III型胶原占主导。假设在分娩期间子宫宫颈成熟的初始步骤中,这些胶原蛋白会被基质金属蛋白酶(MMP)降解。在MMP中,MMP-1,-8和-13对I型和III型胶原具有底物选择性。在本研究中,我们检查了人子宫颈MMP-1分泌的调节。免疫组织化学检测到怀孕的子宫颈基质细胞中的MMP-1染色很强,但没有MMP-8或-13染色。 Western blot分析和RT-PCR进一步证实了孕妇子宫颈中MMP-1的表达。为了阐明MMP-1产生的调控,我们随后研究了前列腺素,炎性细胞因子和周期性机械拉伸对培养的人子宫成纤维细胞MMP-1分泌的影响。用前列腺素(PG)F(2alpha)(10(-7)至10(-5)mol / l)或白介素(IL)-1alpha(0.01-1.0 ng / ml)治疗或用周期性机械拉伸刺激均会增加MMP-培养的人子宫宫颈成纤维细胞分泌了1种分泌物,分别最大增加了3.4倍,4.5倍和1.9倍(治疗24小时,所有比较的P <0.05)。这些数据表明,MMP-1可能在子宫颈成熟过程中响应各种刺激(例如PGF(2alpha),IL-1alpha和机械拉伸。

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