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首页> 外文期刊>Scientific reports. >Estrogen Promotes Mandibular Condylar Fibrocartilage Chondrogenesis and Inhibits Degeneration via Estrogen Receptor Alpha in Female Mice
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Estrogen Promotes Mandibular Condylar Fibrocartilage Chondrogenesis and Inhibits Degeneration via Estrogen Receptor Alpha in Female Mice

机译:雌激素促进下颌髁纤维纤维化细胞生成,抑制雌性小鼠中雌激素受体α的变性

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Temporomandibular joint degenerative disease (TMJ-DD) is a chronic form of TMJ disorder that specifically afflicts people over the age of 40 and targets women at a higher rate than men. Prevalence of TMJ-DD in this population suggests that estrogen loss plays a role in the disease pathogenesis. Thus, the goal of the present study was to determine the role of estrogen on chondrogenesis and homeostasis via estrogen receptor alpha (ERα) during growth and maturity of the joint. Young and mature WT and ERαKO female mice were subjected to ovariectomy procedures and then given placebo or estradiol treatment. The effect of estrogen via ERα on fibrocartilage morphology, matrix production, and protease activity was assessed. In the young mice, estrogen via ERα promoted mandibular condylar fibrocartilage chondrogenesis partly by inhibiting the canonical Wnt signaling pathway through upregulation of sclerostin (Sost). In the mature mice, protease activity was partly inhibited with estrogen treatment via the upregulation and activity of protease inhibitor 15 (Pi15) and alpha-2-macroglobulin (A2m). The results from this work provide a mechanistic understanding of estradiol on TMJ growth and homeostasis and can be utilized for development of therapeutic targets to promote regeneration and inhibit degeneration of the mandibular condylar fibrocartilage.
机译:颞下颌联合退行性疾病(TMJ-DD)是TMJ障碍的慢性形式,特别会让40岁以上的人群,以比男性更高的速度目标。本人的TMJ-DD患病率表明雌激素损失在疾病发病机制中起着作用。因此,本研究的目的是通过雌激素受体α(ERα)在关节的生长和成熟期间确定雌激素对软骨发生和稳态的作用。幼年和成熟的WT和ERαko雌性小鼠进行卵巢切除术手术,然后给予安慰剂或雌二醇处理。评估了雌激素对纤维纤维形态,基质生产和蛋白酶活性的影响。在幼小小鼠中,通过ERα通过ERα通过促进颌骨纤维状纤维纤维菌,部分地通过抑制CONONICAL WNT信号通路促进颌骨发射途径,通过抑制燃料蛋白(SOST)。在成熟的小鼠中,通过蛋白酶抑制剂15(PI15)和α-2-大粒蛋白(A2M)的上调和活性部分地抑制蛋白酶活性。这项工作的结果提供了对TMJ生长和稳态的雌二醇的机制理解,可用于促进治疗靶标以促进再生并抑制下颌髁纤维纤维纤维化的变性。

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