首页> 外文期刊>American Journal of Physiology >Cryptotanshinone reverses reproductive and metabolic disturbances in prenatally androgenized rats via regulation of ovarian signaling mechanisms and androgen synthesis
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Cryptotanshinone reverses reproductive and metabolic disturbances in prenatally androgenized rats via regulation of ovarian signaling mechanisms and androgen synthesis

机译:Cryptotanshinone通过调节卵巢信号传导机制和雄激素合成来逆转产前和解的大鼠的生殖和代谢扰动

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摘要

This trial explores 1) prenatally androgenized (PNA) rats as a model of polycystic ovary syndrome (PCOS) and 2) reproductive and metabolic effects of cryptotanshinone in PNA ovaries. On days 16-18 of pregnancy, 10 rats were injected with testosterone propionate (PNA mothers) and 10 with sesame oil (control mothers). At age 3 mo, 12 female offspring from each group were randomly assigned to receive saline and 12 cryptotanshinone treatment during 2 wk. Before treatment, compared with the 24 controls, the 24 PNA rats had 1) disrupted estrous cycles, 2) higher 17-hydroxyprogesterone (P = 0.030), androstenedione (P = 0.016), testosterone and insulin (P values = 0.000), and glucose (P = 0.047) levels, and 3) higher areas under the curve (AUC) for glucose (AUC-Glu, P = 0.025) and homeostatic model assessment for insulin resistance (HOMA-IR, P = 0.008). After treatment, compared with vehicle-treated PNA rats, cryptotanshi-none-treated PNA rats had 1) improved estrous cycles (P = 0.045), 2) reduced 17-hydroxyprogesterone (P = 0.041), androstenedione (P = 0.038), testosterone (P = 0.003), glucose (P = 0.036), and insulin (P = 0.041) levels, and 3) lower AUC-Glu (P = 0.045) and HOMA-IR (P = 0.024). Western blot showed that cryptotanshinone reversed the altered protein expressions of insulin receptor substrate-1 and -2, phosphatidylinositol 3-kinase p85alpha, glucose transporter-4, ERK-1, and 17alpha-hydroxylase within PNA ovaries. We conclude that PNA model rats exhibit reproductive and metabolic phenotypes of human PCOS and that regulation of key molecules in insulin signaling and androgen synthesis within PNA ovaries may explain cryptotanshinone's therapeutic effects.
机译:该试验探讨了PrenateLyengised(PCA)大鼠作为PACPNA卵巢中碱基团的多囊卵巢综合征(PCOS)和2)繁殖和代谢作用的模型。在怀孕的第16-18天,用睾酮丙酸酯(PNA母亲)和10只大鼠用芝麻油(对照母亲)注射10只大鼠。在3月3日,随机分配每组12名女性后代,以在2周内获得盐水和12个加密胰岛治疗。在治疗之前,与24种对照相比,24只PNA大鼠具有1)破坏性循环,2)更高的17-羟丙基酮(P = 0.030),亚甾酮和胰岛素(P值= 0.000),和葡萄糖(P = 0.047)水平和3)曲线(AUC)下的葡萄糖(AUC-GLU,P = 0.025)和胰岛素抵抗的稳态模型评估(HOMA-IR,P = 0.008)下的较高区域。处理后,与载体处理的PNA大鼠相比,Cryptotanhi-None处理的PNA大鼠具有1)改善的溶解(P = 0.045),2)降低17-羟基酯(P = 0.041),亚甾酮(P = 0.038),睾酮(P = 0.003),葡萄糖(P = 0.036),胰岛素(P = 0.041)水平,3)下AUC- GLU(P = 0.045)和HOMA-IR(p = 0.024)。 Western Blot显示Cryptotalshinone逆转了胰岛素受体基质-1和-2,磷脂酰肌醇3-激酶P85Alpha,葡萄糖转运蛋白-4,ERK-1和17Alpha-羟基化酶的改变的蛋白质表达。我们得出结论,PNA模型大鼠表现出人PCOS的繁殖和代谢表型,并且PNA卵巢内胰岛素信号传导和雄激素合成的关键分子调节可以解释Cryptotalshinone的治疗效果。

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