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首页> 外文期刊>Journal of Food Science >Chronic Oral Administration of Tenebrio molitor Extract Exhibits Inhibitory Effect on Glucocorticoid Receptor Overexpression in the Hippocampus of Ovariectomy-lnduced Estrogen Deficient Mice
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Chronic Oral Administration of Tenebrio molitor Extract Exhibits Inhibitory Effect on Glucocorticoid Receptor Overexpression in the Hippocampus of Ovariectomy-lnduced Estrogen Deficient Mice

机译:长期口服黄粉虫提取物对卵巢切除术诱导的雌激素缺乏小鼠海马糖皮质激素受体过表达具有抑制作用。

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It has been reported that estrogen deficiency in female disrupts systemic endocrinologic regulatory mechanisms, finally leading to osteoporotic condition. Estrogen deficiency also down-regulates brain functions due to its deficits of its original roles in a number of neurological events. Therefore, it is necessary to find alternative materials that can prevent osteoporotic condition and maintain normal brain functions to correct such hormone deficiency. In the present study, we found that novel compounds originated from larvae of Tenebrio molitor (TM) possessed anti-osteoporotic effect. They could also prevent abnormal progressive brain function by deaccelerating enhanced HPA-axis negative feedback while maintaining neurogenesis in hippocampus. We daily administered TM to ovariectomized (OVX) ddY mice for 4 weeks and then performed histological and hormonal evaluations for its anti-osteoporotic effects. In addition, we investigated glucocorticoid receptor (GR) expression and neuroblast expression (DCX) in the hippocampal dentate gyrus morphologically by immunohistochemistry analysis. According to our results, TM has anti-osteoporotic effects. It also tends to bring interfered brain environment back to normal condition. These results suggest that TM might have anti-osteoporosis effect and enhancing effects on enrichment of environment in brain by being antidestroyed hormonal deficiency simultaneously. This is the first study to report that TM can be used as source of bioactive substance to prevent decreased neurogenesis and impaired HPA axis driven by high GR expression in the hippocampus in hormonal deficient female animals.
机译:据报道,女性的雌激素缺乏会破坏全身的内分泌调节机制,最终导致骨质疏松症。雌激素缺乏症还由于其在许多神经系统事件中的原始作用不足而下调了脑功能。因此,有必要寻找可以预防骨质疏松症并维持正常脑功能以纠正这种激素缺乏症的替代材料。在本研究中,我们发现源自黄粉虫(TM)幼虫的新型化合物具有抗骨质疏松作用。他们还可以通过加速增强的HPA轴负反馈,同时维持海马神经发生,防止异常的进行性脑功能。我们每天将TM给予去卵巢(OVX)ddY小鼠,持续4周,然后对其抗骨质疏松作用进行组织学和激素评估。此外,我们通过免疫组织化学分析从形态学上研究了海马齿状回中糖皮质激素受体(GR)和成神经细胞表达(DCX)。根据我们的结果,TM具有抗骨质疏松作用。它还倾向于使受干扰的大脑环境恢复正常。这些结果表明,TM可能同时具有抗破坏性的激素缺乏作用,具有抗骨质疏松作用,并能增强脑部环境的富集作用。这是第一项报告称TM可以用作生物活性物质的来源,以预防荷尔蒙缺乏的雌性动物海马中高GR表达驱动的神经发生减少和HPA轴受损。

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