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实验室大鼠母体血清、胎盘和羊水炎症反应及氧化应激的动态变化以及染料木黄酮苷元所起的作用

Dynamics of inflammatory reaction and oxidative stress across maternal serum, placenta and amniotic fluid in laboratory rats and the role played by genistein aglycone.

作者信息

Awobajo Funmileyi O, Morakinyo Ayodele O, Samuel Titilola A, Oyelowo Oluwakemi T, Ogunsola Abimbola O, Onyekwele Perpetual U, Okedina Mosunmola E, Ogunbanwo Oluwadamilola O

机构信息

Department of Physiology, Faculty of Basic Medical Sciences, College of Medicine, University of Lagos, Room 006, Block F, Idi-araba, Surulere, Lagos, Nigeria, Phone: +23408053416937.

Department of Physiology, Faculty of Basic Medical Sciences, College of Medicine, University of Lagos, Lagos, Nigeria.

出版信息

J Basic Clin Physiol Pharmacol. 2018 Dec 19;30(1):37-45. doi: 10.1515/jbcpp-2018-0070.

Abstract

Background Genistein was reported to adversely influence fetal development although this is yet to be fully understood as a mechanism. Methods In this study, pregnant rats were divided into control (Cont.) and genistein force-fed (2-mg/kg and 4-mg/kg) groups. Each group was divided further into five subgroups: GD-0, GD-6, GD-13, GD-18, and GD-20 based on the terminal gestational day (GD). On the respective terminal GD, the rats were sacrificed and blood samples and amniotic fluid were carefully collected and separated and placenta homogenates were prepared. These samples were evaluated for oxidative stress and inflammatory reaction. The weights of embryonic implant and placenta tissue were also recorded. Heat shock protein (Hsp) (60 and 90), corticosterone, and oxidative stress biomarkers were determined in all the samples. Results Fetal and placental weights in all genistein-exposed groups were significantly decreased. A fluctuation in the level of the Hsp was recorded with a significant decrease recorded in Hsp90 level in the placenta and amniotic fluid towards GD-20 along with a concomitant increase in the corticosterone level in the amniotic fluid in all genistein groups compared to control. Maternal serum at GD-18 and GD -20 recorded a significant increase in antioxidant level (SOD, GSH, CAT) in all genistein-exposed groups. However, these antioxidants were significantly reduced in the placenta and the amniotic fluid compared to control. Conclusions Genistein enhances the placenta function in attenuating the risk of oxidative stress in the amniotic fluid and deferentially suppressed inflammatory activities in the placenta during early gestation and towards late gestation period.

摘要

背景

据报道,金雀异黄素会对胎儿发育产生不利影响,尽管其机制尚未完全明确。方法:在本研究中,将怀孕大鼠分为对照组(Cont.)和金雀异黄素强制喂食组(2 mg/kg和4 mg/kg)。根据妊娠末期天数(GD),每组进一步分为五个亚组:GD-0、GD-6、GD-13、GD-18和GD-20。在各自的妊娠末期,处死大鼠,仔细收集并分离血液样本和羊水,并制备胎盘匀浆。对这些样本进行氧化应激和炎症反应评估。还记录胚胎植入物和胎盘组织的重量。在所有样本中测定热休克蛋白(Hsp)(60和90)、皮质酮和氧化应激生物标志物。结果:所有暴露于金雀异黄素的组中,胎儿和胎盘重量均显著降低。记录到Hsp水平有波动,与对照组相比,所有金雀异黄素组的胎盘和羊水中Hsp90水平在GD-20时显著降低,同时羊水中皮质酮水平相应升高。在GD-18和GD-20时,所有暴露于金雀异黄素的组中母体血清抗氧化水平(超氧化物歧化酶、谷胱甘肽、过氧化氢酶)显著升高。然而,与对照组相比,这些抗氧化剂在胎盘和羊水中显著减少。结论:金雀异黄素在妊娠早期和晚期增强胎盘功能,减轻羊水氧化应激风险,并差异抑制胎盘炎症活动。

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