多囊卵巢综合征 (PCOS) 妇女的双氧化酶 1、2 基因表达

Ardeshir Hesampour, Mina Jafarabadi, Shima Rajabi, E. Rezayof, Akram Ghahghaei Nezamabadi
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引用次数: 0

摘要

目的:双氧化酶(DUOX1、DUOX2双氧化酶(DUOX1、DUOX2)属于 NADPH 氧化酶(NOX)家族,可产生甲状腺激素生物合成所需的 H2O2。本研究旨在评估多囊卵巢综合征患者中 DUOX1 和 DUOX2 的基因表达及其与甲状腺激素和镁水平的关系。 材料和方法:共研究了 88 例患者,包括 24 例多囊卵巢综合征合并甲减患者、44 例多囊卵巢综合征合并甲状腺功能正常患者和 20 例无多囊卵巢综合征的甲减患者。相比之下,研究人员对 40 名年龄在 16-35 岁之间的健康对照者进行了评估,对照者的年龄组和体重指数均匹配。使用 Vegaro 注射器从所有 128 人中抽取 5 cc 血液,在提取 RNA 并使用 Real-Time PCR 技术合成 cDNA 后,对 DUOX1 和 DUOX2 基因的表达水平进行了研究。 结果显示激素检测结果显示,有或无多囊卵巢综合征的甲减患者的 T4、T3 和 TSH 激素水平与对照组相比存在显著差异。在镁水平方面,结果显示有或没有甲状腺功能减退症的多囊卵巢综合征组患者的镁水平与对照组相比存在显著差异。基因表达结果显示,与对照组相比,各组 DUOX1 基因表达的相对变化显著降低,P<0.05。甲状腺功能减退的多囊卵巢组的基因表达水平与甲状腺功能正常的多囊卵巢组和甲状腺功能减退的非多囊卵巢组相比有所下降,差异有统计学意义(P<0.05)。 结论根据本研究的结果以及之前在 Duox1 领域发表的研究,可以推测 Duox1 表达的减少会干扰氧化应激系统。利用其他分子技术进行的进一步研究可能有助于了解这些基因的确切作用机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dual oxidase 1, 2 Gene Expression in Women With Polycystic Ovary Syndrome (PCOS)
Objective: Dual oxidases (DUOX1, DUOX2) belong to the NADPH oxidase (NOX) family, which produce H2O2 necessary for thyroid hormone biosynthesis. This study aims to evaluate gene expression for DUOX1, DUOX2 in PCOS patients and its relation with thyroid hormone and magnesium levels. Materials and methods: Totally 88 cases were studied including 24 people with PCOS and hypothyroidism, 44 people with PCOS and normal thyroid function, and 20 hypothyroid patients without PCOS. In comparison 40 healthy controls in the age group of 16-35 years matched for age group and BMI were evaluated. Using Vegaro syringe 5 cc of blood was sampled from all 128 people and after RNA extraction and cDNA synthesis using Real-Time PCR technique, the expression level of DUOX1 and DUOX2 genes was investigated. Results: The results of hormonal tests showed that there is a significant difference between the level of T4, T3, and TSH hormones in hypothyroid patients with or without PCOS in comparison to the control group. Regarding the level of Mg, the results showed that there is a significant difference between the levels of Mg in PCOS group with or without hypothyroidism in comparison to the control group. Gene expression results showed that the relative changes of DUOX1 gene expression in different groups compared to the control group were significantly reduced P<0.05. In the polycystic group with hypothyroidism, the gene expression level showed a decrease compared to the normo-thyroid polycystic group and the hypothyroid non-PCO group, which was statistically significant P<0.05. Conclusion: According to the results of the present study and the previous studies that have been published in the field of Duox1, it can be assumed that the reduction of Duox1 expression can interfere with the oxidative stress system. Further studies with other molecular techniques may help to understand the exact action mechanism of these genes.
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