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Combined effects of urinary phytoestrogens metabolites and polymorphisms in metabolic enzyme gene on idiopathic male infertility

机译:尿中植物雌激素代谢物和代谢酶基因多态性对特发性男性不育的综合作用

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Phytoestrogens are plant-derived compounds that may interact with estrogen receptors and mimic estrogenic effects. It remains unclear whether the individual variability in metabolizing phytoestrogens contributes to phytoestrogens-induced beneficial or detrimental effects. Our aim was to determine whether there is any interaction between metabolic rates (MR) of phytoestrogens and genetic polymorphisms in related xenobiotic metabolizing enzyme genes. MR was used to assess phytoestrogen exposure and individual metabolic ability. The amount of phytoestrogens in urine was measured by ultra-high performance liquid chromatography-tandem mass spectrometry in 600 idiopathic infertile male patients and 401 controls. Polymorphisms were genotyped using the SNPstream platform combined with the Taqman method. Prototypes and metabolites of secoisolariciresinol (SEC) have inverse effects on male reproduction. It was found that low MR of SEC increased the risk of male infertility (OR 2.49, 95 % CI 1.78, 3.48, P trend = 8.00 × 10-8). Novel interactions were also observed between the MR of SEC and rs1042389 in CYP2B6, rs1048943 in CYP1A1, and rs1799931 in NAT2 on male infertility (P inter = 1.06 × 10-4, 1.14 × 10-3, 3.55 × 10-3, respectively). By analyzing the relationships between urinary phytoestrogen concentrations, their metabolites and male infertility, we found that individual variability in metabolizing SEC contributed to the interpersonal differences in SEC's effects on male reproduction.
机译:植物雌激素是植物来源的化合物,可与雌激素受体相互作用并模仿雌激素作用。目前尚不清楚代谢植物雌激素的个体差异是否会导致植物雌激素诱导的有益或有害作用。我们的目的是确定植物雌激素的代谢率(MR)与相关异源生物代谢酶基因的遗传多态性之间是否存在任何相互作用。 MR用于评估植物雌激素暴露和个体代谢能力。通过超高效液相色谱-串联质谱法测定了600例特发性不育男性患者和401例对照中尿中植物雌激素的含量。使用SNPstream平台结合Taqman方法对多态性进行基因分型。二十烷异蕾丝树脂醇(SEC)的原型和代谢产物对男性生殖有相反的影响。发现SEC的低MR增加了男性不育的风险(OR 2.49,95%CI 1.78,3.48,P趋势= 8.00×10-8)。在男性不育症中,SEC的MR与CYP2B6中的rs1042389,CYP1A1中的rs1048943和NAT2中的rs1799931之间也观察到了新的男性不育相互作用(P inter分别为1.06×10-4、1.14×10-3、3.55×10-3) 。通过分析尿中植物雌激素浓度,它们的代谢产物和男性不育之间的关系,我们发现代谢SEC的个体差异导致SEC对男性生殖的人际差异。

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