首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Genetic variation in sex hormone genes influences heel ultrasound parameters in middle-aged and elderly men: results from the European Male Aging Study (EMAS).
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Genetic variation in sex hormone genes influences heel ultrasound parameters in middle-aged and elderly men: results from the European Male Aging Study (EMAS).

机译:性激素基因的遗传变异影响中老年男性的足跟超声参数:欧洲男性衰老研究(EMAS)的结果。

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摘要

Genes involved in sex hormone pathways are candidates for influencing bone strength. Polymorphisms in these genes were tested for association with heel quantitative ultrasound (QUS) parameters in middle-aged and elderly European men. Men 40-79 yr of age were recruited from population registers in eight European centers for the European Male Aging Study (EMAS). Polymorphisms were genotyped in AR, ESR1, ESR2, CYP19A1, CYP17A1, SHBG, SRD5A2, LHB, and LHCGR. QUS parameters broadband ultrasound attenuation (BUA) and speed of sound (SOS) were measured in the heel and used to derive BMD. The relationships between QUS parameters and polymorphisms were assessed using linear regression adjusting for age and center. A total of 2693 men, with a mean age of 60.1 +/- 11.1 (SD) yr were included in the analysis. Their mean BUA was 80.0 +/- 18.9 dB/Mhz, SOS was 1550.2 +/- 34.1 m/s, and BMD was 0.542 +/- 0.141 g/cm(2). Significant associations were observed between multiple SNPs in a linkage disequilibrium (LD) block within CYP19A1, peaking at the TCT indel with the deletion allele associating with reduced ultrasound BMD in heterozygotes (beta =-0.016, p = -0.005) and homozygotes (beta = -0.029, p = 0.001). The results for BUA and SOS were similar. Significant associations with QUS parameters were also observed for the CAG repeat in AR and SNPs in CYP17A1, LHCGR, and ESR1. Our data confirm evidence of association between bone QUS parameters and polymorphisms in CYP19A1, as well as modest associations with polymorphisms in CYP17A1, ESR1, LHCGR, and AR in a population sample of European men; this supports a role for genetically determined sex hormone actions in influencing male bone health.
机译:性激素途径中涉及的基因是影响骨骼强度的候选基因。测试了这些基因的多态性与欧洲中年和老年男性脚跟定量超声(QUS)参数的关联。从欧洲八个老龄化研究中心(EMAS)的八个欧洲中心的人口登记处招募40-79岁的男性。在AR,ESR1,ESR2,CYP19A1,CYP17A1,SHBG,SRD5A2,LHB和LHCGR中对基因多态性进行基因分型。在脚后跟中测量QUS参数宽带超声衰减(BUA)和音速(SOS),并用于得出BMD。 QUS参数与多态性之间的关系使用针对年龄和中心的线性回归进行了评估。分析中包括2693名男性,平均年龄为60.1 +/- 11.1(SD)年。他们的平均BUA为80.0 +/- 18.9 dB / Mhz,SOS为1550.2 +/- 34.1 m / s,BMD为0.542 +/- 0.141 g / cm(2)。 CYP19A1内的连锁不平衡(LD)区块中的多个SNP之间存在显着关联,在杂合子(β= -0.016,p = -0.005)和纯合子(β= -0.029,p = 0.001)。 BUA和SOS的结果相似。 CYP17A1,LHCGR和ESR1的AR和SNP中的CAG重复也与QUS参数显着相关。我们的数据证实了欧洲男性人群中骨骼QUS参数与CYP19A1多态性之间的关联以及CYP17A1,ESR1,LHCGR和AR中多态性的适度关联。这支持遗传决定的性激素作用对男性骨骼健康的影响。

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