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 and environmental contributions to the association between quantitative ultrasound and bone mineral density measurements: a twin study.
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Genetic and environmental contributions to the association between quantitative ultrasound and bone mineral density measurements: a twin study.

机译:遗传和环境对定量超声和骨矿物质密度测量之间关联的贡献:一项孪生研究。

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This study was designed to assess the relative contributions of genetic and environmental factors to the variation and covariation of quantitative ultrasound (QUS) measurements and their relationships to bone mineral density (BMD). Forty-nine monozygotic (MZ) and 44 dizygotic (DZ) female twins between 20 and 83 years of age (53 +/- 13 years, mean +/- SD) were studied. Digital (phalangeal) QUS (speed of sound [SOS]) and calcaneal QUS (broadband ultrasound attenuation [BUA] and velocity of sound [VOS]) were measured using a DBM Sonic 1200 ultrasound densitometer and a CUBA ultrasound densitometer, respectively. Femoral neck (FN), lumbar spine (LS), and total body (TB) BMD were measured using dual-energy X-ray absorptiometry. Familial resemblance and hence heritability (proportion of variance of a trait attributable to genetic factors) were assessed by analysis of variance, univariate, and multivariate model-fitting genetic analyses. In both QUS and BMD parameters, MZ twins were more alike than DZ pairs. Estimates of heritability for age- and weight-adjusted BUA, VOS, and SOS were 0.74, 0.55, and 0.82, respectively. Corresponding indices of heritability for LS, FN, and TB BMD were 0.79, 0.77, and 0.82, respectively. In cross-sectional analysis, both BUA and SOS, but not VOS, were independently associated with BMD measurements. However, analysis based on intrapair differences suggested that only BUA was related to BMD. Bivariate genetic analysis indicated that the genetic correlations between BUA and BMD ranged between 0.43 and 0.51 (p < 0.001), whereas the environmental correlations ranged between 0.20 and 0.28 (p < 0.01). While the genetic correlations within QUS and BMD measurements were significant, factor analysis indicates that common genes affect BMD at different sites. Also, individual QUS measurements appear to be influenced by some common sets of genes rather than by environmental factors. Significant environmental correlations were only found for BMD measurements and ranged between 0.50 and 0.65 (p < 0.001). These data suggest that QUS and BMD measurements are highly heritable traits. While it appears that there is a common set of genes influencing both QUS and BMD measurements, specific genes yet to be identified appear to have greater effects than that of shared genes in each trait.
机译:本研究旨在评估遗传和环境因素对定量超声(QUS)测量值的变化和协变的相对贡献及其与骨矿物质密度(BMD)的关系。研究对象为年龄在20至83岁(53 +/- 13岁,平均+/- SD)之间的49个单卵(MZ)和44个双卵(DZ)雌性双胞胎。分别使用DBM Sonic 1200超声密度计和CUBA超声密度计测量数字(指骨)QUS(声速[SOS])和跟骨QUS(宽带超声衰减[BUA]和声速[VOS])。使用双能X线吸收法测量股骨颈(FN),腰椎(LS)和全身(TB)BMD。通过方差分析,单变量和多模型拟合遗传分析来评估家族相似性和遗传性(因遗传因素引起的性状变异的比例)。在QUS和BMD参数上,MZ双胞胎比DZ对更相似。年龄和体重调整后的BUA,VOS和SOS的遗传力估计分别为0.74、0.55和0.82。 LS,FN和TB BMD的相应遗传力指数分别为0.79、0.77和0.82。在横断面分析中,BUA和SOS都与BMD测量独立相关,而VOS却没有。但是,基于对内差异的分析表明,只有BUA与BMD相关。双变量遗传分析表明,BUA和BMD之间的遗传相关性介于0.43和0.51之间(p <0.001),而环境相关性介于0.20和0.28之间(p <0.01)。虽然QUS和BMD测量值之间的遗传相关性很显着,但因子分析表明常见基因会影响不同部位的BMD。同样,单个QUS测量值似乎受一些常见基因集的影响,而不是受环境因素的影响。仅在BMD测量中发现显着的环境相关性,范围在0.50至0.65之间(p <0.001)。这些数据表明,QUS和BMD测量值是高度可遗传的特征。尽管似乎存在一组共同影响QUS和BMD测量的基因,但尚未鉴定的特定基因似乎比每个性状中的共享基因具有更大的影响。

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