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老年女性的肌肉横截面积和骨骼结构强度存在共同的遗传和环境影响因素。

Muscle cross-sectional area and structural bone strength share genetic and environmental effects in older women.

作者信息

Mikkola Tuija M, Sipilä Sarianna, Rantanen Taina, Sievänen Harri, Suominen Harri, Tiainen Kristina, Kaprio Jaakko, Koskenvuo Markku, Kauppinen Markku, Heinonen Ari

机构信息

Department of Health Sciences, University of Jyväskylä, Jyväskylä, Finland.

出版信息

J Bone Miner Res. 2009 Feb;24(2):338-45. doi: 10.1359/jbmr.081008.

Abstract

The purpose of this study was to estimate to what extent muscle cross-sectional area of the lower leg (mCSA) and tibial structural strength are influenced by common and trait-specific genetic and environmental factors. pQCT scans were obtained from both members of 102 monozygotic (MZ) and 113 dizygotic (DZ) 63- to 76-yr-old female twin pairs to estimate the mCSA of the lower leg, structural bending strength of the tibial shaft (BSIbend), and compressive strength of the distal tibia (BSIcomp). Quantitative genetic models were used to decompose the phenotypic variances into common and trait-specific additive genetic (A), shared environmental (C), and individual environmental (E) effects. The age-adjusted trivariate independent pathway model showed that the total relative contributions of A, C, and E were, respectively, 75%, 0%, and 25% for mCSA, 55%, 20%, and 25% for BSIbend, and 40%, 37%, and 23% for BSIcomp. In addition, the model showed that all three traits shared genetic and individual environmental factors. BSIbend and BSIcomp had common shared environmental factors and were also influenced by trait-specific genetic factors. In conclusion, the association between muscle cross-sectional area and structural bone strength has its origins in both genetic and environmental effects in older women. These results suggest that in older women the same genetic and environmental factors may predispose to or, conversely, protect from both sarcopenia and bone fragility.

摘要

本研究的目的是评估小腿肌肉横截面积(mCSA)和胫骨结构强度在多大程度上受到常见和特定性状的遗传及环境因素影响。对102对63至76岁的单卵(MZ)双胞胎和113对双卵(DZ)双胞胎中的女性进行pQCT扫描,以评估小腿的mCSA、胫骨干的结构弯曲强度(BSIbend)和胫骨远端的抗压强度(BSIcomp)。采用定量遗传模型将表型方差分解为常见和特定性状的加性遗传(A)、共享环境(C)和个体环境(E)效应。年龄调整后的三变量独立路径模型显示,对于mCSA,A、C和E的总相对贡献分别为75%、0%和25%;对于BSIbend,分别为55%、20%和25%;对于BSIcomp,分别为40%、37%和23%。此外,该模型显示,所有三个性状都共享遗传和个体环境因素。BSIbend和BSIcomp有共同的共享环境因素,也受到特定性状遗传因素的影响。总之,老年女性肌肉横截面积与骨结构强度之间的关联源于遗传和环境效应。这些结果表明,在老年女性中,相同的遗传和环境因素可能导致肌肉减少症和骨脆性,反之也可能起到保护作用。

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