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首页> 外文期刊>Journal of human genetics >Association study of semaphorin 7a (sema7a) polymorphisms with bone mineral density and fracture risk in postmenopausal Korean women.
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Association study of semaphorin 7a (sema7a) polymorphisms with bone mineral density and fracture risk in postmenopausal Korean women.

机译:朝鲜绝经后妇女的信号量7a(sema7a)多态性与骨矿物质密度和骨折风险的关联研究。

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摘要

Bone mineral density (BMD), the major factor determining bone strength, is closely related to osteoporotic fracture risk and is determined largely by multiple genetic factors. Semaphorin 7a (SEMA7A), a recently described member of the semaphorin family, has been shown to play a critical role in the activation of monocyte/macrophages that share progenitors with bone-resorbing osteoclasts and thus might contribute to osteoclast development. In the present study, we directly sequenced the SEMA7A gene in 24 Korean individuals, and identified 15 sequence variants. Five polymorphisms (+15667G > A, +15775C > G, +16285C > T, +19317C > T, +22331A > G) were selected and genotyped in postmenopausal Korean women (n = 560) together with measurement of the areal BMD (g/cm2) of the anterior-posterior lumbar spine and the non-dominant proximal femur using dual-energy X-ray absorptiometry. We found that polymorphisms of the SEMA7A gene were associated with the BMD of the lumbar spine and femoral neck. SEMA7A + 15775C >G and SEMA7A+22331A > G were associated with low BMD of the femoral neck (P = 0.02) and lumbar spine (P = 0.04) in a recessive model. SEMA7A-ht4 also showed an association with risk of vertebral fracture (OR = 1.87-1.93, P = 0.02-0.03). Our results suggest that variations in SEMA7A may play a role in decreased BMD and risk of vertebral fracture.
机译:决定骨骼强度的主要因素骨矿物质密度(BMD)与骨质疏松性骨折的风险密切相关,并且很大程度上由多种遗传因素决定。 Semaphorin 7a(SEMA7A)是最近描述的Semaphorin家族成员,已显示在与骨吸收破骨细胞共享祖细胞的单核细胞/巨噬细胞的活化中起关键作用,因此可能有助于破骨细胞的发育。在本研究中,我们直接在24个韩国人中对SEMA7A基因进行了测序,并鉴定了15个序列变体。选择了5个多态性(+ 15667G> A,+ 15775C> G,+ 16285C> T,+ 19317C> T,+ 22331A> G)并在绝经后的韩国女性(n = 560)中进行基因分型,并测量了BMD(g / cm2),使用双能X线吸收法测量前后腰椎和非优势股骨。我们发现,SEMA7A基因的多态性与腰椎和股骨颈的骨密度有关。在隐性模型中,SEMA7A + 15775C> G和SEMA7A + 22331A> G与股骨颈低BMD(P = 0.02)和腰椎BMD(P = 0.04)相关。 SEMA7A-ht4还显示出与椎体骨折的风险相关(OR = 1.87-1.93,P = 0.02-0.03)。我们的结果表明,SEMA7A的变异可能在降低BMD和椎骨骨折的风险中起作用。

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