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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Generation of a new congenic mouse strain to test the relationships among serum insulin-like growth factor I, bone mineral density, and skeletal morphology in vivo.
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Generation of a new congenic mouse strain to test the relationships among serum insulin-like growth factor I, bone mineral density, and skeletal morphology in vivo.

机译:一种新的同基因小鼠品系的生成,以测试体内血清胰岛素样生长因子I,骨矿物质密度和骨骼形态之间的关系。

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摘要

Insulin-like growth factor (IGF) I is a critical peptide for skeletal growth and consolidation. However, its regulation is complex and, in part, heritable. We previously indicated that changes in both serum and skeletal IGF-I were related to strain-specific differences in total femoral bone mineral density (BMD) in mice. In addition, we defined four quantitative trait loci (QTLs) that contribute to the heritable determinants of the serum IGF-I phenotype in F2 mice derived from progenitor crosses between C3H/HeJ (C3H; high total femoral BMD and high IGF-I) and C57BL/6J (B6; low total femoral BMD and low IGF-I) strains. The strongest QTL, IGF-I serum level 1 (Igflsl-1; log10 of the odds ratio [LOD] score, approximately 9.0), is located on the middle portion of chromosome (Chr) 6. For this locus, C3H alleles are associated with a significant reduction in serum IGF-I. To test the effect of this QTL in vivo, we generated a new congenic strain (B6.C3H-6T [6T]) by placing the Chr 6 QTL region (D6Mit93 to D6Mit150) from C3H onto the B6 background. We then compared serum and skeletal IGF-I levels, body weight, and several skeletal phenotypes from the N9 generation of 6T congenic mice against B6 control mice. Female 6T congenic mice had 11-21% lower serum IGF-I levels at 6, 8, and 16 weeks of age compared with B6 (p < 0.05 for all). In males, serum IGF-I levels were similar in 6T congenics and B6 controls at 6 weeks and 8 weeks but were lower in 6T congenic mice at 16 weeks (p < 0.02). In vitro, there was a 40% reduction in secreted IGF-I in the conditioned media (CMs) from 6T calvaria osteoblasts compared with B6 cells (p < 0.01). Total femoral BMD as measured by peripheral quantitative computed tomography (pQCT) was lower in both 6T male (-4.8%, p < 0.01) and 6T female (-2.3%, p = 0.06) congenic mice. Geometric features of middiaphyseal cortical bone were reduced in 6T congenic mice compared with control mice. Femoral cancellous bone volume (BV) density and trabecular number (Tb.N) were 50% lower, whereas trabecular separation (Tb.Sp) was 90% higher in 8-week-old female 6T congenic mice compared with B6 control mice (p < 0.01 for all). Similarly, vertebral cancellous BV density and Tb.N were lower (-29% and -19%, respectively), whereas Tb.Sp was higher (+29%) in 16-week-old female 6T congenic mice compared with B6 control mice (p < 0.001 for all). Histomorphometric evaluation of the proximal tibia indicated that 6T congenics had reduced BV fraction, labeled surface, and bone formation rates compared with B6 congenic mice. In summary, we have developed a new congenic mouse strain that confirms the Chr 6 QTL as a major genetic regulatory determinant for serum IGF-I. This locus also influences bone density and morphology, with more dramatic effects in cancellous bone than in cortical bone.
机译:胰岛素样生长因子(IGF)I是骨骼生长和巩固的关键肽。但是,它的调节是复杂的,并且是部分可遗传的。我们先前指出,血清和骨骼肌IGF-1的变化与小鼠总股骨矿物质密度(BMD)的菌株特异性差异有关。此外,我们定义了四个定量性状位点(QTL),它们有助于从C3H / HeJ(C3H;高总股骨BM​​D和高IGF-I)之间的祖先杂交衍生而来的F2小鼠血清IGF-I表型的遗传决定因素。 C57BL / 6J(B6;低总股骨BM​​D和低IGF-1)菌株。最强的QTL,IGF-I血清水平1(Igflsl-1;比值比[LOD]得分的log10,大约9.0)位于6号染色体的中间部分。C3H等位基因与该基因座相关血清IGF-I明显降低。为了测试该QTL在体内的作用,我们通过将C3H的Chr 6 QTL区域(D6Mit93至D6Mit150)放置到B6背景上,生成了一个新的同系菌株(B6.C3H-6T [6T])。然后,我们比较了来自6T同基因小鼠N9代的B9对照小鼠的血清和骨骼IGF-I水平,体重和几种骨骼表型。与B6相比,雌性6T同基因小鼠在6、8和16周龄时的血清IGF-I水平降低了11-21%(全部p <0.05)。在雄性中,6T同基因和B6对照在6周和8周时的血清IGF-I水平相似,但在16T同基因小鼠中在16周时则较低(p <0.02)。在体外,与B6细胞相比,来自6T颅盖骨成骨细胞的条件培养基(CM)中分泌的IGF-I降低了40%(p <0.01)。通过外周定量计算机断层扫描(pQCT)测量的总股骨BM​​D在6T雄性(-4.8%,p <0.01)和6T雌性(-2.3%,p = 0.06)同基因小鼠中均较低。与对照小鼠相比,6T同基因小鼠的中dia骨皮质骨的几何特征降低。与B6对照小鼠相比,8周龄雌性6T同基因小鼠的股骨松质骨体积(BV)密度和小梁数目(Tb.N)低50%,而小梁分离度(Tb.Sp)高90%(p <0.01)。同样,与B6对照小鼠相比,在16周龄雌性6T同基因小鼠中,椎体松质BV密度和Tb.N较低(分别为-29%和-19%),而Tb.Sp较高(+ 29%)。 (所有p均<0.001)。对胫骨近端的组织形态计量学评估表明,与B6同基因小鼠相比,6T同基因动物的BV分数,标记的表面和骨形成速率降低。总而言之,我们开发了一种新的同基因小鼠品系,证实了Chr 6 QTL是血清IGF-I的主要遗传调控决定子。该基因座还影响骨密度和形态,对松质骨的影响比对皮质骨的影响更大。

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