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Role of Genetic Background in Determining Phenotypic Severity Throughout Postnatal Development and at Peak Bone Mass in Col1a2 Deficient Mice (oim)

机译:遗传背景在确定整个出生后发育中以及Col1a2缺陷小鼠的峰值骨量中的表型严重性的作用(oim)

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摘要

Osteogenesis imperfecta (OI) is a genetically and clinically heterogeneous disease characterized by extreme bone fragility. Although fracture numbers tend to decrease post-puberty, OI patients can exhibit significant variation in clinical outcome, even among related individuals harboring the same mutation. OI most frequently results from mutations in type I collagen genes, yet how genetic background impacts phenotypic outcome remains unclear. Therefore, we analyzed the phenotypic severity of a known proα2(I) collagen gene defect (oim) on two genetic backgrounds (congenic C57BL/6J and outbred B6C3Fe) throughout postnatal development to discern the phenotypic contributions of the Col1a2 locus relative to the contribution of the genetic background.To this end, femora and tibiae were isolated from wildtype (Wt) and homozygous (oim/oim) mice of each strain at 1, 2 and 4 months of age. Femoral geometry was determined via µCT prior to torsional loading to failure to assess bone structural and material biomechanical properties. Changes in mineral composition, collagen content and bone turnover were determined using neutron activation analyses, hydroxyproline content and serum pyridinoline crosslinks.µCT analysis demonstrated genotype-, strain- and age-associated changes in femoral geometry as well as a marked decrease in the amount of bone in oim/oim mice of both strains. Oim/oim mice of both strains, as well as C57BL/6J (B6) mice of all genotypes, had reduced femoral biomechanical strength properties compared to Wt at all ages, although they improved with age. Mineral levels of fluoride, magnesium and sodium were associated with biomechanical strength properties in both strains and all genotypes at all ages. Oim/oim animals also had reduced collagen content as compared to Wt at all ages. Serum pyridinoline crosslinks were highest at two months of age, regardless of strain or genotype.Strain differences in bone parameters exist throughout development, implicating a role for genetic background in determining biomechanical strength. Age-associated improvements indicate that oim/oim animals partially compensate for their weaker bone material, but never attain Wt levels. These studies indicate the importance of genetic background in determining phenotypic severity, but the presence of the proα2(I) collagen gene defect and age of the animal are the primary determinants of phenotypic severity.
机译:成骨不全症(OI)是遗传和临床异质性疾病,其特征是骨骼极度脆弱。尽管青春期后骨折的数量趋于减少,但OI患者甚至在具有相同突变的相关个体中,其临床结局也可能表现出显着差异。 OI最常见是由I型胶原基因突变引起的,但遗传背景如何影响表型结果尚不清楚。因此,我们分析了整个产后发育过程中两个遗传背景(同基因C57BL / 6J和远交B6C3Fe)上已知的proα2(I)胶原蛋白基因缺陷(oim)的表型严重性,以识别Col1a2基因座相对于为此,从1、2、4个月龄的每种菌株的野生型(Wt)和纯合(oim / oim)小鼠中分离出股骨和胫骨。扭转载荷之前,通过µCT确定股骨的几何形状,以评估骨结构和材料的生物力学性能。通过中子活化分析,羟脯氨酸含量和血清吡啶啉交联来确定矿物质组成,胶原蛋白含量和骨转换的变化。µCT分析表明,与基因型,品系和年龄相关的股骨形态变化以及股骨头的数量明显减少。两种品系的oim / oim小鼠的骨骼。与Wt相比,这两种菌株的Oim / oim小鼠以及所有基因型的C57BL / 6J(B6)小鼠在所有年龄段的股骨生物力学强度特性均下降,尽管它们随年龄增长而提高。在所有年龄段的菌株和所有基因型中,矿物质中的氟化物,镁和钠的含量均与生物力学强度特性相关。与所有年龄段的Wt相比,Oim / oim动物的胶原蛋白含量也降低了。血清吡啶吡啶啉交联在两个月大时最高,无论菌株或基因型如何。骨参数的菌株差异在整个发育过程中都存在,这暗示了遗传背景在确定生物力学强度中的作用。与年龄相关的改善表明oim / oim动物可以部分补偿其较弱的骨质,但从未达到Wt水平。这些研究表明遗传背景在确定表型严重性中的重要性,但是proα2(I)胶原基因缺陷的存在和动物的年龄是表型严重性的主要决定因素。

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