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Cellular Mechanism of Decreased Bone in Brtl Mouse Model of OI: Imbalance of Decreased Osteoblast Function and Increased Osteoclasts and Their Precursors

机译:Otl Brtl小鼠模型中骨减少的细胞机制:成骨细胞功能下降和破骨细胞及其前体含量增加的失衡

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摘要

The Brtl mouse, a knock-in model for moderately severe osteogenesis imperfecta (OI), has a G349C substitution in half of type I collagen α1(I) chains. We studied the cellular contribution to Brtl bone properties. Brtl cortical and trabecular bone are reduced before and after puberty, with BV/TV decreased 40–45%. Brtl ObS/BS is comparable to wildtype, and Brtl and wildtype marrow generate equivalent number of colony-forming units (CFUs) at both ages. However, OcS/BS is increased in Brtl at both ages (36–45%), as are TRACP+ cell numbers (57–47%). After puberty, Brtl ObS/BS decreases comparably to wildtype mice, but osteoblast matrix production (MAR) decreases to one half of wildtype values. In contrast, Brtl OcS falls only moderately (∼16%), and Brtl TRACP staining remains significantly elevated compared with wildtype. Consequently, Brtl BFR decreases from normal at 2 mo to one half of wildtype values at 6 mo. Immunohistochemistry and real-time RT-PCR show increased RANK, RANKL, and osteoprotegerin (OPG) levels in Brtl, although a normal RANKL/OPG ratio is maintained. TRACP+ precursors are markedly elevated in Brtl marrow cultures and form more osteoclasts, suggesting that osteoclast increases arise from more RANK-expressing precursors. We conclude that osteoblasts and osteoclasts are unsynchronized in Brtl bone. This cellular imbalance results in declining BFR as Brtl ages, consistent with reduced femoral geometry. The disparity in cellular number and function results from poorly functioning osteoblasts in addition to increased RANK-expressing precursors that respond to normal RANKL/OPG ratios to generate more bone-resorbing osteoclasts. Interruption of the stimulus that increases osteoclast precursors may lead to novel OI therapies.
机译:Brtl小鼠是中度严重成骨不全症(OI)的敲入模型,在一半的I型胶原α1(I)链中具有G349C取代。我们研究了细胞对Brtl骨特性的贡献。青春期前后,Brtl皮质和小梁骨减少,BV / TV减少40–45%。 Brtl ObS / BS与野生型相当,并且Brtl和野生型骨髓在两个年龄时均产生相同数量的菌落形成单位(CFU)。但是,两个年龄段的Brtl中OcS / BS均升高(36-45%),TRACP +细胞数也升高(57-47%)。青春期后,Brtl ObS / BS与野生型小鼠相比减少,但是成骨细胞基质产量(MAR)减少到野生型值的一半。相反,Brtl OcS仅适度下降(约16%),与野生型相比,Brtl TRACP染色仍显着升高。因此,Brtl BFR从2 mo时的正常值降至6 mo时野生型值的一半。免疫组织化学和实时RT-PCR显示,Brtl中的RANK,RANKL和骨保护素(OPG)水平升高,尽管可以维持正常的RANKL / OPG比。 TRACP +前体在Brtl骨髓培养物中显着升高,并形成更多的破骨细胞,这表明破骨细胞增加是由于更多的RANK表达前体引起的。我们得出的结论是,Brtl骨中成骨细胞和破骨细胞不同步。随着Brtl年龄的增长,这种细胞失衡导致BFR下降,这与股骨几何形状的减少相一致。细胞数量和功能的差异是由功能不良的成骨细胞造成的,此外还有表达RANK的前体增加,这些前体对正常的RANKL / OPG比值有反应,从而产生更多的骨吸收性破骨细胞。中断增加破骨细胞前体的刺激可能会导致新的OI治疗。

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