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首页> 外文期刊>Bone >Ratio between mature and immature enzymatic cross-links correlates with post-yield cortical bone behavior: An insight into greenstick fractures of the child fibula
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Ratio between mature and immature enzymatic cross-links correlates with post-yield cortical bone behavior: An insight into greenstick fractures of the child fibula

机译:成熟和未成熟的酶交联之间的比例与屈服后的皮质骨行为有关:洞察儿童腓骨的青茎骨折

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As a determinant of skeletal fragility, the organic matrix is responsible for the post-yield and creep behavior of bone and for its toughness, while the mineral apatite acts on stiffness. Specific to the fibula and ulna in children, greenstick fractures show a plastic in vivo mechanical behavior before bone fracture. During growth, the immature form of collagen enzymatic cross-links gradually decreases, to be replaced by the mature form until adolescence, subsequently remaining constant throughout adult life. However, the link between the cortical bone organic matrix and greenstick fractures in children remains to be explored. Here, we sought to determine: 1) whether plastic bending fractures can occur in vitro, by testing cortical bone samples from children's fibula and 2) whether the post-yield behavior (cog plastic energy) of cortical bone before fracture is related to total quantity of the collagen matrix, or to the quantity of mature and immature enzymatic cross-links and the quantity of non-enzymatic cross-links. We used a two-step approach; first, a 3-point microbending device tested 22 fibula machined bone samples from 7 children and 3 elderly adults until fracture. Second, biochemical analysis by HPLC was performed on the sample fragments. When pooling two groups of donors, children and elderly adults, results show a rank correlation between total energy dissipated before fracture and age and a linear correlation between plastic energy dissipated before fracture and ratio of immature/mature cross-links. A collagen matrix with more immature cross-links (i.e. a higher immature/mature cross-link ratio) is more likely to plastically deform before fracture. We conclude that this ratio in the sub-nanostructure of the organic matrix in cortical bone from the fibula may go some way towards explaining the variance in post-yield behavior. From a clinical point of view, therefore, our results provide a potential explanation of the presence of greenstick fractures in children. (C) 2015 Published by Elsevier Inc.
机译:作为骨骼脆性的决定因素,有机基质负责骨骼的屈服和蠕变行为及其韧性,而磷灰石矿物则负责骨骼的刚度。特定于儿童的腓骨和尺骨,greenstick骨折在骨折前表现出可塑性的体内机械行为。在生长过程中,胶原酶交联的不成熟形式逐渐减少,被成熟形式取代直到青春期,随后在成年后一直保持不变。然而,儿童皮质骨有机质基质与greenstick骨折之间的联系仍有待探索。在这里,我们试图确定:1)通过测试儿童腓骨的皮质骨样品是否可以在体外发生塑性弯曲骨折,以及2)骨折前皮质骨的屈服后行为(齿轮塑性能)是否与总量有关胶原基质的数量,或者成熟和未成熟的酶促交联的数量以及非酶促交联的数量。我们采用了两步法。首先,三点微弯曲装置测试了7名儿童和3名老年人的22根腓骨加工的骨样品,直到骨折。其次,通过HPLC对样品片段进行生化分析。当汇集两组供体(儿童和老年人)时,结果显示骨折前消散的总能量与年龄之间存在等级相关性,骨折前消散的可塑性能量与未成熟/成熟交联之比之间呈线性相关。具有更多未成熟交联(即,更高的未成熟/成熟交联比)的胶原蛋白基质在断裂之前更可能塑性变形。我们得出的结论是,来自腓骨的皮质骨中有机基质的亚纳米结构中的该比例可能有助于解释屈服后行为的差异。因此,从临床的角度来看,我们的结果提供了儿童小腿骨折的潜在解释。 (C)2015年由Elsevier Inc.出版

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