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Influence of age and mechanical stability on bone defect healing: age reverses mechanical effects.

机译:年龄和机械稳定性对骨缺损愈合的影响:年龄会逆转机械效应。

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Non-unions and delayed healing are still prevalent complications in fracture and bone defect healing. Both mechanical stability and age are known to influence this process. However, it remains unclear which factor dominates and how they interact. Within this study, we sought a link between both factors. In 36 female Sprague-Dawley rats, the left femur was osteotomized, distracted to an osteotomy gap of 1.5 mm and externally fixated. Variation of age (12 vs. 52 weeks - biologically challenging) and fixator stiffness (mechanically challenging) resulted in 4 groups (each 9 animals): YS: young semi-rigid, OS: old semi-rigid, YR: young rigid and OR: old rigid. Qualitative and quantitative radiographical analyses were performed at weeks 2, 4 and 6 after surgery. Six weeks post-op, rats were sacrificed and femora were harvested for biomechanical testing (torsional stiffness (TS) and maximum torque at failure (MTF)). Six weeks after surgery, TS showed a significant interaction between age and fixation stiffness (p<0.0001). TS in YR was significantly higher than that in the other groups (YS: p<0.001; OR: p<0.001; OS: p<0.001). Additionally, YS showed a significantly higher TS compared to the OS (p=0.006) and OR (p=0.046). Testing of MTF showed a significant interaction of both variables (p=0.0002) and led to significant differences between OR and YS (p<0.001), OS (p=0.046) and YR (p<0.001). The YR showed a higher MTF compared to YS (p=0.012) and OS (p=0.001), whereas OR's MTF was inferior compared to OS. At 2-week follow-up, YR (p=0.006), and at 6-week follow-up, YS and YR (p=0.032) showed significantly higher radiographic scores. At 2-week follow-up, YS's callus was larger than that of the old groups (OS: p=0.025; OR: p=0.003). In YR a significantly smaller callus was observed compared to YS at time points 4 and 6 weeks (p=0.002 for both) and compared to OS at 6-week follow-up (p=0.03). The effect of age seems to invert the effect of mechanical properties of the callus, which was not correlated to callus size. Optimization of mechanics alone seems to be not sufficient. The underlying mechanisms and causes of the age-related influences and their clinical counterparts need to be further investigated.
机译:不愈合和延迟愈合仍然是骨折和骨缺损愈合中的普遍并发症。已知机械稳定性和年龄都会影响该过程。但是,尚不清楚哪个因素起主导作用,以及它们如何相互作用。在这项研究中,我们寻求两个因素之间的联系。在36只Sprague-Dawley雌性大鼠中,将左股骨切骨,分散至1.5 mm的切骨间隙并进行外固定。年龄的变化(12周对52周-具有生物学挑战性)和固定器刚度(力学挑战性)导致4组(每组9只动物):YS:年轻半刚性,OS:老半刚性,YR:年轻刚性和OR :老呆板。在手术后第2、4和6周进行定性和定量射线照相分析。手术后六周,处死大鼠并收集股骨用于生物力学测试(扭转刚度(TS)和最大破坏扭矩(MTF))。手术后六周,TS显示年龄与固定硬度之间存在显着的相互作用(p <0.0001)。 YR中的TS显着高于其他组(YS:p <0.001; OR:p <0.001; OS:p <0.001)。此外,与OS(p = 0.006)和OR(p = 0.046)相比,YS显示出显着更高的TS。 MTF的测试显示两个变量之间存在显着的交互作用(p = 0.0002),并导致OR和YS(p <0.001),OS(p = 0.046)和YR(p <0.001)之间存在显着差异。与YS(p = 0.012)和OS(p = 0.001)相比,YR显示更高的MTF,而与OS相比,OR的MTF较差。在2周的随访中,YR(p = 0.006),在6周的随访中,YS和YR(p = 0.032)表现出显着更高的影像学评分。在2周的随访中,YS的愈伤组织大于旧组(OS:p = 0.025; OR:p = 0.003)。在YR中,与YS在第4周和第6周的时间相比,观察到的愈伤组织明显较小(两者均为p = 0.002),在第6周的随访中与OS比较(p = 0.03)。年龄的影响似乎颠倒了愈伤组织的机械性能的影响,而后者与愈伤组织的大小无关。仅靠机械优化似乎还不够。与年龄有关的影响及其临床对应因素的潜在机制和原因有待进一步研究。

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