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Closed head experimental traumatic brain injury increases size and bone volume of callus in mice with concomitant tibial fracture

机译:闭合性头部实验性颅脑外伤增加了伴有胫骨骨折的小鼠骨call的大小和骨量

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摘要

Concomitant traumatic brain injury (TBI) and long bone fracture are commonly observed in multitrauma and polytrauma. Despite clinical observations of enhanced bone healing in patients with TBI, the relationship between TBI and fracture healing remains poorly understood, with clinical data limited by the presence of several confounding variables. Here we developed a novel trauma model featuring closed-skull weight-drop TBI and concomitant tibial fracture in order to investigate the effect of TBI on fracture healing. Male mice were assigned into Fracture + Sham TBI (FX) or Fracture + TBI (MULTI) groups and sacrificed at 21 and 35 days post-injury for analysis of healing fractures by micro computed tomography (μCT) and histomorphometry. μCT analysis revealed calluses from MULTI mice had a greater bone and total tissue volume, and displayed higher mean polar moment of inertia when compared to calluses from FX mice at 21 days post-injury. Histomorphometric results demonstrated an increased amount of trabecular bone in MULTI calluses at 21 days post-injury. These findings indicate that closed head TBI results in calluses that are larger in size and have an increased bone volume, which is consistent with the notion that TBI induces the formation of a more robust callus.
机译:多发伤和多发伤常伴有颅脑外伤(TBI)和长骨骨折。尽管在临床上观察到TBI患者的骨愈合得到了增强,但是TBI与骨折愈合之间的关系仍然知之甚少,临床数据受到多个混淆变量的限制。在这里,我们开发了一种新型的创伤模型,以闭合颅骨重量减轻的TBI和伴发性胫骨骨折为特征,以研究TBI对骨折愈合的影响。将雄性小鼠分为骨折+假手术TBI(FX)或骨折+ TBI(MULTI)组,并在损伤后21和35天处死,以通过显微计算机断层摄影术(μCT)和组织形态学分析愈合的骨折。 μCT分析显示,与受伤后21天的FX小鼠的老茧相比,MULTI小鼠的老茧具有更大的骨骼和总组织体积,并且显示出更高的平均极地惯性矩。组织形态计量学结果表明,损伤后21天MULTI愈伤组织中的小梁骨数量增加。这些发现表明,封闭的头部TBI导致愈伤组织的尺寸更大并且具有增加的骨体积,这与TBI诱导更健壮的愈伤组织形成的观点一致。

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