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Comparative Biomechanical and Microstructural Analysis of Native versus Peracetic Acid-Ethanol Treated Cancellous Bone Graft

机译:天然与过乙酸-乙醇处理的松质骨移植物的比较生物力学和微观结构分析

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摘要

Bone transplantation is frequently used for the treatment of large osseous defects. The availability of autologous bone grafts as the current biological gold standard is limited and there is a risk of donor site morbidity. Allogenic bone grafts are an appealing alternative, but disinfection should be considered to reduce transmission of infection disorders. Peracetic acid-ethanol (PE) treatment has been proven reliable and effective for disinfection of human bone allografts. The purpose of this study was to evaluate the effects of PE treatment on the biomechanical properties and microstructure of cancellous bone grafts (CBG). Forty-eight human CBG cylinders were either treated by PE or frozen at −20°C and subjected to compression testing and histological and scanning electron microscopy (SEM) analysis. The levels of compressive strength, stiffness (Young's modulus), and fracture energy were significantly decreased upon PE treatment by 54%, 59%, and 36%, respectively. Furthermore, PE-treated CBG demonstrated a 42% increase in ultimate strain. SEM revealed a modified microstructure of CBG with an exposed collagen fiber network after PE treatment. We conclude that the observed reduced compressive strength and reduced stiffness may be beneficial during tissue remodeling thereby explaining the excellent clinical performance of PE-treated CBG.
机译:骨移植常用于治疗大骨缺损。自体骨移植物作为当前生物学金标准的可用性是有限的,并且存在供体部位发病的风险。同种异体骨移植物是一种有吸引力的选择,但应考虑消毒以减少感染疾病的传播。已证明过氧乙酸-乙醇(PE)处理对同种异体骨的消毒是可靠且有效的。这项研究的目的是评估PE处理对松质骨移植物(CBG)的生物力学性能和微观结构的影响。对48个人体CBG圆柱体进行了PE处理或在-20°C下冷冻,并进行了压缩测试以及组织学和扫描电子显微镜(SEM)分析。 PE处理后,抗压强度,刚度(杨氏模量)和断裂能分别显着降低了54%,59%和36%。此外,PE处理的CBG的最终应变提高了42%。 SEM显示PE处理后,CBG的微观结构发生了改变,胶原纤维网络暴露在外。我们得出的结论是,观察到的降低的抗压强度和降低的刚度在组织重塑期间可能是有益的,从而解释了PE治疗的CBG的出色临床表现。

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