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冷冻对人胫后肌腱生物力学和结构特性的影响。

Effects of freezing on the biomechanical and structural properties of human posterior tibial tendons.

作者信息

Giannini Sandro, Buda Roberto, Di Caprio Francesco, Agati Patrizia, Bigi Adriana, De Pasquale Viviana, Ruggeri Alessandro

机构信息

Rizzoli Orthopaedic Institute-Orthopaedic Clinic, University of Bologna, Bologna, Italy.

出版信息

Int Orthop. 2008 Apr;32(2):145-51. doi: 10.1007/s00264-006-0297-2. Epub 2007 Jan 10.

Abstract

This work analyzes the effects of storage by fresh-freezing at -80 degrees C on the histological, structural and biomechanical properties of the human posterior tibial tendon (PTT), used for ACL reconstruction. Twenty-two PTTs were harvested from eleven donors. For each donor one tendon was frozen at -80 degrees C and thawed in physiological solution at 37 degrees C, and the other was tested without freezing (control). Transmission electron microscopy (TEM), differential scanning calorimetry (DSC) and biomechanical analysis were performed. We found the following mean changes in frozen-thawed tendons compared to controls: TEM showed an increase in the mean diameter of collagen fibrils and in fibril non-occupation mean ratio, while the mean number of fibrils decreased; DSC showed a decrease in mean denaturation temperature and denaturation enthalpy. Biomechanical analysis showed a decrease in ultimate load and ultimate stress, an increase in stiffness and a decrease in ultimate strain of tendons. In conclusion fresh-freezing brings about significant changes in the biomechanical and structural properties of the human PTT. A high variability exists in the biophysical properties of tendons among individuals and in the effects of storage on tendons. Therefore, when choosing an allograft tendon, particular care is needed to choose a biomechanically suitable graft.

摘要

本研究分析了用于前交叉韧带重建的人胫骨后肌腱(PTT)在-80℃新鲜冷冻保存对其组织学、结构和生物力学特性的影响。从11名供体获取了22条PTT。对于每名供体,一条肌腱在-80℃冷冻并在37℃生理溶液中解冻,另一条不冷冻直接进行测试(对照)。进行了透射电子显微镜(TEM)、差示扫描量热法(DSC)和生物力学分析。与对照相比,我们发现冻融肌腱有以下平均变化:TEM显示胶原纤维平均直径增加、纤维非占据平均比率增加,而纤维平均数量减少;DSC显示平均变性温度和变性焓降低。生物力学分析显示肌腱的极限负荷和极限应力降低、刚度增加以及极限应变降低。总之,新鲜冷冻导致人PTT的生物力学和结构特性发生显著变化。个体之间肌腱的生物物理特性以及保存对肌腱的影响存在很大差异。因此,在选择同种异体移植肌腱时,需要特别小心选择生物力学上合适的移植物。

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