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首页> 外文期刊>International Orthopaedics >Proximal fibular osteotomy alleviates medial compartment knee osteoarthritis in a mouse model
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Proximal fibular osteotomy alleviates medial compartment knee osteoarthritis in a mouse model

机译:近端腓骨骨质术减轻了小鼠模型中的内侧室膝关节骨关节炎

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Purpose The purpose of this study was to establish a mouse model of proximal fibular osteotomy (PFO), and to determine if PFO could delay degeneration of the medial compartment of the knee joint in a mouse model. Methods An animal model of destabilization of the medial meniscus (DMM) was used to induce post-traumatic knee osteoarthritis (OA). PFO was performed to examine the effectiveness of PFO on protection against medial compartment knee OA. Micro-CT was used to observe osteosclerosis development in the subchondral bone, and Safranin O-fast green staining was used to evaluate the progression of articular cartilage destruction. The condylar-plateau angle (CPA) and anatomical femorotibial angle (aFTA) were measured to determine whether knee alignment was changed after PFO. Results PFO treatment could decrease osteophyte formation and osteosclerosis development in the subchondral bone, as observed by micro-CT. The value of the ratio of trabecular bone volume to total volume (BV/TV) of DMM+PFO group was lower than that of DMM group. PFO also inhibited the progression of articular cartilage destruction. DMM + PFO group displayed decreased maximal and summed OA scores, as compared with DMM group. Moreover, the change of knee alignment was reduced by PFO, which might be the mechanism of PFO alleviating medial compartment knee OA. Conclusion Our results indicated that PFO could alleviate medial compartment knee OA in a mouse model.
机译:目的本研究的目的是建立近端腓骨骨质切开术(PFO)的小鼠模型,并确定PFO是否可以在小鼠模型中延迟膝关节内侧舱的退化。方法使用内侧弯月面(DMM)的稳定稳定化动物模型诱导创伤后膝关节骨关节炎(OA)。进行PFO以检验PFO对内侧膝关节膝盖OA保护的有效性。 Micro-CT用于观察骨髓内骨的骨静脉发育,并且使用Safranin O-Fast绿色染色来评估关节软骨破坏的进展。测量髁突 - 平台角度(CPA)和解剖学雌性角度(AFTA)以确定PFO后是否改变了膝关节对准。结果PFO治疗可降低骨髓内骨中骨赘的形成和骨静脉粥样硬化发育,如微型CT所观察到的。 DMM + PFO组的小梁骨体积与总体积(BV / TV)的比例低于DMM组的比率。 PFO还抑制关节软骨破坏的进展。与DMM组相比,DMM + PFO组显示最大和总结OA分数。此外,PFO减少了膝关节对准的变化,这可能是PFO缓解内侧隔室膝盖OA的机制。结论我们的结果表明,PFO可以缓解小鼠模型中的内侧舱膝关节OA。

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