肿瘤负荷下小鼠股骨远端对膝关节负荷响应的有限元分析

International journal of orthopaedics (Hong Kong) Pub Date : 2018-01-01 Epub Date: 2018-02-28
Feifei Jiang, Shengzhi Liu, Andy Chen, Bai-Yan Li, Alexander G Robling, Jie Chen, Hiroki Yokota
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引用次数: 0

摘要

乳腺癌相关骨转移会导致骨质流失,继而增加骨折风险。要制定防止肿瘤生长和保护骨骼的策略,就必须了解肿瘤负荷下骨骼的力学特性。我们利用小鼠乳腺肿瘤模型,对两个股骨远端骨样本进行了有限元分析(FEA)。一个样本来自接受安慰剂治疗的小鼠,另一个样本来自接受候选药物 PD407824(一种检查点激酶抑制剂)治疗的小鼠。机械测试和显微CT图像显示,服用PD407824后,骨强度得到了改善。针对膝关节的加载,有限元分析预测,安慰剂治疗股骨的von Mises应力峰值(骨折屈服的指标)和第三主压应力峰值均高于药物治疗股骨。在膝关节完整性的关键区域--外侧髁,观察到了较高的骨小梁片段峰值应力。总之,这项有限元分析研究支持这样一种观点,即在肿瘤侵袭的骨小梁中观察到了股骨的机械性减弱,而 PD407824 等化学制剂可能有助于防止骨质流失和骨折。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Finite Element Analysis of the Mouse Distal Femur with Tumor Burden in Response to Knee Loading.

Finite Element Analysis of the Mouse Distal Femur with Tumor Burden in Response to Knee Loading.

Finite Element Analysis of the Mouse Distal Femur with Tumor Burden in Response to Knee Loading.

Finite Element Analysis of the Mouse Distal Femur with Tumor Burden in Response to Knee Loading.

Breast cancer-associated bone metastasis induces bone loss, followed by an increased risk of bone fracture. To develop a strategy for preventing tumor growth and protecting bone, an understanding of the mechanical properties of bone under tumor burden is indispensable. Using a mouse model of mammary tumor, we conducted finite element analysis (FEA) of two bone samples from the distal femur. One sample was from a placebo-treated mouse, and the other was from a mouse treated with the investigational drug candidate, PD407824, an inhibitor of checkpoint kinases. Mechanical testing and microCT images revealed that bone strength is improved by administration of PD407824. In response to loading to the knee, FEA predicted that the peaks of von Mises stress, an indicator of fracture yielding, as well as the third principal compressive stress, were higher in the placebo-treated femur than the drug-treated femur. Higher peak stresses in trabecular segments were observed in the lateral condyle, a critical region for integrity of the knee joint. Collectively, this FE study supports the notion that mechanical weakening of the femur was observed in the tumor-invaded trabecular bone, and chemical agents such as PD407824 may potentially assist in preventing bone loss and bone fracture.

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