首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >BIOMECHANICAL EFFECTS OF KAEMPFEROL TREATMENTS ON THE BONE HEALING PROCESS OF MURINE TIBIA
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BIOMECHANICAL EFFECTS OF KAEMPFEROL TREATMENTS ON THE BONE HEALING PROCESS OF MURINE TIBIA

机译:Kaempferol治疗对鼠胫骨骨愈合过程的生物力学作用

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Kaempferol is a typical flavonol-type flavonoid and has a protective effect on postmenopausal bone loss, and previous studies have reported that kaempferol treated groups show an increase in the callus size and bone mineral density as well as improvement in biomechanical behaviors in comparison with untreated control groups in the bone healing process. The present study aims at investigating the effect of kaempferol treatments on fractured murine tibia, by measuring kaempferol dose-dependent mechanical properties in the bone healing process of murine tibia fracture models. A stabilized fracture was generated at tibia by minor modification of the Hiltunen method for 8 weeks old ICR mice weighting 29.0 ~ 30.5 g. Experimental mice were divided into 4 groups. Kaempferol of 0.2, 1.0, 5.0 mg/kg (body weight) with 20% ethanol was administered to 3 groups and the remaining one group was only treated with 20% ethanol as a control group. Three-point bending fracture tests were conducted to measure the mechanical properties (fracture load, fracture energy, stiffness) of murine tibiae at non-fractured regions near fracture sites 21 days after kaempferol treatments, via a custom-made biomechanical testing system (BTS, KST Co., Korea). The 5.0 mg/kg kaempferol treated group shows higher fracture load (20.54 ±5.04 N) than the control group (17.82 ±5.94 N). Fracture energy, total energy applied to tibia up to bone fracture, exhibited no significant differences between the control group and any of the kampferol treated groups, although both the 1.0 mg/kg kaempferol treated and control groups showed a little higher fracture energy than the 0.2 and 5.0 mg/kg kaempferol treated groups. Bone stiffness also did not show statistically significant differences between the control group and any of the kaempferol treated groups, with the highest stiffness value observed in the 1.0 mg/kg kaempferol treated group.
机译:Kaempferol是一种典型的黄酮类黄酮类黄酮,对绝经后骨质损失具有保护作用,并且之前的研究报告称Kaempferol治疗组显示出愈伤组织大小和骨矿物质密度的增加以及与未处理的对照相比的生物力学行为的提高骨愈合过程中的群体。本研究的目的是调查对压裂鼠胫骨的山奈酚治疗的效果,通过在小鼠胫骨骨折模型的骨愈合过程测量山奈酚剂量依赖性的机械性能。在胫骨中产生稳定的骨折,通过较小的HILTUNEN方法进行8周龄ICR小鼠加权29.0〜30.5g。实验小鼠分为4组。施用0.2,1.0,5.0mg / kg(体重)的Kaempferol施用20%乙醇至3组,其余的一组仅用20%乙醇作为对照组处理。进行三点弯曲断裂试验,以通过定制的生物力学检测系统(BTS,)测量在Kaempferolog治疗后21天的非骨折区域在骨折部位附近的非骨折区域的机械性能(断裂载荷,断裂能量,刚度)。 KST Co.,韩国)。 5.0 mg / kg Kaempferol治疗组显示比对照组更高的骨折载荷(20.54±5.04 n)(17.82±5.94 n)。骨折能量,对胫骨的总能量达到骨折,对照组和任何Kampferol治疗组之间没有显着差异,尽管1.0mg / kg Kaempferol治疗和对照组均比0.2的裂缝能量略高。和5.0 mg / kg Kaempferol治疗组。骨刚度也没有显示对照组和任何Kaempferol治疗组之间的统计学上显着的差异,在1.0mg / kg kaempferol处理基团中观察到的最高刚度值。

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