首页> 外文期刊>Acta histochemica et cytochemica. >Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading
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Stimulation of Osteogenesis in Bone Defects Implanted with Biodegradable Hydroxyapatite Composed of Rod-Shaped Particles under Mechanical Unloading

机译:机械卸载作用下杆状颗粒可生物降解羟基磷灰石植入骨缺损的成骨刺激

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The aim of this study was to evaluate the influence of mechanical unloading on the repair of bone defects with implantation of biodegradable bone substitutes. Spherical granules of biodegradable hydroxyapatite composed of rod-shaped particles (RHA) or beta-tricalcium phosphate composed of rod-shaped particles (RTCP) were implanted into a bone defect created in the distal end of the right femur of 8-week-old Wistar rats. Two, 6, 10, and 22 weeks after implantation, part of the sciatic nerve in the thigh was resected and exposed to mechanical unloading for 2 weeks. Then, 4, 8, 12 and 24 weeks after implantation, repair of the bone defect was analyzed. As a control, the bone defect without implantation of ceramic granules was also analyzed. Both RHA and RTCP tended to be reduced, but the reduction was not obvious during the experimental period. At 12 and 24 weeks after implantation, the amount of newly formed bone in the animal implanted with RHA was significantly greater than that at 4 weeks after implantation, but that in the animal implanted with RTCP or without implantation was not significantly different. The number of osteoclasts in the region implanted with RHA was significantly larger than that of the region implanted with RTCP or without implantation at 12 and 24 weeks. The activities of alkaline phosphatase in osteoblasts and tartrate-resistant acid phosphatase in osteoclasts were remarkably increased in the bone defects with implantation compared with those in the bone defects without implantation. These results suggested that RHA stimulated osteogenesis and osteoclastogenesis even after 2 weeks of mechanical unloading, and that RHA could be expected to improve the repair of bone defects in patients under the condition of skeletal unloading.
机译:这项研究的目的是评估可生物降解的骨替代物植入过程中机械卸载对修复骨缺损的影响。将由棒状颗粒(RHA)组成的可生物降解羟基磷灰石球形颗粒或由棒状颗粒(RTCP)组成的β-磷酸三钙球形颗粒植入8周龄Wistar右股骨远端产生的骨缺损中大鼠。植入后两周,六周,十周和二十二周,将大腿上的坐骨神经部分切除并暴露于机械负荷下2周。然后,在植入后第4、8、12和24周,分析骨缺损的修复情况。作为对照,还分析了未植入陶瓷颗粒的骨缺损。 RHA和RTCP都有降低的趋势,但是在实验期间这种降低并不明显。植入后12和24周,植入RHA的动物中新形成的骨量明显大于植入后4周的动物,但植入RTCP或未植入RTCP的动物中新形成的骨量无显着差异。在第12和24周时,植入RHA的区域的破骨细胞数量明显大于植入RTCP或未植入RTCP的区域。与未植入骨缺损相比,植入后骨缺损中成骨细胞中碱性磷酸酶的活性和破骨细胞中抗酒石酸酸性磷酸酶的活性显着增加。这些结果表明,即使在机械卸载2周后,RHA仍能刺激成骨和破骨细胞生成,在骨骼卸载的情况下,RHA有望改善患者骨缺损的修复。

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