首页> 美国卫生研究院文献>Tissue Engineering. Part A >Calcium Sulphate/Hydroxyapatite Carrier for Bone Formation in the Femoral Neck of Osteoporotic Rats
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Calcium Sulphate/Hydroxyapatite Carrier for Bone Formation in the Femoral Neck of Osteoporotic Rats

机译:骨质疏松大鼠股骨颈骨形成的硫酸钙/羟磷灰石载体

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摘要

This study investigated bone regeneration in the femoral neck canal of osteoporotic rats using a novel animal model. A calcium sulphate (CS)/hydroxyapatite (HA) carrier was used to deliver a bisphosphonate, zoledronic acid (ZA), locally, with or without added recombinant human bone morphogenic protein-2 (rhBMP-2). Twenty-eight-week-old ovariectomized Sprague–Dawley rats were used. A 1 mm diameter and 8 mm long defect was created in the femoral neck by drilling from the lateral cortex in the axis of the femoral neck, leaving the surrounding cortex intact. Three treatment groups and one control group were used: (1) CS/HA alone, (2) CS/HA + ZA (10 μg) (3) CS/HA + ZA (10 μg) + rhBMP-2 (4 μg), and (4) empty defect (control). The bone formation was assessed at 4 weeks post surgery using in vivo micro computed tomography (micro-CT). At 8 weeks post surgery, the animals were sacrificed, and both defect and contralateral femurs were subjected to micro-CT, mechanical testing, and histology. Micro-CT results showed that the combination of CS/HA with ZA or ZA + rhBMP-2 increased the bone formation in the defect when compared to the other groups and to the contralateral hips. Evidence of new dense bone formation in CS/HA + ZA and CS/HA + ZA + rhBMP-2 groups was seen histologically. Mechanical testing results showed no differences in the load to fracture between the treatments in either of the treated or contralateral legs. The CS/HA biomaterial can be used as a carrier for ZA and rhBMP-2 to regenerate bone in the femoral neck canal of osteoporotic rats.
机译:本研究使用新型动物模型研究了骨质疏松大鼠股骨颈管的骨再生。硫酸钙(CS)/羟基磷灰石(HA)载体用于在有或没有添加重组人骨形态发生蛋白2(rhBMP-2)的情况下局部递送双膦酸盐,唑来膦酸(ZA)。使用28周大的卵巢切除Sprague-Dawley大鼠。从股骨颈轴的外侧皮层钻孔,在股骨颈上形成直径1 mm,长8 mm的缺损,使周围的皮层完好无损。使用三个治疗组和一个对照组:(1)单独使用CS / HA,(2)CS / HA + ZA(10μg)(3)CS / HA + ZA(10μg)+ rhBMP-2(4μg) ,以及(4)空缺陷(对照)。术后4周使用体内微计算机断层扫描(micro-CT)评估骨形成。手术后8周,处死动物,并对缺损和对侧股骨均进行micro-CT,机械测试和组织学检查。 Micro-CT结果表明,与其他组和对侧髋关节相比,CS / HA与ZA或ZA + rhBMP-2的结合可增加缺损处的骨形成。组织学上观察到CS / HA + ZA和CS / HA + ZA + rhBMP-2组中新的致密骨形成的证据。机械测试结果显示,在治疗的腿或对侧腿中,治疗之间的骨折负荷没有差异。 CS / HA生物材料可用作ZA和rhBMP-2的载体,以在骨质疏松大鼠的股骨颈管中再生骨骼。

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