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Accelerated Bone Induction of Adult Rat Compact Bone Plate Scratched by Ultrasonic Scaler Using Acidic Electrolyzed Water

机译:通过酸性电解水通过超声波烫伤器划伤成年大鼠紧凑骨板的加速骨诱导

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摘要

Fresh compact bone, the candidate graft material for bone regeneration, is usually grafted for horizontal bone augmentation. However, the dense calcified structure inhibits the release of growth factors and limits cellular and vascular perfusion. We aimed to create mechano-chemically altered dense skull bone by ultrasonic treatment, along with partial demineralization using commercially available acidic electrolyzed water (AEW). The parietal skull bone of an 11-month-old Wistar rat was exposed and continuously treated with a piezoelectric ultrasonic scaler tip for 1 min, using AEW (pH 2.3) or distilled water (DW, pH 5.6) as irrigants. Treated parietal bone was removed, cut into plates (5 × 5 × 1 mm3), grafted into the back subcutaneous tissues of syngeneic rats, and explanted at 1, 2, and 3 weeks. AEW bone showed an irregular surface, deep nano-microcracks, and decalcified areas. SEM-EDS revealed small amounts of residual calcium content in the AEW bone (0.03%) compared to the DW bone (0.86%). In the animal assay, the AEW bone induced bone at 2 weeks. Histomorphometric analysis showed that the area of new bone in the AEW bone at 2 and 3 weeks was significantly larger. This new combination technique of AEW-demineralization with ultrasonic treatment will improve the surface area and three-dimensional (3D) architecture of dense bone and accelerate new bone synthesis.
机译:新鲜紧凑的骨骼,候选接枝材料用于骨再生,通常接枝水平骨骼增强。然而,致密钙化结构抑制生长因子的释放并限制细胞和血管灌注。我们的目标是通过超声处理制造机械化学改变的致密颅骨,以及使用市售的酸性电解水(EEV)的部分脱矿质。将11个月大的Wistar大鼠的榫颅骨暴露并用压电超声缩放器尖端用1分钟的压电超声波剪切器尖端进行,使用一份(pH 2.3)或蒸馏水(DW,pH 5.6)作为灌溉剂。除去处理的耳廓,切成平板(5×5×1mm 3),接枝进入同式大鼠的后皮下组织,并在1,2和3周内脱涂。 Aev Bone显示出不规则的表面,深纳米微裂纹和脱钙区域。与DW骨(0.86%)相比,SEM-EDS揭示了药物骨中的少量残留钙含量(0.03%)。在动物测定中,AEV骨骼在2周内诱导骨骼。组织形态学分析表明,2和3周内的一块骨中的新骨面积显着较大。这种新的新型组合技术具有超声处理的新型脱矿质,将改善致密骨的表面积和三维(3D)架构,加速新的骨合成。

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