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首页> 外文期刊>Biomedical materials >Histopathological, histomorphometrical, and radiological evaluations of hydroxyapatite/bioactive glass and fluorapatite/ bioactive glass nanocomposite foams as cell scaffolds in rat tibia: an in vivo study
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Histopathological, histomorphometrical, and radiological evaluations of hydroxyapatite/bioactive glass and fluorapatite/ bioactive glass nanocomposite foams as cell scaffolds in rat tibia: an in vivo study

机译:羟基磷灰石/生物活性玻璃和氟磷灰石/生物活性玻璃纳米复合泡沫作为大鼠胫骨的细胞支架,羟基磷灰石/生物活性玻璃和氟磷酸盐/生物活性玻璃纳米复合泡沫的组织病理学,组织族综合征和放射性学评价:体内研究

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摘要

Bone defects are common and persistent problems in clinical orthopedics and dentistry. The development of synthetic reconstruction materials is essential owing to the restricted access to natural bone grafts, disease transmission risks, surgical costs, donor-sitemorbidity, infections, and immune response-related complications. The present studywas done to evaluate the histopathological,histomorphometrical, and radiological characteristics of composite foams containing hydroxyapatite/bioactive glass (HA/BG) and fluorapatite/bioactive glass (FA/BG) as cell scaffolds in rat tibia reconstruction. A total of 60 rats were divided into four equal groups, of which three groups were implanted withHA/BG, FA/BG, and CenoBone? biomaterials, and the fourth group served as the implant-free controls. Five rats from each group were sacrificed at 15, 30, or 60 days after implantation, and radiological, histopathological, and histomorphometrical assessments were carried out. Based on the findings, no foreign body reaction was present in the rats. Additionally, bone-biomaterial contact occurred directly without the involvement of connective tissues. The number of osteoblasts was reduced in the implant groups, whereas the trabecular thickness and rate of new bone formation were increased in all groups, where the increase in the FA/BG group was themost prominent. The mean percentage difference in bone density between the implant site and the host bone was greater in the FA/BG group at all three time points of the study. Based on the results of the present study and the positive characteristics of these nanocomposite foams, they can be suitable options for implantation in damaged tissues in tissue engineering.
机译:临床骨科和牙科的骨缺损是常见的和持续存在的问题。由于限制对天然骨移植,疾病传播风险,手术成本,供体性和免疫反应相关的并发症,合成重建材料的发展是必不可少的。本研究进行了评价含有羟基磷灰石/生物活性玻璃(HA / BG)和氟磷灰石/生物活性玻璃(FA / BG)的复合泡沫的组织病理学,组织核特征和放射学特性,作为大鼠胫骨重建中的细胞支架。将60只大鼠分为四个相等的组,其中三组植入HA / BG,FA / BG和CENOBONE?生物材料,第四组用作无植入对照。在植入后的15,30或60天处处死来自每组的五只大鼠,并进行放射学,组织病理学和组织学评估。基于调查结果,大鼠中没有异物反应。另外,骨生物材料接触直接发生而不发生结缔组织。在植入基团中减少了成骨细胞的数量,而在所有基团中增加了新骨形成的厚度和速率,其中FA / BG组的增加是突出的。在研究的所有三个时间点,在FA / BG组中,植入部位与宿主骨之间的骨密度的平均百分比差异更大。 Based on the results of the present study and the positive characteristics of these nanocomposite foams, they can be suitable options for implantation in damaged tissues in tissue engineering.

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