首页> 外文期刊>Brazilian Dental Journal >Exploring anorganic bovine bone granules as osteoblast carriers for bone bioengineering: a study in rat critical-size calvarial defects
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Exploring anorganic bovine bone granules as osteoblast carriers for bone bioengineering: a study in rat critical-size calvarial defects

机译:探索将无机牛骨颗粒用作成骨细胞载体进行骨生物工程:大鼠临界颅盖缺损的研究

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It is known that current trends on bone bioengineering seek ideal scaffolds and explore innovative methods to restore tissue function. In this way, the objective of this study was to evaluate the behavior of anorganic bovine bone as osteoblast carrier in critical-size calvarial defects. MC3T3-E1 osteoblast cells (1x10(5) cells/well) were cultured on granules of anorganic bovine bone in 24-well plates and after 24 h these granules were implanted into rat critical-size calvarial defects (group Biomaterial + Cells). In addition, other groups were established with different fillings of the defect: Blood Clot (negative control); Autogenous Bone (positive control); Biomaterial (only granules) and Cells (only MC3T3-E1 cells). After 30 days, the animals were euthanized and the calvaria were technically processed in order to allow histological and morphometric analysis. It was possible to detect blood vessels, connective tissue and newly formed bone in all groups. Particularly in the Biomaterial + Cells group, it was possible to observe a profile of biological events between the positive control group (autogenous bone) and the group in which only anorganic bovine granules were implanted. Altogether, the results of the present study showed that granules of anorganic bovine bone can be used as carrier to osteoblasts and that adding growth factors at the moment of implantation should maximize these results.
机译:众所周知,当前骨生物工程学的趋势寻求理想的支架并探索恢复组织功能的创新方法。通过这种方式,本研究的目的是评估在临界大小的颅骨缺损中,无机牛骨作为成骨细胞载体的行为。将MC3T3-E1成骨细胞(1x10(5)细胞/孔)培养在24孔板中的无机牛骨颗粒上,并在24 h后将这些颗粒植入大鼠临界大小的颅骨缺损中(生物材料+细胞组)。此外,还建立了其他组以不同的缺损填充物:血块(阴性对照);自体骨(阳性对照);生物材料(仅颗粒)和细胞(仅MC3T3-E1细胞)。 30天后,对动物实施安乐死并对颅盖进行技术处理,以便进行组织学和形态计量学分析。可以检测所有组中的血管,结缔组织和新形成的骨骼。特别是在“生物材料+细胞”组中,可以观察到阳性对照组(自体骨)与仅植入无机牛颗粒的组之间的生物学事件。总而言之,本研究的结果表明,无机牛骨颗粒可以用作成骨细胞的载体,并且在植入时添加生长因子应该使这些结果最大化。

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