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首页> 外文期刊>Histology and histopathology >Mitochondrial bioenergetics and distribution in living human osteoblasts grown on implant surfaces.
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Mitochondrial bioenergetics and distribution in living human osteoblasts grown on implant surfaces.

机译:线粒体的生物能和分布在植入物表面上的活人成骨细胞中。

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Osseointegration of implants is crucial for the long-term success of oral implants. The periimplant bone formation by osteoblasts is strongly dependent on the local mechanical environment in the interface zone. Robust demands for energy are placed on osteoblasts during the adhesion process to solid surfaces, and mitochondria are capital organelles in the production of most of the ATP needed for the process. We have assessed the relationship between osteoblast differentiation and mitochondrial bioenergetics in living cells grown on two different titanium surfaces, in order to provide valuable information for the design of material surfaces required for the development of the most appropriate osteogenic surface for osteoblastic anchorage. Combined backscattered and fluorescence confocal microscopy showed that in flat cells grown on a machined surface, highly energized mitochondria were distributed along the cell body. In contrast, cells grown on the rough surface emitted long protrusions in search of surface roughness, with actin stress fibers clearly polarized and highly energized mitochondria clustered at focal adhesion sites. This report using normal human osteoblastic cells indicates that these cells are especially sensitive to surface cues through energy production that enhances the necessary adhesion required for a successful osseointegration.
机译:植入物的骨整合对于口腔植入物的长期成功至关重要。成骨细胞形成的植入物周围骨在很大程度上取决于界面区域中的局部机械环境。成骨细胞在与固体表面的粘附过程中对能量有强大的需求,而线粒体是该过程所需的大多数ATP生产中的主要细胞器。我们评估了在两个不同钛表面上生长的活细胞中成骨细胞分化与线粒体生物能之间的关系,以便为开发成骨细胞锚定最合适的成骨表面所需的材料表面设计提供有价值的信息。结合的反向散射和荧光共聚焦显微镜显示,在机械表面上生长的扁平细胞中,高能线粒体沿着细胞体分布。相反,在粗糙表面上生长的细胞发出长突起以寻找表面粗糙度,肌动蛋白应力纤维清晰地极化,高能线粒体聚集在粘着部位。这份使用正常人类成骨细胞的报告表明,这些细胞通过产生能量来增强对成功骨整合所需的必要粘附力,对表面线索特别敏感。

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