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Nanostructured magnesium increases bone cell density

机译:纳米镁可增加骨细胞密度

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Magnesium has attracted some attention in orthopedics due to its biodegradability and mechanical properties. Since magnesium is an essential natural mineral for bone growth, it can be expected that as a biomaterial, it would support bone formation. However, upon degradation in the body, magnesium releases OH which results in an alkaline pH that can be detrimental to cell density (for example, osteoblasts or bone forming cells). For this reason, modification of magnesium may be necessary to compensate for such detrimental effects to cells. This study created biologically inspired nanoscale surface features on magnesium by soaking magnesium in various concentrations of NaOH (from 1 to 10N) and for various periods of time (from 10 to 30min). The results provided the first evidence of increased roughness, surface energy, and consequently greater osteoblast adhesion, after 4h as well as density up to 7 days on magnesium treated with any concentration of NaOH for any length of time compared to untreated controls. For these reasons, this study suggests that soaking magnesium in NaOH could be an inexpensive, simple and effective manner to promote osteoblast functions for numerous orthopedic applications and, thus, should be further studied.
机译:镁由于其可生物降解性和机械性能而在骨科领域引起了一定的关注。由于镁是骨骼生长必不可少的天然矿物质,因此可以预期,镁作为一种生物材料将支持骨骼的形成。但是,镁在体内降解后会释放OH,这会导致碱性pH值降低,从而不利于细胞密度(例如,成骨细胞或骨形成细胞)。由于这个原因,镁的修饰可能是必要的,以补偿对细胞的这种有害作用。这项研究通过将镁浸入各种浓度的NaOH(从1到10N)中并浸泡不同的时间段(从10到30分钟),在镁上创造了具有生物启发性的纳米级表面特征。结果提供了第一个证据,与未处理的对照组相比,用任何浓度的NaOH处理了4个小时的镁在4小时后的粗糙度,表面能增加,从而增加了成骨细胞的附着力,并且密度提高了7天。由于这些原因,这项研究表明将镁浸泡在NaOH中可能是一种廉价,简单而有效的方式,可以在许多整形外科应用中促进成骨细胞的功能,因此,应进一步研究。

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