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首页> 外文期刊>Acta biomaterialia >Adhesion of osteoblast-like cells on nanostructured hydroxyapatite.
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Adhesion of osteoblast-like cells on nanostructured hydroxyapatite.

机译:纳米结构羟基磷灰石上的成骨细胞样细胞的粘附性。

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The response of osteoblast-like cells seeded on hydroxyapatite (HAp) substrates consisting of nanosized crystals was investigated. Various types of HAp nanocrystals, such as nanofibers, nanoneedles and nanosheets, were selectively prepared as substrate through the hydrolysis of a solid precursor crystal of CaHPO(4) in alkaline solutions by varying the pH and ion concentrations. Although all the substrates were macroscopically flat and smooth, the nanoscale topography influenced cell activity, including the adhesion, proliferation, elongation and formation of actin stress fibers. The presence of fine nanoneedles and nanofibers on the surface restricted the cellular activities, while the cells steadily proliferated on a nanoscopically smooth surface of large grains and on a substrate consisting of wide nanosheets. These results suggest that the adhesion and subsequent responses of osteoblast-like cells were affected by the contact domain size between the cell and the substrate. Isolated small domains of the nanostructured HAp limited focal adhesion formation in the cells associated with the formation of stress fibers. Stable adhesion with contact domains larger than 100nm in width was suggested to be required for cell survival. On the other hand, insufficient adhesion on the fine nanoneedles was found to lead to apoptosis.
机译:研究了由纳米磷灰石(HAP)基材上播种的成骨细胞样细胞的响应进行了研究。通过改变pH和离子浓度,通过改变pH和离子浓度,选择性地制备各种类型的Hap纳米晶体,例如纳米纤维,纳米粒子和纳米晶片,通过水解CaHPO(4)的固体前体晶体水解。虽然所有基材均匀扁平且光滑,但纳米级地形影响细胞活性,包括抗粘蛋白应力纤维的粘附,增殖,伸长和形成。表面上的细纳尼葡萄酒和纳米纤维的存在限制了细胞活性,而细胞在大颗粒的纳米镜下平滑表面和由宽纳米片组成的基材上稳定地增殖。这些结果表明,成骨细胞样细胞的粘附和随后的反应受电池和基材之间的接触域尺寸的影响。纳米结构HAP有限局部侧面的孤立的小领域在与形成应力纤维的形成相关的细胞中。建议细胞存活需要稳定地粘附大于100nm的宽度大于100nm的宽度。另一方面,发现精细纳尼衬里的粘附不足导致细胞凋亡。

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