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Nanosurface design of dental implants for improved cell growth and function

机译:牙科植入物的纳米表面设计可改善细胞生长和功能

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摘要

A strategy was proposed for the topological design of dental implants based on an in vitro survey of optimized nanodot structures. An in vitro survey was performed using nanodot arrays with dot diameters ranging from 10 to 200nm. MG63 osteoblasts were seeded on nanodot arrays and cultured for 3days. Cell number, percentage undergoing apoptotic-like cell death, cell adhesion and cytoskeletal organization were evaluated. Nanodots with a diameter of approximately 50nm enhanced cell number by 44%, minimized apoptotic-like cell death to 2.7%, promoted a 30% increase in microfilament bundles and maximized cell adhesion with a 73% increase in focal adhesions. An enhancement of about 50% in mineralization was observed, determined by von Kossa staining and by Alizarin Red S staining. Therefore, we provide a complete range of nanosurfaces for growing osteoblasts to discriminate their nanoscale environment. Nanodot arrays present an opportunity to positively and negatively modulate cell behavior and maturation. Our results suggest a topological approach which is beneficial for the design of dental implants.
机译:根据优化的纳米点结构的体外调查,提出了一种用于牙科植入物拓扑设计的策略。使用点直径范围为10至200nm的纳米点阵列进行了体外调查。将MG63成骨细胞接种在纳米点阵列上并培养3天。评价细胞数,经历凋亡样细胞死亡的百分数,细胞粘附和细胞骨架组织。直径约为50nm的纳米点使细胞数增加了44%,使凋亡样细胞的死亡最小化至2.7%,促进了微丝束增加了30%,并使细胞粘附最大化,使粘着斑增加了73%。通过冯·科萨(von Kossa)染色和茜素红S染色确定,矿化度提高了约50%。因此,我们为成骨细胞的生长提供了完整的纳米表面范围,以区分其纳米级环境。纳米点阵列提供了正面和负面地调节细胞行为和成熟的机会。我们的结果提出了一种拓扑方法,对于设计牙科植入物是有益的。

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