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MODULATION OF OSTEOBLAST CELL RESPONSE THROUGH LASER SURFACE PROCESSING OF NYLON 6,6

机译:通过尼龙6,6激光表面处理调节骨胶细胞响应

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With an ageing population demand on medical facilities is growing, especially for bio-implants. Therefore, there is a need for cheaper, more efficient implants. This details how CO_2 and KrF excimer lasers can be employed to modulate osteoblast cell growth on nylon 6,6 in relation to laser-modified wettability characteristics. Through patterning the contact angle, θ, increased by up to 19°, indicating the presence of a mixed state wetting regime; whereas θ decreased by up to 20° for the whole area irradiative processed samples. After 24 hours and 4 days incubation the cell cover density and cell count was somewhat modulated over the laser-modified samples compared to the as-received sample. A likely increase in surface toxicity gave rise to a hindered cell response for those samples with high energy densities and high incident pulse numbers. No strong correlations were determined for the laser-induced patterned samples which can be attributed to the likely mixed-state wetting regime. Correlative trends were found between the cell response, θ, polar component and surface oxygen content for the whole area irradiative processed samples. Thus, allowing one to identify the potential for this technology in regenerative medicine.
机译:随着人口老龄化的医疗设施的需求正在增长,特别是对于生物植入物。因此,需要更便宜,更有效的植入物。该细节Co_2和KRF准分子激光器如何用于调节尼龙6,6上的Osteoooblast细胞生长,相对于激光改性的润湿性特性。通过图案化接触角,θ增加到19°,表明存在混合状态润湿制度; θ对于整个区域辐射加工样品的样品减少了高达20°。 24小时后4天孵育,与接受的样品相比,通过激光改性样品稍微调节细胞覆盖密度和细胞计数。表面毒性的可能增加对具有高能量密度和高入射脉冲数的那些样品产生阻碍的细胞响应。对于激光诱导的图案样品没有确定强烈的相关性,其可归因于可能的混合状态润湿性能。在整个区域辐射加工样品的细胞响应,θ,极性成分和表面氧含量之间发现了相关趋势。因此,允许人们在再生医学中识别该技术的潜力。

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