哺乳动物成纤维细胞对激光生成的非晶硅- sio2杂化结构表现出强烈的偏好

C. Colpitts, A. Ektesabi, R. Wyatt, B. D. Crawford, Amirkianoosh Kiani
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引用次数: 12

摘要

在本研究中,我们研究了一种利用纳秒激光脉冲制备生物活性非晶硅和氧化硅杂化图案的方法。方法利用激光脉冲在不同频率(25、70和100 kHz)的硅片上制备微细线图案,得到具有频率相关物理化学性质的烧蚀图案。结果激光处理后的硅衬底与模拟体液孵育表明,在这些条件下,激光处理后的样品的物理化学性质是稳定的,有利于骨状磷灰石的沉积。更重要的是,虽然NIH 3T3成纤维细胞确实定植在硅片的未处理区域,但它们对激光处理区域表现出强烈的偏好,并进一步区分不同频率处理的底物。综上所述,这些数据表明,硅基器件的激光材料加工在生物传感器和其他仿生器件的生产中是一条有前途的途径。
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Mammalian Fibroblast Cells Show Strong Preference for Laser-Generated Hybrid Amorphous Silicon-SiO2 Textures
Background In this study, we investigated a method to produce bioactive hybrid amorphous silicon and silicon oxide patterns using nanosecond laser pulses. Methods Microscale line patterns were made by laser pulses on silicon wafers at different frequencies (25, 70 and 100 kHz), resulting in ablation patterns with frequency-dependent physical and chemical properties. Results Incubating the laser-treated silicon substrates with simulated body fluid demonstrated that the physicochemical properties of the laser-treated samples were stable under these conditions, and favored the deposition of bone-like apatite. More importantly, while NIH 3T3 fibroblasts did colonize the untreated regions of the silicon wafers, they showed a strong preference for the laser-treated regions, and further discriminated between substrates treated with different frequencies. Conclusions Taken together, these data suggest that laser materials processing of silicon-based devices is a promising avenue to pursue in the production of biosensors and other bionic devices.
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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