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Wettable arrays onto superhydrophobic surfaces for bioactivity testing of inorganic nanoparticles

机译:可湿性阵列在超疏水表面上用于无机纳米粒子的生物活性测试

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摘要

Poly(l-lactic acid) superhydrophobic surfaces prepared by a phase-separation methodology were treated with 30 min exposition of UV/O3 irradiation using hollowed masks in order to obtain patterned superhydrophilic squared-shaped areas. These wettable areas successfully confined bioactive glass nanoparticles (BG-NPs), by dispensing and drying individual droplets of BG-NPs suspensions. The obtained biomimetic chips were used to test the in vitro bioactivity of binary (SiO2–CaO) and ternary (SiO2–CaO–P2O5) nanoparticles produced using sol–gel chemistry by immersing such substrate in simulated body fluid (SBF). From SEM and EDX it was possible to conclude that the ternary system promoted an enhanced apatite deposition. This work shows the potential of using such flat disposable matrices in combinatory essays to easily evaluate the osteoconductive potential of biomaterials using small amounts of different samples.
机译:将通过相分离方法制得的聚(l-乳酸)超疏水表面用镂空掩模进行30分钟的UV / O3辐照曝光处理,以获得图案化的超亲水正方形区域。通过分配和干燥BG-NPs悬浮液的各个液滴,这些可湿性区域成功地限制了生物活性玻璃纳米颗粒(BG-NPs)。所获得的仿生芯片用于通过使用溶胶-凝胶化学方法将此类基质浸入模拟体液(SBF)中来测试二元(SiO2-CaO)和三元(SiO2-CaO-P2O5)纳米粒子的体外生物活性。从SEM和EDX可以得出结论,三元体系促进了增强的磷灰石沉积。这项工作表明了在组合论文中使用这种扁平的一次性基质来使用少量不同样品轻松评估生物材料的骨传导潜力的潜力。

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