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Factors affecting in vitro bioactivity of glasses

机译:影响眼镜体外生物活性的因素

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In this work we summarize the most important findings of the influence of glass composition, sample shape and fluid circulation on in vitro behavior of bioactive glasses in the system Na_2O-K_2O-MgO-CaO-B_2O_3-P_2O_5-SiO_2. The sample shapes included plates, particulates, powdered glasses, glass fibers and sintered cones with interconnected porosity. The in vitro bioactivity was measured as the changes observed in the immersion solution, SBF, and the formation of reaction layers on the samples at 4 to 168 h immersion. A lower surface area to volume ratio gave smaller changes on the ion concentrations and pH of the immersion solution but thicker reaction layers on the glass surfaces. In particulate systems with circulating fluid the pH gradients in SBF were lower but surface layers more even than in static systems. The influence of glass composition on reaction layer formation as suggested by glass plates correlated with the in vitro behavior of glass particulates larger than 250 ìm, porous cones and fibers when using similar SA/V ratio.
机译:在这项工作中,我们总结了玻璃组成,样品形状和流体循环对系统Na_2O-K_2O-MgO-CaO-B_2O_3-P_2O_5-SiO_2中生物活性玻璃的体外行为的影响最重要的发现。样品形状包括板,颗粒,粉末玻璃,玻璃纤维和具有互连孔隙率的烧结锥。测量体外生物活性作为在浸渍溶液,SBF中观察到的变化,并在4至168h浸渍时在样品上形成反应层。较低的表面积至体积比对浸渍溶液的离子浓度和pH值较小,但玻璃表面上的反应层较厚。在具有循环流体的颗粒体系中,SBF中的pH梯度较低,但表面层更均匀于静态系统。玻璃组合物对如玻璃板建议的反应层形成与使用相似的SA / V比时玻璃颗粒的体外行为相关。

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