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首页> 外文期刊>Acta biomaterialia >Design and characterization of biofunctional magnetic porous silicon flakes
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Design and characterization of biofunctional magnetic porous silicon flakes

机译:生物功能磁性多孔硅片的设计与表征

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Magnetic porous silicon flakes (MPSF) were obtained from mesoporous silicon layers formed by multi-step anodization and subsequent composite formation with Fe oxide nanoparticles by thermal annealing. The magnetic nanoparticles adhered to the surface and penetrated inside the pores. Their structure evolved as a result of the annealing treatments derived from X-ray diffraction and X-ray absorption analyses. Moreover, by tailoring the magnetic load, the dynamic and hydrodynamic properties of the particles were controlled, as observed by the pressure displayed against a sensor probe. Preliminary functionality experiments were performed using an eye model, seeking potential use of MPSF as reinforcement for restored detached retina. It was observed that optimal flake immobilization is obtained when the MPSF reach values of magnetic saturation 10-4 A m2 g-1. Furthermore, the MPSF were demonstrated to be preliminarily biocompatible in vitro. Moreover, New Zealand rabbit in vivo models demonstrated their short-term histocompatibility and their magnetic functionality as retina pressure actuators.
机译:磁性多孔硅薄片(MPSF)是从介孔硅层获得的,介孔硅层是通过多步阳极氧化处理以及随后通过热退火与Fe氧化物纳米粒子复合形成的。磁性纳米颗粒粘附在表面并渗透到孔隙内部。它们的结构是由X射线衍射和X射线吸收分析得出的退火处理的结果演变而来的。此外,通过调整磁负载,可以控制颗粒的动态和流体动力学特性,如通过对传感器探针显示的压力所观察到的那样。使用眼睛模型进行了初步的功能性实验,以寻求将MPSF用作修复脱离的视网膜的潜在用途。观察到,当MPSF达到磁饱和值> 10-4 A m2 g-1时,可获得最佳的薄片固定。此外,已证明MPSF在体外具有初步的生物相容性。此外,新西兰兔体内模型证明了它们的短期组织相容性和作为视网膜压力致动器的磁性功能。

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