介孔氧化铝作为生物材料在生物医学上的应用

E. Xifré-Pérez, Josep Ferre-Borull, J. Pallarès, L. Marsal
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引用次数: 30

摘要

摘要:多孔阳极氧化铝(PAA)是一种基于纯铝电化学阳极氧化的经济高效的生物材料,具有独特的几何性质,即自有序的六边形孔分布,可调节的孔径和孔间距离,以及垂直方向上均匀的孔(纳米通道)。这些显著的特性在储能、光学、光子学、磁学、催化,特别是生物医学等领域都有重要的应用。本文综述了基于PAA的细胞培养和植入、具有复杂释放谱和特异性作用的药物传递系统、具有不同生物传感机制的高效灵敏生物传感器等方面的研究现状和关键问题。对生物相容性、表面形貌、纳米结构工程、表面功能化和涂层等方面进行了详细的讨论和分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mesoporous alumina as a biomaterial for biomedical applications
Abstract: Porous anodic alumina (PAA) is a biomaterial based on a cost-effective electrochemical anodization of pure aluminum with unique geometrical properties, i.e., self-ordering hexagonal pore distribution, tunable pore diameters and interpore distances, and uniformity of the pores in the vertical direction (nanochannels). These remarkable properties have found important applications in several fields such as energy storage, optics, photonics, magnetism, catalysis and, in particular, in the biomedicine field. In this work, we review the current state of research and key issues on cell culture and implants, drug delivery systems with complex release profiles and specific action, and high efficiency and sensitivity biosensors with different biosensing mechanisms, all of them based on PAA. The biocompatibility, morphology of the surface, nanoestructural engineering in-depth, surface functionalization and coatings are discussed and analyzed in detail.
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