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首页> 外文期刊>Acta biomaterialia >Osteoinduction of porous Ti implants with a channel structure fabricated by selective laser melting.
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Osteoinduction of porous Ti implants with a channel structure fabricated by selective laser melting.

机译:具有通过选择性激光熔化制造的通道结构的多孔Ti植入物的骨诱导。

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Many studies have shown that certain biomaterials with specific porous structures can induce bone formation in non-osseous sites without the need for osteoinductive biomolecules, however, the mechanisms responsible for this phenomenon (intrinsic osteoinduction of biomaterials) remain unclear. In particular, to our knowledge the type of pore structure suitable for osteoinduction has not been reported in detail. In the present study we investigated the effects of interconnective pore size on osteoinductivity and the bone formation processes during osteoinduction. Selective laser melting was employed to fabricate porous Ti implants (diameter 3.3mm, length 15 mm) with a channel structure comprising four longitudinal square channels, representing pores, of different diagonal widths, 500, 600, 900, and 1200 mum (termed p500, p600, p900, and p1200, respectively). These were then subjected to chemical and heat treatments to induce bioactivity. Significant osteoinduction was observed in p500 and p600, with the highest observed osteoinduction occurring at 5mm from the end of the implants. A distance of 5mm probably provides a favorable balance between blood circulation and fluid movement. Thus, the simple architecture of the implants allowed effective investigation of the influence of the interconnective pore size on osteoinduction, as well as the relationship between bone quantity and its location for different pore sizes.
机译:许多研究表明,某些具有特定多孔结构的生物材料无需骨诱导性生物分子即可诱导非骨质部位的骨形成,但是,导致这种现象的机制(生物材料的内在性骨诱导)仍不清楚。特别地,据我们所知,尚未详细报道适于骨诱导的孔结构的类型。在本研究中,我们研究了互连孔径对骨诱导过程中骨诱导性和骨形成过程的影响。采用选择性激光熔化技术来制造多孔Ti植入物(直径3.3毫米,长度15毫米),该植入物的通道结构包括四个纵向正方形通道(代表孔),对角线宽度分别为500、600、900和1200微米(称为p500, p600,p900和p1200)。然后对它们进行化学和热处理以诱导生物活性。在p500和p600中观察到了明显的骨诱导作用,其中最高的骨诱导作用发生在距植入物末端5mm处。 5mm的距离可能会在血液循环和液体运动之间提供良好的平衡。因此,植入物的简单结构允许有效研究互连孔尺寸对骨诱导的影响,以及不同孔尺寸的骨量及其位置之间的关系。

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