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Osteoconductive Microarchitecture of Bone Substitutes for Bone Regeneration Revisited

机译:骨替代骨再生的骨微结构的再研究。

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摘要

In the last three decades, all efforts in bone tissue engineering were driven by the dogma that the ideal pore size in bone substitutes lies between 0.3 and 0.5 mm in diameter. Newly developed additive manufacturing methodologies for ceramics facilitate the total control over pore size, pore distribution, bottleneck size, and bottleneck distribution. Therefore, this appears to be the method of choice with which to test the aforementioned characteristics of an ideal bone substitute. To this end, we produced a library of 15 scaffolds with diverse defined pore/bottleneck dimensions and distributions, tested them in vivo in a calvarial bone defect model in rabbits, and assessed the clinically most relevant parameters: defect bridging and bony regenerated area. Our in vivo data revealed that the ideal pore/bottleneck dimension for bone substitutes is in the range of 0.7–1.2 mm, and appears therefore to be twofold to fourfold more extended than previously thought. Pore/bottleneck dimensions of 1.5 and 1.7 mm perform significantly worse and appear unsuitable in bone substitutes. Thus, our results set the ideal range of pore/bottleneck dimensions and are likely to have a significant impact on the microarchitectural design of future bone substitutes for use in orthopedic, trauma, cranio-maxillofacial and oral surgery.
机译:在过去的三十年中,骨组织工程的所有努力都受到教条的推动,即骨替代物的理想孔径在直径0.3到0.5 mm之间。最新开发的陶瓷增材制造方法有助于全面控制孔尺寸,孔分布,瓶颈尺寸和瓶颈分布。因此,这似乎是测试理想的骨替代物的上述特征的选择方法。为此,我们建立了一个包含15个具有不同定义的孔/瓶颈尺寸和分布的支架的文库,在兔的颅骨缺损模型中对其进行了体内测试,并评估了临床上最相关的参数:缺损桥接和骨再生区域。我们的体内数据显示,骨替代物的理想孔/瓶颈尺寸在0.7-1.2 mm的范围内,因此比以前认为的扩展了两倍至四倍。毛孔/瓶颈尺寸为1.5和1.7毫米,性能明显较差,似乎不适合替代骨。因此,我们的研究结果确定了理想的孔隙/瓶颈尺寸范围,并且可能会对用于骨科,创伤,颅颌面部和口腔外科的未来骨替代物的微体系设计产生重大影响。

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