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具有3D打印硬软骨下骨腔室的双层支架,为长期软骨再生提供持续的机械支撑。

Bilayered scaffold with 3D printed stiff subchondral bony compartment to provide constant mechanical support for long-term cartilage regeneration.

作者信息

Yang Tao, Tamaddon Maryam, Jiang Le, Wang Jing, Liu Ziyu, Liu Zhongqun, Meng Haoye, Hu Yongqiang, Gao Jianming, Yang Xuan, Zhao Yanxu, Wang Yanling, Wang Aiyuan, Wu Qiong, Liu Chaozong, Peng Jiang, Sun Xiaodan, Xue Qingyun

机构信息

Peking University Fifth School of Clinical Medicine, Beijing, China.

Department of Orthopaedics, Beijing Hospital, National Center of Gerontology, Institute of Geriatric Medicine, Chinese Academy of Medical Sciences, China.

出版信息

J Orthop Translat. 2021 Oct 12;30:112-121. doi: 10.1016/j.jot.2021.09.001. eCollection 2021 Sep.

Abstract

BACKGROUND/OBJECTIVE: We seek to figure out the effect of stable and powerful mechanical microenvironment provided by Ti alloy as a part of subchondral bone scaffold on long-term cartilage regeneration.Methods: we developed a bilayered osteochondral scaffold based on the assumption that a stiff subchondral bony compartment would provide stable mechanical support for cartilage regeneration and enhance subchondral bone regeneration. The subchondral bony compartment was prepared from 3D printed Ti alloy, and the cartilage compartment was created from a freeze-dried collagen sponge, which was reinforced by poly-lactic-co-glycolic acid (PLGA).

RESULTS

evaluations confirmed the biocompatibility of the scaffold materials, while evaluations demonstrated that the mechanical support provided by 3D printed Ti alloy layer plays an important role in the long-term regeneration of cartilage by accelerating osteochondral formation and its integration with the adjacent host tissue in osteochondral defect model at rabbit femoral trochlea after 24 weeks.

CONCLUSION

Mechanical support provided by 3D printing Ti alloy promotes cartilage regeneration by promoting subchondral bone regeneration and providing mechanical support platform for cartilage synergistically.

TRANSLATIONAL POTENTIAL STATEMENT

The raw materials used in our double-layer osteochondral scaffolds are all FDA approved materials for clinical use. 3D printed titanium alloy scaffolds can promote bone regeneration and provide mechanical support for cartilage regeneration, which is very suitable for clinical scenes of osteochondral defects. In fact, we are conducting clinical trials based on our scaffolds. We believe that in the near future, the scaffold we designed and developed can be formally applied in clinical practice.

摘要

背景/目的:我们试图弄清楚作为软骨下骨支架一部分的钛合金所提供的稳定且强大的力学微环境对长期软骨再生的影响。

方法

我们基于坚硬的软骨下骨隔室可为软骨再生提供稳定的力学支持并促进软骨下骨再生这一假设,开发了一种双层骨软骨支架。软骨下骨隔室由3D打印钛合金制成,软骨隔室由冻干胶原海绵制成,该海绵由聚乳酸-乙醇酸共聚物(PLGA)增强。

结果

评估证实了支架材料的生物相容性,同时评估表明,在兔股骨滑车的骨软骨缺损模型中,24周后3D打印钛合金层提供的力学支持通过加速骨软骨形成及其与相邻宿主组织的整合,在软骨的长期再生中发挥重要作用。

结论

3D打印钛合金提供的力学支持通过协同促进软骨下骨再生和为软骨提供力学支持平台来促进软骨再生。

转化潜力声明

我们双层骨软骨支架中使用的原材料均为FDA批准的临床使用材料。3D打印钛合金支架可促进骨再生并为软骨再生提供力学支持,非常适合骨软骨缺损的临床场景。事实上,我们正在基于我们的支架进行临床试验。我们相信在不久的将来,我们设计开发的支架能够正式应用于临床实践。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4266/8526903/20068f2c2048/ga1.jpg

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