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使用羟基磷灰石涂层的3D打印TiAlV支架通过软骨内途径修复大鼠临界尺寸下颌骨缺损的骨再生

Bone regeneration in critically sized rat mandible defects through the endochondral pathway using hydroxyapatite-coated 3D-printed TiAlV scaffolds.

作者信息

Wang Yan, Cai Xinjie, Huang Jing, Zhou Yi, Jiang Tao, Wang Yining

机构信息

The State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST), Key Laboratory of Oral Biomedicine Ministry of Education, School and Hospital of Stomatology, Wuhan University 237 Luoyu Road Wuhan 430079 China

Department of Prosthodontics, Hospital of Stomatology, Wuhan University Wuhan China.

出版信息

RSC Adv. 2018 Sep 12;8(55):31745-31754. doi: 10.1039/c8ra06508j. eCollection 2018 Sep 5.

Abstract

The endochondral approach has been proved to be a promising pathway in bone tissue engineering. However, whether it is suitable for repairing critically sized mandible defects is unknown. We designed TiAlV scaffolds with a suitable shape and pore size by a 3D-printing selective-laser-melting technique to implement this approach. In order to improve the surface bioactivity of the scaffolds, hydroxyapatite (HA) coatings (HA/L group and HA/H group) of different crystallite size were prepared on the scaffolds electrochemical deposition. Rat bone mesenchymal stem cells (BMSCs) were seeded onto the scaffolds and chondrogenically differentiated for 4 weeks and then the scaffolds were implanted into critically sized rat mandible defects for 8 weeks. The bare scaffold and HA coatings were characterized with field emission scanning electron microscopy, water contact angle measurements and X-ray diffractometry. Cell proliferation results showed that the bioactivity of the HA coatings could better improve the growth rate of BMSCs compared with the bare surface. Additionally, safranin O staining showed abundant cartilage matrix and chondrocytes in the HA coated scaffold. Analyses using qPCR detected higher expression of chondrogenic-related gene and in the HA coated groups, especially in the HA/H group. Together these data demonstrate that the HA coating could improve the chondrogenic differentiation of BMSCs. , methylene blue staining of histological sections and micro-computed tomography revealed that the HA-coated groups, especially the HA/H group, increased new bone formation endochondral ossification compared with the control group. Therefore, this strategy provides an alternative method to improve bone formation in mandible defects the endochondral pathway and the scaffold with larger HA crystals was superior to those with smaller HA crystals.

摘要

软骨内植入途径已被证明是骨组织工程中一条有前景的途径。然而,它是否适用于修复临界尺寸的下颌骨缺损尚不清楚。我们通过三维打印选择性激光熔化技术设计了具有合适形状和孔径的TiAlV支架来实施该途径。为了提高支架的表面生物活性,通过电化学沉积在支架上制备了不同微晶尺寸的羟基磷灰石(HA)涂层(HA/L组和HA/H组)。将大鼠骨髓间充质干细胞(BMSCs)接种到支架上并进行软骨分化4周,然后将支架植入临界尺寸的大鼠下颌骨缺损处8周。通过场发射扫描电子显微镜、水接触角测量和X射线衍射对裸露支架和HA涂层进行表征。细胞增殖结果表明,与裸露表面相比,HA涂层的生物活性能更好地提高BMSCs的生长速率。此外,番红O染色显示HA涂层支架中有丰富的软骨基质和软骨细胞。使用qPCR进行的分析检测到HA涂层组中软骨生成相关基因的表达较高,尤其是在HA/H组中。这些数据共同表明,HA涂层可以改善BMSCs的软骨分化。组织学切片的亚甲蓝染色和显微计算机断层扫描显示,与对照组相比,HA涂层组,尤其是HA/H组,通过软骨内成骨增加了新骨形成。因此,该策略提供了一种通过软骨内途径改善下颌骨缺损骨形成的替代方法,并且具有较大HA晶体的支架优于具有较小HA晶体的支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa47/9085720/e3c263f0d781/c8ra06508j-f1.jpg

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