Chang Yun-Liang, Hsieh Chia-Ying, Yeh Chao-Yuan, Chang Chih-Hao, Lin Feng-Huei
Department of Biomedical Engineering, National Taiwan University, No. 1, Sec. 1, Jen-Ai Road, Taipei City 10051, Taiwan.
Department of Orthopaedic Surgery, National Taiwan University Hospital, No. 7, Chung Shan South Road, Taipei City 10002, Taiwan.
Micromachines (Basel). 2021 Jul 14;12(7):822. doi: 10.3390/mi12070822.
Bone defects of orthopedic trauma remain a challenge in clinical practice. Regarding bone void fillers, besides the well-known osteoconductivity of most bone substitutes, osteoinductivity has also been gaining attention in recent years. It is known that stromal cell-derived factor-1 (SDF-1) can recruit mesenchymal stem cells (MSCs) in certain circumstances, which may also play an important role in bone regeneration. In this study, we fabricated a gelatin/hyaluronate (Gel/HA) copolymer mixed with hydroxyapatite (HAP) and SDF-1 to try and enhance bone regeneration in a bone defect model. After material characterization, these Gel/HA-HAP and Gel/HA-HAP-SDF-1 composites were tested for their biocompatibility and ability to recruit MSCs in vitro. A femoral condyle bone defect model of rats was used for in vivo studies. For the assessment of bone healing, micro-CT analysis, second harmonic generation (SHG) imaging, and histology studies were performed. As a result, the Gel/HA-HAP composites showed no systemic toxicity to rats. Gel/HA-HAP composite groups both showed better bone generation compared with the control group in an animal study, and the composite with the SDF-1 group even showed a trend of faster bone growth compared with the composite without SDF-1 group. In conclusion, in the management of traumatic bone defects, Gel/HA-HAP-SDF-1 composites can be a feasible material for use as bone void fillers.
骨科创伤的骨缺损在临床实践中仍然是一个挑战。关于骨缺损填充材料,除了大多数骨替代物众所周知的骨传导性外,近年来骨诱导性也受到了关注。已知基质细胞衍生因子-1(SDF-1)在某些情况下可以募集间充质干细胞(MSCs),这在骨再生中可能也起着重要作用。在本研究中,我们制备了一种与羟基磷灰石(HAP)和SDF-1混合的明胶/透明质酸盐(Gel/HA)共聚物,试图在骨缺损模型中增强骨再生。在材料表征后,对这些Gel/HA-HAP和Gel/HA-HAP-SDF-1复合材料进行了体外生物相容性和募集MSCs能力的测试。使用大鼠股骨髁骨缺损模型进行体内研究。为了评估骨愈合情况,进行了显微CT分析、二次谐波产生(SHG)成像和组织学研究。结果,Gel/HA-HAP复合材料对大鼠没有全身毒性。在动物研究中,Gel/HA-HAP复合材料组与对照组相比均显示出更好的骨生成,并且与不含SDF-1的复合材料组相比,含SDF-1的复合材料组甚至显示出骨生长更快的趋势。总之,在创伤性骨缺损的治疗中,Gel/HA-HAP-SDF-1复合材料可以作为一种可行的骨缺损填充材料。