Department of Orthopedic Surgery, Third Hospital of Peking University, Beijing 100191, China.
Hangzhou Huamai Medical Technology Co., Ltd., Hangzhou 310052, Zhejiang, China.
ACS Appl Bio Mater. 2022 Jul 18;5(7):3269-3280. doi: 10.1021/acsabm.2c00256. Epub 2022 Jun 13.
Due to the limitation of clinical autologous bone supply and other issues, the development of bone regeneration materials is still a hot topic. Natural tissue-derived bone repair materials have good biocompatibility and degradability, but their structure and properties are likely to be adversely affected during terminal sterilization. In this study, a composite scaffold consisting of the acellular extracellular matrix and dicalcium phosphate (ECM/DCP) was fabricated and terminally sterilized by γ-ray irradiation. In addition, the ECM/DCP scaffold was saturated with water and was also sterilized by γ-ray irradiation (RX-ECM/DCP). Results showed that the triple helix structure of collagen was better maintained in RX-ECM/DCP than in ECM/DCP. The thermal stability of RX-DCP/ECM was much better than that of ECP/ECM. The and performances of both types of scaffolds were also evaluated. The RX-ECM/DCP scaffold exhibited better bioactivity than that of the ECM/DCP scaffold as evidenced by more mineral formation in the simulated body fluid. In addition, RX-ECM/DCP also induced more effective bone regeneration than the ECM/DCP scaffold did in a rat calvarial defect model. Results sufficiently demonstrated that the addition of water to the scaffold could protect the structure of the ECM/DCP scaffold from being damaged by γ-ray irradiation during the terminal sterilization process. In summary, this study demonstrated a means to protect the ECM structure, which in turn led to the improvement of bone regenerative properties of the materials during γ-ray irradiation of ECM-based bone repair materials.
由于临床自体骨供应的限制和其他问题,骨再生材料的开发仍然是一个热门话题。天然组织衍生的骨修复材料具有良好的生物相容性和可降解性,但在终端灭菌过程中,其结构和性能可能会受到不利影响。在这项研究中,制备了由去细胞细胞外基质和磷酸二钙(ECM/DCP)组成的复合支架,并通过γ射线辐照进行终端灭菌。此外,还将 ECM/DCP 支架用水饱和,并通过γ射线辐照(RX-ECM/DCP)进行灭菌。结果表明,在 RX-ECM/DCP 中胶原的三螺旋结构比 ECM/DCP 中更好地保持。RX-DCP/ECM 的热稳定性比 ECP/ECM 好得多。还评估了这两种支架的 和 性能。RX-ECM/DCP 支架表现出比 ECM/DCP 支架更好的生物活性,在模拟体液中形成更多的矿物质。此外,在大鼠颅骨缺损模型中,RX-ECM/DCP 也比 ECM/DCP 支架诱导更有效的骨再生。结果充分表明,在终端灭菌过程中向支架中加水可以保护 ECM/DCP 支架的结构免受γ射线辐照的破坏。总之,本研究证明了一种保护 ECM 结构的方法,从而提高了 ECM 基骨修复材料在γ射线辐照下的骨再生性能。