Wang Jianwei, Chen Jiayu, Ran Yongfeng, He Qianhong, Jiang Tao, Li Weixu, Yu Xiaohua
Department of Orthopedics, The Second Affiliated Hospital, School of Medicine, Zhejiang University, Zhejiang, China.
Hangzhou Huamai Medical Devices Co., Ltd., Hangzhou, China.
Front Bioeng Biotechnol. 2020 Oct 15;8:553529. doi: 10.3389/fbioe.2020.553529. eCollection 2020.
Exploration for ideal bone regeneration materials still remains a hot research topic due to the unmet clinical challenge of large bone defect healing. Bone grafting materials have gradually evolved from single component to multiple-component composite, but their functions during bone healing still only regulate one or two biological processes. Therefore, there is an urgent need to develop novel materials with more complex composition, which convey multiple biological functions during bone regeneration. Here, we report an naturally nanostructured ECM based composite scaffold derived from fish air bladder and combined with dicalcium phosphate (DCP) microparticles to form a new type of bone grafting material. The DCP/acellular tissue matrix (DCP/ATM) scaffold demonstrated porous structure with porosity over 65% and great capability of absorbing water and other biologics. cell culture study showed that DCP/ATM scaffold could better support osteoblast proliferation and differentiation in comparison with DCP/ADC made from acid extracted fish collagen. Moreover, DCP/ATM also demonstrated more potent bone regenerative properties in a rat calvarial defect model, indicating incorporation of ECM based matrix in the scaffolds could better support bone formation. Taken together, this study demonstrates a new avenue toward the development of new type of bone regeneration biomaterial utilizing ECM as its key components.
由于大骨缺损愈合的临床挑战尚未得到满足,寻找理想的骨再生材料仍然是一个热门的研究课题。骨移植材料已逐渐从单一成分发展到多成分复合材料,但其在骨愈合过程中的功能仍然只调节一两个生物学过程。因此,迫切需要开发具有更复杂组成的新型材料,这些材料在骨再生过程中具有多种生物学功能。在此,我们报道了一种基于天然纳米结构细胞外基质(ECM)的复合支架,该支架由鱼鳔衍生而来,并与磷酸二钙(DCP)微粒结合,形成一种新型的骨移植材料。DCP/脱细胞组织基质(DCP/ATM)支架呈现出孔隙率超过65%的多孔结构,并且具有很强的吸水和吸收其他生物物质的能力。细胞培养研究表明,与由酸提取鱼胶原蛋白制成的DCP/ADC相比,DCP/ATM支架能够更好地支持成骨细胞的增殖和分化。此外,DCP/ATM在大鼠颅骨缺损模型中也表现出更强的骨再生特性,表明在支架中加入基于ECM的基质可以更好地支持骨形成。综上所述,本研究展示了一条利用ECM作为关键成分开发新型骨再生生物材料的新途径。