Bahatibieke Abudureheman, Wei Shuai, Feng Han, Zhao Jianming, Ma Mengjiao, Li Junfei, Xie Yajie, Qiao Kun, Wang Yanseng, Peng Jiang, Meng Haoye, Zheng Yudong
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Institute of Orthopaedics, Chinese PLA General Hospital, Beijing, 100853, China.
Bioact Mater. 2024 May 13;39:1-13. doi: 10.1016/j.bioactmat.2024.03.012. eCollection 2024 Sep.
Irregular articular cartilage injury is a common type of joint trauma, often resulting from intense impacts and other factors that lead to irregularly shaped wounds, the limited regenerative capacity of cartilage and the mismatched shape of the scaffods have contributed to unsatisfactory therapeutic outcomes. While injectable materials are a traditional solution to adapt to irregular cartilage defects, they have limitations, and injectable materials often lack the porous microstructures favorable for the rapid proliferation of cartilage cells. In this study, an injectable porous polyurethane scaffold named PU-BDO-Gelatin-Foam (PUBGF) was prepared. After injection into cartilage defects, PUBGF forms in situ at the site of the defect and exhibits a dynamic microstructure during the initial two weeks. This dynamic microstructure endows the scaffold with the ability to retain substances within its interior, thereby enhancing its capacity to promote chondrogenesis. Furthermore, the chondral repair efficacy of PUBGF was validated by directly injecting it into rat articular cartilage injury sites. The injectable PUBGF scaffold demonstrates a superior potential for promoting the repair of cartilage defects when compared to traditional porous polyurethane scaffolds. The substance retention ability of this injectable porous scaffold makes it a promising option for clinical applications.
不规则关节软骨损伤是一种常见的关节创伤类型,通常由强烈撞击等因素导致伤口形状不规则,软骨有限的再生能力以及支架形状不匹配导致治疗效果不尽人意。虽然可注射材料是适应不规则软骨缺损的传统解决方案,但它们存在局限性,可注射材料通常缺乏有利于软骨细胞快速增殖的多孔微结构。在本研究中,制备了一种名为PU-BDO-明胶-泡沫(PUBGF)的可注射多孔聚氨酯支架。注入软骨缺损后,PUBGF在缺损部位原位形成,并在最初两周内呈现动态微结构。这种动态微结构使支架能够在其内部保留物质,从而增强其促进软骨形成的能力。此外,通过将PUBGF直接注入大鼠关节软骨损伤部位,验证了其软骨修复效果。与传统多孔聚氨酯支架相比,可注射的PUBGF支架在促进软骨缺损修复方面显示出卓越的潜力。这种可注射多孔支架的物质保留能力使其成为临床应用的一个有前景的选择。