Zhang Huan, Ding Shuo, Xue Huai, Wang Shuguang, Quan Xiaoyu, Zhang Dong, Liu Xiao, Tang Hai
Department of Orthopaedics, Beijing Friendship Hospital, Capital Medical University, Beijing, China.
School of Second Clinical Medicine, Xuzhou Medical University, Xuzhou, Jiangsu, China.
Front Bioeng Biotechnol. 2025 Mar 18;13:1563546. doi: 10.3389/fbioe.2025.1563546. eCollection 2025.
Bone defects caused by trauma, tumor resection, and surgery present significant clinical challenges, often resulting in complications such as delayed union, nonunion, and even long-term functional impairment. Current treatments, including autografts and allografts, are limited by donor site morbidity, immune rejection, and pathogen transmission, highlighting the need for developing reliable synthetic alternatives. To address these challenges, we report a binary composite hydrogel combining gelatin methacryloyl (GelMA) and κ-Carrageenan, reinforced with calcium phosphate cements (CPC). GelMA ensures rapid gelation and biocompatibility, κ-carrageenan improves injectability, and CPC enhances mechanical strength and osteogenic activity, collectively creating a robust and versatile hydrogel system. Furthermore, the hydrogel's injectable, adaptive, and self-healing characteristics enable it to conform to irregular bone defect sites, providing mechanical support and osteogenic stimulation. It also releases bioactive components to accelerate bone regeneration. With exceptional toughness and resilience, this hydrogel recovers its shape after deformation, positioning it as a promising candidate for clinical bone defect repair applications.
由创伤、肿瘤切除和手术引起的骨缺损带来了重大的临床挑战,常常导致诸如延迟愈合、骨不连甚至长期功能障碍等并发症。目前的治疗方法,包括自体移植和异体移植,受到供体部位发病率、免疫排斥和病原体传播的限制,这凸显了开发可靠的合成替代物的必要性。为应对这些挑战,我们报告了一种二元复合水凝胶,它由甲基丙烯酰化明胶(GelMA)和κ-卡拉胶组成,并用磷酸钙骨水泥(CPC)增强。GelMA确保快速凝胶化和生物相容性,κ-卡拉胶提高可注射性,CPC增强机械强度和成骨活性,共同创建了一个强大且通用的水凝胶系统。此外,水凝胶的可注射、适应性和自愈特性使其能够贴合不规则的骨缺损部位,提供机械支撑和成骨刺激。它还释放生物活性成分以加速骨再生。这种水凝胶具有非凡的韧性和弹性,在变形后能恢复其形状,使其成为临床骨缺损修复应用的有前途的候选材料。