Jin Yesheng, Huang Yixue, Wang Jia, Zhou Xinfeng, Chen Jianan, Ding Wenge, Jia Zhihao, Xu Yong
Department of Orthopaedics, The First Affiliated Hospital of Soochow University, Orthopedic Institute, MOE Key Laboratory of Geriatric Diseases and Immunology, Suzhou Medical College, Soochow University, No. 899 Pinghai Road, Suzhou 215000, Jiangsu, China.
School of Life Science, Soochow University, No. 199 Ren ai Road, Suzhou 215123, Jiangsu, China.
Burns Trauma. 2025 Jul 29;13:tkaf052. doi: 10.1093/burnst/tkaf052. eCollection 2025.
The musculoskeletal system is essential for human movement. However, the increasing incidence of complex musculoskeletal injuries, which involve substantial loss of soft (muscle, skin) and hard (bone) tissues poses significant clinical challenges. Autogenous and allogeneic bone grafts are the most commonly adopted surgical methods for severe bone defects. However, severe postoperative complications, such as immune rejection and donor site necrosis, can lead to poor prognosis. Additionally, the scarcity of bone graft sources limits their application. Moreover, soft tissue injuries are often inadequately addressed in orthopedic procedures, leading to impaired muscle function and highlighting the urgent need for new strategies in integrated musculoskeletal repair. This review explores tissue engineering solutions by examining the interplay between muscle and bone physiology, elucidating their regenerative mechanisms, and evaluating innovations such as hydrogels, electrospun fibers, and conductive scaffolds for tissue repair. We advocate for integrated strategies that target the simultaneous restoration of soft and hard tissues to improve clinical outcomes.
肌肉骨骼系统对人类运动至关重要。然而,复杂肌肉骨骼损伤的发病率不断上升,这类损伤涉及大量软组织(肌肉、皮肤)和硬组织(骨骼)的损失,给临床带来了重大挑战。自体骨移植和异体骨移植是治疗严重骨缺损最常用的手术方法。然而,严重的术后并发症,如免疫排斥和供体部位坏死,可能导致预后不良。此外,骨移植来源稀缺限制了它们的应用。此外,软组织损伤在骨科手术中往往得不到充分处理,导致肌肉功能受损,凸显了综合肌肉骨骼修复新策略的迫切需求。本综述通过研究肌肉与骨骼生理学之间的相互作用、阐明它们的再生机制以及评估水凝胶、电纺纤维和用于组织修复的导电支架等创新技术,探索组织工程解决方案。我们提倡采用针对同时修复软组织和硬组织的综合策略,以改善临床结果。