Department of Orthopedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, 430022, China.
College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, Hubei, 430074, China.
Adv Healthc Mater. 2023 Jan;12(3):e2201349. doi: 10.1002/adhm.202201349. Epub 2022 Nov 14.
Repairing infected bone defects is a challenge in the field of orthopedics because of the limited self-healing capacity of bone tissue and the susceptibility of refractory materials to bacterial activity. Innervation is the initiating factor for bone regeneration and plays a key regulatory role in subsequent vascularization, ossification, and mineralization processes. Infection leads to necrosis of local nerve fibers, impeding the repair of infected bone defects. Herein, a biomaterial that can induce skeletal-associated neural network reconstruction and bone regeneration with high antibacterial activity is proposed for the treatment of infected bone defects. A photosensitive conductive hydrogel is prepared by incorporating magnesium-modified black phosphorus (BP@Mg) into gelatin methacrylate (GelMA). The near-infrared irradiation-based photothermal and photodynamic treatment of black phosphorus endows it with strong antibacterial activity, improving the inflammatory microenvironment and reducing bacteria-induced bone tissue damage. The conductive nanosheets and bioactive ions released from BP@Mg synergistically improve the migration and secretion of Schwann cells, promote neurite outgrowth, and facilitate innerved bone regeneration. In an infected skull defect model, the GelMA-BP@Mg hydrogel shows efficient antibacterial activity and promotes bone and CGRP nerve fiber regeneration. The phototherapy conductive hydrogel provides a novel strategy based on skeletal-associated innervation for infected bone defect repair.
修复感染性骨缺损是骨科领域的一个挑战,这是因为骨组织的自我修复能力有限,而且难治愈的材料容易受到细菌活动的影响。神经支配是骨再生的启动因素,在随后的血管生成、成骨和矿化过程中起着关键的调节作用。感染会导致局部神经纤维坏死,从而阻碍感染性骨缺损的修复。本文提出了一种生物材料,该材料可以诱导与骨骼相关的神经网络重建和具有高抗菌活性的骨再生,用于治疗感染性骨缺损。通过将镁修饰的黑磷 (BP@Mg) 掺入明胶甲基丙烯酰胺 (GelMA) 中,制备了一种光响应性导电水凝胶。黑磷的近红外光热和光动力治疗赋予其强大的抗菌活性,改善了炎症微环境,减少了细菌诱导的骨组织损伤。从 BP@Mg 释放的导电纳米片和生物活性离子协同促进施万细胞的迁移和分泌,促进神经突生长,并有利于神经支配的骨再生。在感染性颅骨缺损模型中,GelMA-BP@Mg 水凝胶表现出高效的抗菌活性,并促进了骨和 CGRP 神经纤维的再生。光疗导电水凝胶为感染性骨缺损修复提供了一种基于骨骼相关神经支配的新策略。