Lu Yajie, Chen Xiantao, Lu Xiao, Sun Changning, Li Minghui, Chen Guojing, Long Zuoyao, Gao Yuan, Zhang Haoqiang, Huang Mengquan, Ji Chuanlei, Fan Hongbin, Liu Dong, Hao Yuewen, Wang Hong, Zhang Leilei, Zhang Hongmei, Lu Jianxi, Wang Zhen, Li Jing
Department of Orthopedics, Xijing Hospital, Air Force Medical University, Xi'an, 710032, China.
Department of Clinical Oncology, Xijing Hospital, Air Force Medical University, Xi'an, 710032, China.
Bioact Mater. 2023 Jun 26;28:495-510. doi: 10.1016/j.bioactmat.2023.06.008. eCollection 2023 Oct.
A variety of techniques have been used for treating avascular necrosis of the femoral head (ANFH), but have frequently failed. In this study, we proposed a β-TCP system for the treatment of ANFH by boosting revascularization and bone regeneration. The angio-conductive properties and concurrent osteogenesis of the highly interconnected porous β-TCP scaffold were revealed and quantified through an model that simulated the ischemic environment of ANFH. Mechanical test and finite element analysis showed that the mechanical loss caused by tissue necrosis and surgery was immediately partially compensated after implantation, and the strength of the operated femoral head was adaptively increased and eventually returned to normal bone, along with continuous material degradation and bone regeneration. For translational application, we further conducted a multi-center open-label clinical trial to assess the efficacy of the β-TCP system in treating ANFH. Two hundred fourteen patients with 246 hips were enrolled for evaluation, and 82.1% of the operated hips survived at a 42.79-month median follow-up. The imaging results, hip function, and pain scores were dramatically improved compared to preoperative levels. ARCO stage Ⅱ disease outperformed stage Ⅲ in terms of clinical effectiveness. Thus, bio-adaptive reconstruction using the β-TCP system is a promising hip-preserving strategy for the treatment of ANFH.
已经使用了多种技术来治疗股骨头缺血性坏死(ANFH),但常常失败。在本研究中,我们提出了一种β-磷酸三钙(β-TCP)系统,通过促进血管再生和骨再生来治疗ANFH。通过模拟ANFH缺血环境的模型,揭示并量化了高度相互连通的多孔β-TCP支架的血管传导特性和同时发生的骨生成。力学测试和有限元分析表明,植入后由组织坏死和手术引起的力学损失立即得到部分补偿,随着材料的持续降解和骨再生,手术股骨头的强度适应性增加,最终恢复到正常骨强度。为了转化应用,我们进一步开展了一项多中心开放标签临床试验,以评估β-TCP系统治疗ANFH的疗效。纳入214例患者共246髋进行评估,在中位随访42.79个月时,82.1%的手术髋关节存活。与术前水平相比,影像学结果、髋关节功能和疼痛评分均有显著改善。在临床疗效方面,ARCOⅡ期疾病优于Ⅲ期。因此,使用β-TCP系统进行生物适应性重建是一种有前景的保留髋关节治疗ANFH的策略。