Zhang Yuqi, Lu Minxun, Hu Xin, Li Zhuangzhuang, Wang Jie, Gong Taojun, Zhou Yong, Luo Li, Min Li, Tu Chongqi
Department of Orthopedics, Orthopedic Research Institute, West China Hospital, Sichuan University, Chengdu, Sichuan, China.
Model Worker and Craftsman Talent Innovation Workshop of Sichuan province, Chengdu, Sichuan, China.
Front Bioeng Biotechnol. 2023 Jan 12;10:1098973. doi: 10.3389/fbioe.2022.1098973. eCollection 2022.
Tumorous bone defect reconstructions of the proximal humerus with joint sparing is a challenge. Numerous reconstruction methods have been proposed but the proximal residual humerus is commonly sacrificed because of its extremely short length. To preserve the proximal humerus and improve clinical outcomes, we designed a three-dimensional (3D) printed uncemented prosthesis with a porous structure to treat tumorous bone defects of the proximal humerus. Our analysis included seven patients treated between March 2018 and July 2019. A 3D model was established, and related data were obtained, including the diameter of the humeral head, the resection length, and the residual length. A prosthesis was designed and fabricated based on these data. Functional and oncologic outcomes were recorded, and complications and osseointegration were evaluated. The mean age of the patients was 20.3 years, and the median follow-up period was 26 months. The lengths of the residual proximal humerus were 17.9 mm on average. All the patients had preserved humeral heads and most of the rotator cuff was intact. The average postoperative range of motion (ROM) of the affected shoulder was 83.8°; flexion was 82.5°, extension was 43.8°, and adduction was 16.3°. The average Musculoskeletal Tumor Society score (MSTS) was 94.3%. Good osseointegration was observed on the interface between the bone and prosthesis. A 3D printed porous prosthesis with cone-like structures successfully achieved joint-sparing reconstruction of proximal humeral tumorous defects with satisfying functional outcomes. The preservation of the rotator cuff and humeral head plays an essential role in the function of the shoulder joint.
保留关节的肱骨近端肿瘤性骨缺损重建是一项挑战。尽管已经提出了许多重建方法,但由于近端肱骨残余长度极短,通常会将其牺牲。为了保留近端肱骨并改善临床效果,我们设计了一种具有多孔结构的三维(3D)打印非骨水泥假体,用于治疗肱骨近端肿瘤性骨缺损。我们的分析纳入了2018年3月至2019年7月间治疗的7例患者。建立了3D模型并获取了相关数据,包括肱骨头直径、切除长度和残余长度。基于这些数据设计并制作了假体。记录功能和肿瘤学结果,并评估并发症和骨整合情况。患者的平均年龄为20.3岁,中位随访期为26个月。近端肱骨残余长度平均为17.9毫米。所有患者的肱骨头均得以保留,且大部分肩袖完整。患侧肩部术后平均活动范围(ROM)为83.8°;屈曲为82.5°,伸展为43.8°,内收为16.3°。平均肌肉骨骼肿瘤学会(MSTS)评分为94.3%。在骨与假体的界面处观察到良好的骨整合。具有锥形结构的3D打印多孔假体成功实现了肱骨近端肿瘤性缺损的保留关节重建,功能结果令人满意。保留肩袖和肱骨头对肩关节功能起着至关重要的作用。