Wang Minqi, Li Hanjun, Yang Yiqi, Yuan Kai, Zhou Feng, Liu Haibei, Zhou Qinghui, Yang Shengbing, Tang Tingting
Shanghai Key Laboratory of Orthopaedic Implants, Department of Orthopaedic Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University, School of Medicine, Shanghai, 200011, China.
Shanghai Graphic Design Information Co. Ltd, Shanghai, 200011, China.
Bioact Mater. 2020 Nov 10;6(5):1318-1329. doi: 10.1016/j.bioactmat.2020.10.022. eCollection 2021 May.
Large bone defects face a high risk of pathogen exposure due to open wounds, which leads to high infection rates and delayed bone union. To promote successful repair of infectious bone defects, fabrication of a scaffold with dual functions of osteo-induction and bacterial inhibition is required. This study describes creation of an engineered progenitor cell line (C3H10T1/2) capable of doxycycline (DOX)-mediated release of bone morphogenetic protein-2 (BMP2). Three-dimensional bioprinting technology enabled creation of scaffolds, comprising polycaprolactone/mesoporous bioactive glass/DOX and bioink, containing these engineered cells. and experiments confirmed that the scaffold could actively secrete BMP2 to significantly promote osteoblast differentiation and induce ectopic bone formation. Additionally, the scaffold exhibited broad-spectrum antibacterial capacity, thereby ensuring the survival of embedded engineered cells when facing high risk of infection. These findings demonstrated the efficacy of this bioprinted scaffold to release BMP2 in a controlled manner and prevent the occurrence of infection; thus, showing its potential for repairing infectious bone defects.
由于开放性伤口,大的骨缺损面临病原体暴露的高风险,这导致高感染率和骨愈合延迟。为了促进感染性骨缺损的成功修复,需要制造具有骨诱导和细菌抑制双重功能的支架。本研究描述了一种工程祖细胞系(C3H10T1/2)的创建,该细胞系能够通过强力霉素(DOX)介导释放骨形态发生蛋白-2(BMP2)。三维生物打印技术能够创建包含聚己内酯/介孔生物活性玻璃/DOX和含有这些工程细胞的生物墨水的支架。实验证实,该支架能够主动分泌BMP2,显著促进成骨细胞分化并诱导异位骨形成。此外,该支架具有广谱抗菌能力,从而在面临高感染风险时确保嵌入的工程细胞的存活。这些发现证明了这种生物打印支架以可控方式释放BMP2并预防感染发生的有效性;因此,显示了其修复感染性骨缺损的潜力。