Yang Long, Kong Jianjun, Qiu Zhiye, Shang Tieliang, Chen Siyu, Zhao Rui, Raucci Maria Grazia, Yang Xiao, Wu Zhanyong
National Engineering Research Center for Biomaterials, Sichuan University, Chengdu 610064, China.
Department of Orthopaedics, Orthopaedic Hospital of Xingtai, Xingtai 054000, China.
Regen Biomater. 2020 Mar;7(2):181-193. doi: 10.1093/rb/rbz044. Epub 2019 Dec 2.
As a minimally invasive surgery, percutaneous cement discoplasty (PCD) is now contemplated to treat lumbar disc degeneration disease in elder population. Here, we investigated whether the osteogenic mineralized collagen (MC) modified polymethylmethacrylate (PMMA) cement could be a suitable material in PCD surgery. Injectability, hydrophilicity and mechanical properties of the MC-modified PMMA (PMMA-MC) was characterized. The introduction of MC did not change the application and setting time of PMMA and was easy to be handled in minimally invasive operation. Hydrophilicity of PMMA-MC was greatly improved and its elastic modulus was tailored to complement mechanical performance of bone under dynamic stress. Then, PCD surgery in a goat model with induced disc degeneration was performed with implantation of PMMA-MC or PMMA. Three months after implantation, micro-computed tomography analysis revealed a 36.4% higher circumferential contact index between PMMA-MC and bone, as compared to PMMA alone. Histological staining confirmed that the surface of PMMA-MC was in direct contact with new bone, while the PMMA was covered by fibrous tissue. The observed gathering of macrophages around the implant was suspected to be the cause of fibrous encapsulation. Therefore, the interactions of PMMA and PMMA-MC with macrophages were investigated We discovered that the addition of MC could hinder the proliferation and fusion of the macrophages. Moreover, expressions of fibroblast-stimulating growth factors, insulin-like growth factor, basic fibroblast growth factor and tumor necrosis factor-β were significantly down-regulated in the macrophages cocultured with PMMA-MC. Together, the promoted osteointegration and reduced fibrous tissue formation observed with PMMA-MC material makes it a promising candidate for PCD surgery.
作为一种微创手术,经皮水泥椎间盘成形术(PCD)目前被考虑用于治疗老年人群的腰椎间盘退变疾病。在此,我们研究了成骨矿化胶原(MC)改性的聚甲基丙烯酸甲酯(PMMA)骨水泥是否可能是PCD手术中的合适材料。对MC改性的PMMA(PMMA-MC)的可注射性、亲水性和力学性能进行了表征。MC的引入并未改变PMMA的应用和凝固时间,并且易于在微创手术中操作。PMMA-MC的亲水性得到了极大改善,其弹性模量经过调整以补充动态应力下骨的力学性能。然后,在诱导椎间盘退变的山羊模型中进行PCD手术,植入PMMA-MC或PMMA。植入三个月后,微计算机断层扫描分析显示,与单独使用PMMA相比,PMMA-MC与骨之间的周向接触指数高36.4%。组织学染色证实,PMMA-MC的表面与新骨直接接触,而PMMA被纤维组织覆盖。观察到植入物周围巨噬细胞的聚集被怀疑是纤维包裹的原因。因此,研究了PMMA和PMMA-MC与巨噬细胞的相互作用。我们发现添加MC可以阻碍巨噬细胞的增殖和融合。此外,在与PMMA-MC共培养的巨噬细胞中,成纤维细胞刺激生长因子、胰岛素样生长因子、碱性成纤维细胞生长因子和肿瘤坏死因子-β的表达显著下调。总之,PMMA-MC材料观察到的促进骨整合和减少纤维组织形成使其成为PCD手术的有希望的候选材料。