Zhou Zheng, Zhou Ao, Jalil Abduladheem Turki, Saleh Marwan Mahmood, Huang Chengjun
Department of Orthopaedic Surgery, Yangzhou Hongquan Hospital, Yangzhou, 225200, China.
Department of Bone and Soft Tissue Oncology, Cancer Hospital Affiliated to Chongqing University, Chongqing, 400020, China.
Bioprocess Biosyst Eng. 2023 Apr;46(4):577-588. doi: 10.1007/s00449-022-02843-4. Epub 2022 Dec 29.
The main objective of the current study is to fabricate a 3D scaffold using alginate hydrogel implemented with carbon nanoparticles (CNPs) as the filler. The SEM imaging revealed that the scaffold possesses a porous internal structure with interconnected pores. The swelling value of the scaffolds (more than 400%) provides a wet niche for bone cell proliferation and migration. The in vitro evaluations showed that the scaffolds were hemocompatible (with hemolysis induction lower than 5%) and cytocompatible (inducing significant proliferative effect (cell viability of 121 ± 4%, p < 0.05) for AlG/CNPs 10%). The in vivo studies showed that the implantation of the fabricated 3D nanocomposite scaffolds induced a bone-forming effect and mediated bone formation into the induced bone defect. In conclusion, these results implied that the fabricated NFC-integrated 3D scaffold exhibited promising characteristics beneficial for bone regeneration and can be applied as the bone tissue engineering scaffold.
本研究的主要目的是使用以碳纳米颗粒(CNPs)作为填充剂的海藻酸盐水凝胶制备一种三维支架。扫描电子显微镜成像显示,该支架具有相互连通的孔隙的多孔内部结构。支架的溶胀值(超过400%)为骨细胞增殖和迁移提供了一个湿润的微环境。体外评估表明,该支架具有血液相容性(溶血诱导率低于5%)和细胞相容性(对于10%的AlG/CNPs诱导出显著的增殖效应(细胞活力为121±4%,p<0.05))。体内研究表明,植入制备的三维纳米复合支架可诱导成骨效应,并介导骨形成进入诱导的骨缺损部位。总之,这些结果表明,制备的集成NFC的三维支架展现出有利于骨再生的有前景的特性,可作为骨组织工程支架应用。