Center for Advanced Technology, Adam Mickiewicz University, Poznan, Poland.
Faculty of Chemistry, Adam Mickiewicz University, Poznan, Poland.
Sci Rep. 2023 Jan 12;13(1):646. doi: 10.1038/s41598-023-27901-z.
Articular cartilage and meniscus injuries are prevalent disorders with insufficient regeneration responses offered by available treatment methods. In this regard, 3D bioprinting has emerged as one of the most promising new technologies, offering novel treatment options. Additionally, the latest achievements from the fields of biomaterials and tissue engineering research identified constituents facilitating the creation of biocompatible scaffolds. In this study, we looked closer at hyaluronic acid and multi-walled carbon nanotubes as bioink additives. Firstly, we assessed the minimal concentrations that stimulate cell viability, and decrease reactive oxygen species and apoptosis levels in 2D cell cultures of normal human knee articular chondrocytes (NHAC) and human adipose-derived mesenchymal stem cells (hMSC-AT). In this regard, 0.25 mg/ml of hyaluronic acid and 0.0625 mg/ml of carbon nanotubes were selected as the most optimal concentrations. In addition, we investigated the protective influence of 2-phospho-L-ascorbic acid in samples with carbon nanotubes. Tests conducted on 3D bioprinted constructs revealed that only a combination of components positively impacted cell viability throughout the whole experiment. Gene expression analysis of COL1A1, COL6A1, HIF1A, COMP, RUNX2, and POU5F1 showed significant changes in the expression of all analyzed genes with a progressive overall loss of transcriptional activity in most of them.
关节软骨和半月板损伤是常见的疾病,现有的治疗方法再生反应不足。在这方面,3D 生物打印技术已经成为最有前途的新技术之一,提供了新的治疗选择。此外,生物材料和组织工程研究领域的最新成果确定了促进生物相容性支架形成的成分。在本研究中,我们更深入地研究了透明质酸和多壁碳纳米管作为生物墨水添加剂。首先,我们评估了最小浓度,以刺激细胞活力,并降低正常人类膝关节关节软骨细胞(NHAC)和人脂肪间充质干细胞(hMSC-AT)的 2D 细胞培养中的活性氧和细胞凋亡水平。在这方面,选择 0.25mg/ml 的透明质酸和 0.0625mg/ml 的碳纳米管作为最适浓度。此外,我们研究了在含有碳纳米管的样品中 2-磷酸-L-抗坏血酸的保护作用。对 3D 生物打印构建体进行的测试表明,只有组合成分才能在整个实验过程中对细胞活力产生积极影响。COL1A1、COL6A1、HIF1A、COMP、RUNX2 和 POU5F1 的基因表达分析显示,所有分析基因的表达都发生了显著变化,其中大多数基因的转录活性逐渐丧失。