Vecchiatini R, Penolazzi L, Lambertini E, Angelozzi M, Morganti C, Mazzitelli S, Trombelli L, Nastruzzi C, Piva R
Department of Biomedical and Specialty Surgical Sciences, Ferrara University, Ferrara, Italy.
Department of Life Sciences and Biotechnology, Ferrara University, Ferrara, Italy.
J Periodontal Res. 2015 Aug;50(4):544-53. doi: 10.1111/jre.12225. Epub 2014 Sep 23.
Bioreactors are devices that efficiently create an environment that enables cell cultures to grow in a three-dimensional (3D) context mimicking in vivo conditions. In this study, we investigate the effect of dynamic fluid flow on the osteogenic potential of human mesenchymal stem cells obtained from periodontal ligament and entrapped in alginate microbeads.
After proper immunophenotyping, cells were encapsulated in barium alginate, cultured in 3D static or 3D dynamic conditions represented by a bioreactor system. Calcein-AM/propidium iodide staining was used to assess cellular viability. Quantitative real-time polymerase chain reaction was used to analyze the expression of osteogenic markers (Runx2 and COL1). Alizarin Red S staining and the Fourier transform infrared spectroscopy were used to assess mineral matrix deposition.
Optimal encapsulation procedure, in terms of polymer pumping rate, distance from droplet generator to the gelling bath and atomizing airflow was assessed. Cell viability was not affected by encapsulation in alginate microbeads. Bioreactor cell exposure was effective in anticipating osteogenic differentiation and improving mineral matrix deposition.
For the first time human mesenchymal stem cells obtained from periodontal ligaments encapsulated in alginate microbeads were cultured in a bioreactor system. This combination could represent a promising strategy to create a cell-based smart system with enhanced osteogenic potential useful for many different dental applications.
生物反应器是能够有效营造一种环境的装置,该环境能使细胞培养物在模拟体内条件的三维(3D)环境中生长。在本研究中,我们调查了动态流体流动对从牙周韧带获取并包埋于藻酸盐微珠中的人间充质干细胞成骨潜能的影响。
在进行适当的免疫表型分析后,将细胞封装于藻酸钡中,在由生物反应器系统代表的3D静态或3D动态条件下培养。使用钙黄绿素-AM/碘化丙啶染色评估细胞活力。采用定量实时聚合酶链反应分析成骨标志物(Runx2和COL1)的表达。使用茜素红S染色和傅里叶变换红外光谱评估矿物质基质沉积。
评估了在聚合物泵送速率、从液滴发生器到凝胶浴的距离以及雾化气流方面的最佳封装程序。细胞活力不受藻酸盐微珠封装的影响。生物反应器细胞暴露可有效促进成骨分化并改善矿物质基质沉积。
首次将包埋于藻酸盐微珠中的从牙周韧带获取的人间充质干细胞在生物反应器系统中培养。这种组合可能代表一种有前景的策略,以创建具有增强成骨潜能的基于细胞的智能系统,可用于许多不同的牙科应用。