Li Xiang, Li Di-Chen, Wang Lin, Lu Bing-Heng, Wang Zhen
State Key Lab for Manufacturing Systems Engineering, Xi'an Jiao Tong University, Xi'an 710049, China.
Sheng Wu Gong Cheng Xue Bao. 2005 Jul;21(4):579-83.
3D Scaffolds with controlled porous structure were designed and fabricated by utilizing CAD and rapid prototyping techniques. A flow perfusion bioreactor, which allowed exposure of the culture cells to low levels of mechanical stimulation by fluid flow-induced shear stress, was developed in our lab. The scaffolds were pre-designed and the negative images of the designs were used to build the molds on a stereolithography (SL) apparatus with epoxy resins. Calcium phosphate cement paste was cast into the molds. And after pyrolysis, the 3D scaffolds with controlled internal pore architectures were obtained. Rabbit osteoblasts were seeded in 3D porous scaffolds, cultured in the flow perfusion bioreactor with media flow rate set at 2 mL/min and 6-well plates. At 3, 7, and 14 days, scanning microscopic evaluation showed excellent growth on the surface of scaffolds and poor viability of cells within microchannels in static cultures. In flow perfusion bioreactor, there was greater cellularity throughout the scaffolds and abundant deposition of extracellular matrix. Cells were also seen throughout the internal microchannels of scaffolds. These results represent that better mass transport of oxygen and nutrient occurred in the flow perfusion bioreactor and cells distribution in 3D porous scaffolds was improved.
利用计算机辅助设计(CAD)和快速成型技术设计并制造了具有可控多孔结构的三维支架。我们实验室开发了一种流动灌注生物反应器,该反应器可使培养细胞通过流体流动诱导的剪切应力受到低水平的机械刺激。支架预先设计好,其设计的负图像用于在立体光刻(SL)设备上用环氧树脂制作模具。将磷酸钙水泥浆浇铸到模具中。经过热解后,获得了具有可控内部孔隙结构的三维支架。将兔成骨细胞接种到三维多孔支架中,在流动灌注生物反应器中培养,培养基流速设定为2毫升/分钟,并在6孔板中培养。在第3、7和14天,扫描显微镜评估显示支架表面细胞生长良好,而静态培养中微通道内细胞的活力较差。在流动灌注生物反应器中,整个支架内细胞密度更高,细胞外基质沉积丰富。在支架的内部微通道中也可见到细胞。这些结果表明,在流动灌注生物反应器中氧气和营养物质的传质更好,三维多孔支架中的细胞分布得到改善。