Liu Liyuan, Liu Haixia, Huang Xiaowen, Liu Xiaoli, Zheng Chengyun
Department of Hematology, The Second Hospital, Cheeloo College of Medicine, Shandong University, Jinan 250033, China.
State Key Laboratory of Biobased Material and Green Papermaking, Department of Bioengineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250300, China.
Micromachines (Basel). 2022 Sep 30;13(10):1645. doi: 10.3390/mi13101645.
Cell culture is an important life science technology. Compared with the traditional two-dimensional cell culture, three-dimensional cell culture can simulate the natural environment and structure specificity of cell growth in vivo. As such, it has become a research hotspot. The existing three-dimensional cell culture techniques include the hanging drop method, spinner flask method, etc., making it difficult to ensure uniform morphology of the obtained cell spheroids while performing high-throughput. Here, we report a method for amplifying cell spheroids with the advantages of quickly enlarging the culture scale and obtaining cell spheroids with uniform morphology and a survival rate of over 95%. Technically, it is easy to operate and convenient to change substances. These results indicate that this method has the potential to become a promising approach for cell-cell, cell-stroma, cell-organ mutual interaction research, tissue engineering, and anti-cancer drug screening.
细胞培养是一项重要的生命科学技术。与传统的二维细胞培养相比,三维细胞培养能够模拟细胞在体内生长的自然环境和结构特异性。因此,它已成为一个研究热点。现有的三维细胞培养技术包括悬滴法、转瓶法等,在进行高通量操作时难以确保所获得的细胞球形体具有均匀的形态。在此,我们报道一种扩增细胞球形体的方法,其优点是能快速扩大培养规模,并获得形态均匀且存活率超过95%的细胞球形体。在技术上,该方法易于操作且更换物质方便。这些结果表明,该方法有潜力成为用于细胞 - 细胞、细胞 - 基质、细胞 - 器官相互作用研究、组织工程和抗癌药物筛选的一种有前景的方法。