Department of Biosciences and Informatics, Faculty of Science and Technology, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama, Kanagawa, 223-8522, Japan.
Adv Sci (Weinh). 2022 Oct;9(30):e2203576. doi: 10.1002/advs.202203576. Epub 2022 Aug 26.
The levitation methodology, which enables us to operate a contactless reaction without a container, is likely to be a revolutionary technology in the fields of chemistry and biology to reduce the plastic waste in life science laboratories. Here, the authors show that plasmid DNA can be effectively transfected into animal cells in a floating droplet of culture medium levitated using ultrasonic standing waves. The data indicate that there is no significant damage to the plasmid and cells during the levitating transfection time, and the transgene expression efficiency and cellular uptake in the droplet are significantly higher than those in the conventional tube, with and without shaking. These results suggest the consolidation of the endocytic uptake pathway into macropinocytosis, indicating that ultrasonic levitation induced a change in cell characteristics. This study suggests that transfection methodology using ultrasonic levitation has the potential to advance the current experimental procedures in the field of cell engineering, in addition to presenting a revolutionary containerless reactor for sustainable technology.
悬浮方法使我们能够在没有容器的情况下进行非接触式反应,这可能是化学和生物学领域的一项革命性技术,可以减少生命科学实验室中的塑料废物。在这里,作者表明可以使用超声驻波将培养基悬浮在漂浮的液滴中,有效地将质粒 DNA 转染到动物细胞中。数据表明,在悬浮转染过程中,质粒和细胞没有明显损伤,并且液滴中的转基因表达效率和细胞摄取率明显高于传统管中的,无论是否摇晃。这些结果表明,内吞摄取途径被整合到巨胞饮中,表明超声悬浮诱导了细胞特征的变化。这项研究表明,使用超声悬浮的转染方法有可能除了为可持续技术提供无容器反应器之外,还可以推进细胞工程领域的当前实验程序。