Department of Pharmaceutical Sciences, University of Toronto, Toronto, ON, M5S 3M2, Canada.
Department of Cell and Systems Biology, University of Toronto, Toronto, ON, M5S 3G5, Canada.
Sci Rep. 2024 Feb 26;14(1):4631. doi: 10.1038/s41598-024-54463-5.
Of all methods exercised in modern molecular biology, modification of cellular properties through the introduction or removal of nucleic acids is one of the most fundamental. As such, several methods have arisen to promote this process; these include the condensation of nucleic acids with calcium, polyethylenimine or modified lipids, electroporation, viral production, biolistics, and microinjection. An ideal transfection method would be (1) low cost, (2) exhibit high levels of biological safety, (3) offer improved efficacy over existing methods, (4) lack requirements for ongoing consumables, (5) work efficiently at any scale, (6) work efficiently on cells that are difficult to transfect by other methods, and (7) be capable of utilizing the widest array of existing genetic resources to facilitate its utility in research, biotechnical and clinical settings. To address such issues, we describe here Pressure-jump-poration (PJP), a method using rapid depressurization to transfect even difficult to modify primary cell types such as embryonic stem cells. The results demonstrate that PJP can be used to introduce an array of genetic modifiers in a safe, sterile manner. Finally, PJP-induced transfection in primary versus transformed cells reveals a surprising dichotomy between these classes which may provide further insight into the process of cellular transformation.
在现代分子生物学中应用的所有方法中,通过引入或去除核酸来改变细胞特性是最基本的方法之一。因此,出现了几种促进这一过程的方法,包括核酸与钙、聚乙烯亚胺或改性脂质的凝聚、电穿孔、病毒生产、弹道和微注射。理想的转染方法将具有以下特点:(1)低成本,(2)具有高生物安全性,(3)在现有方法的基础上提高效率,(4)不需要持续的消耗品,(5)在任何规模上都能高效工作,(6)能有效地转染其他方法难以转染的细胞,(7)能够利用最广泛的现有遗传资源,使其在研究、生物技术和临床环境中得到应用。为了解决这些问题,我们在这里描述了压力跳跃穿孔(PJP),这是一种使用快速减压来转染即使是难以修饰的原代细胞类型(如胚胎干细胞)的方法。结果表明,PJP 可以安全、无菌地引入一系列遗传修饰物。最后,在原代细胞与转化细胞之间的 PJP 诱导转染揭示了这两类细胞之间令人惊讶的二分法,这可能为细胞转化过程提供进一步的见解。