Laboratory of RNA Biology and Biotechnology, Centre for Integrative Biology (CIBIO), University of Trento, via delle Regole 101, 38123, Trento, Italy.
Cytotechnology. 2014 Aug;66(4):543-53. doi: 10.1007/s10616-013-9608-9. Epub 2013 Jul 12.
A wide variety of mammalian cell types is used in gene transfection studies. Establishing transfection methods that enable highly efficient DNA uptake has become increasingly important. PC12 is an established rat pheochromocytoma cell line, which responds to exposure to NGF with cessation of growth, expression of cytoplasmic processes, and differentiation into cells resembling sympathetic neurons. Although PC12 cells represent an important model system to study a variety of neuronal functions, they proved relatively difficult to transfect. We have compared the efficiency of three different chemical transfection reagents (Lipofectamine 2000, Lipofectamine LTX and TransIT-LT1) and of two electroporation systems (Neon and Gene Pulser Xcell) in transiently transfecting undifferentiated PC12 cells. By comparing efficiencies from replicate experiments we proved electroporation (in particular Neon) to be the method of choice. By optimizing different parameters (voltage, pulse width and number of pulses) we reached high efficiency of transfection (90 %) and viability (99 %). We also demonstrated that, upon electroporation, cells are not altered by the transfection and maintain their ability to differentiate.
多种哺乳动物细胞类型被用于基因转染研究。建立能够实现高效 DNA 摄取的转染方法变得越来越重要。PC12 是一种已建立的大鼠嗜铬细胞瘤细胞系,它在暴露于 NGF 时会停止生长、表达细胞质过程,并分化为类似于交感神经元的细胞。虽然 PC12 细胞是研究各种神经元功能的重要模型系统,但它们被证明相对难以转染。我们比较了三种不同的化学转染试剂(Lipofectamine 2000、Lipofectamine LTX 和 TransIT-LT1)和两种电穿孔系统(Neon 和 Gene Pulser Xcell)在瞬时转染未分化 PC12 细胞中的效率。通过比较重复实验的效率,我们证明电穿孔(特别是 Neon)是首选方法。通过优化不同的参数(电压、脉冲宽度和脉冲数),我们达到了高转染效率(90%)和高细胞活力(99%)。我们还证明,在电穿孔后,细胞不会因转染而改变,并保持其分化能力。