Azan Antoine, Gailliègue Florian, Mir Lluis M, Breton Marie
Vectorology and Anticancer Therapies, UMR8203, Univ. Paris-Sud, CNRS, Gustave Roussy, Université Paris-Saclay, Villejuif, F-94805, France.
Adv Anat Embryol Cell Biol. 2017;227:59-71. doi: 10.1007/978-3-319-56895-9_4.
The transport of substances across the cell membrane is complex because the main physiological role of the membrane is the control of the substances that would enter or exit the cells. Life would not be possible without this control. Cell electropulsation corresponds to the delivery of electric pulses to the cells and comprises cell electroporation and cell electropermeabilization. Cell electropulsation allows for the transport of non-permeant molecules across the membrane, bypassing the physiological limitations. In this chapter we discuss the changes occurring in the cell membrane during electroporation or electropermeabilization as they allow to understand which molecules can be transported as well as when and how their transport can occur. Electrophoretic or diffusive transports across the cell membrane can be distinguished. This understanding has a clear impact on the choice of the electrical parameters to be applied to the cells as well as on other aspects of the experimental protocols that have to be set to load the cells with non-permeant molecules.
物质跨细胞膜的运输过程很复杂,因为细胞膜的主要生理作用是控制物质进出细胞。没有这种控制,生命将无法存在。细胞电脉冲是指将电脉冲传递给细胞,包括细胞电穿孔和细胞电通透化。细胞电脉冲使得非渗透性分子能够绕过生理限制穿过细胞膜。在本章中,我们将讨论电穿孔或电通透化过程中细胞膜发生的变化,因为这些变化有助于我们理解哪些分子能够被运输,以及它们何时以及如何进行运输。可以区分跨细胞膜的电泳运输和扩散运输。这种理解对于选择施加到细胞上的电参数以及设置用于用非渗透性分子加载细胞的实验方案的其他方面都有明显的影响。