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Reversibility of membrane permeabilization upon pulsed electric field treatment in Lactobacillus plantarum WCFS1

机译:乳酸杆菌WCFS1脉冲电场处理对膜渗透的可逆性

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Pulsed electric field (PEF) treatment, or electroporation, can be used to load molecules into cells. The permeabilizing effect of the PEF treatment on the cellular membrane can be either reversible or irreversible depending on the severity of the PEF treatment conditions. The influence of PEF on the reversibility of membrane permeabilization in Lactobacillus plantarum WCFS1 by two different fluorescent staining methods was investigated in this study. Whereas staining with propidium iodide (PI) before and after PEF treatment indicated small reversible permeabilized fractions of maximum 14%, the use of a double staining method with PI and SYTOX Green suggested larger reversible permeabilized fractions up to 40% of the population. This difference shows that the choice for a fluorescent staining method affects the conclusions drawn regarding reversibility of membrane permeabilization. Additionally, the effect of PEF treatment conditions on membrane integrity was compared, indicating a relation between critical electric field strength, cell size and membrane permeabilization. Overall this study showed the possibilities and limitations of fluorescent membrane integrity staining methods for PEF studies.
机译:脉冲电场(PEF)处理或电穿孔可用于将分子载成细胞。根据PEF治疗条件的严重程度,PEF处理对细胞膜对细胞膜的渗透效应可以是可逆的或不可逆的。本研究研究了PEF对乳酸杆菌WCFS1中膜渗透膜透化的可逆性对两种不同荧光染色方法的影响。虽然PEF处理前后用碘化丙锭(PI)染色,但PEF处理中的小可逆渗透级数最高为14%,用PI和Sytox Green的双染色方法的使用表明较大的可逆渗透级数高达40%的群体。这种差异表明,荧光染色方法的选择会影响关于膜透析化的可逆性的结论。另外,比较PEF处理条件对膜完整性的影响,表明临界电场强度,细胞尺寸和膜透化之间的关系。总体而言,该研究表明了PEF研究的荧光膜完整性染色方法的可能性和局限性。

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