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使用不同脉冲形状的电穿孔对葡萄牙念珠菌的生长抑制和膜通透性研究

Growth Inhibition and Membrane Permeabilization of Candida lusitaniae Using Varied Pulse Shape Electroporation.

作者信息

Novickij V, Grainys A, Lastauskienė E, Kananavičiūtė R, Pamedytytė D, Zinkevičienė A, Kalėdienė L, Novickij J, Paškevičius A, Švedienė J

机构信息

High Magnetic Field Institute, VGTU, Naugarduko 41, LT-03227 Vilnius, Lithuania.

Department of Biotechnology and Microbiology, VU, M. Čiurlionio 21, LT-03101 Vilnius, Lithuania.

出版信息

Biomed Res Int. 2015;2015:457896. doi: 10.1155/2015/457896. Epub 2015 Dec 1.

Abstract

Candida lusitaniae is an opportunistic yeast pathogen, which can readily develop resistance to antifungal compounds and result in a complex long-term treatment. The efficient treatment is difficult since structure and metabolic properties of the fungal cells are similar to those of eukaryotic host. One of the potential methods to improve the inhibition rate or the cell permeability to inhibitors is the application of electroporation. In this work we investigated the dynamics of the growth inhibition and membrane permeabilization of C. lusitaniae by utilizing the various pulse shape and duration electric field pulses. Our results indicated that single electroporation procedure using 8 kV/cm electric field may result in up to 51 ± 5% inhibition rate. Also it has been experimentally shown that the electroporation pulse shape may influence the inhibitory effect; however, the amplitude of the electric field and the pulse energy remain the most important parameters for definition of the treatment outcome. The dynamics of the cell membrane permeabilization in the 2-8 kV/cm electric field were overviewed.

摘要

葡萄牙念珠菌是一种机会性酵母病原体,它很容易对抗真菌化合物产生耐药性,从而导致复杂的长期治疗。由于真菌细胞的结构和代谢特性与真核宿主相似,因此难以进行有效的治疗。提高抑制率或细胞对抑制剂的通透性的一种潜在方法是应用电穿孔。在这项工作中,我们利用各种脉冲形状和持续时间的电场脉冲,研究了葡萄牙念珠菌生长抑制和膜通透性的动态变化。我们的结果表明,使用8 kV/cm电场的单次电穿孔程序可能导致高达51±5%的抑制率。实验还表明,电穿孔脉冲形状可能会影响抑制效果;然而,电场强度和脉冲能量仍然是定义治疗结果的最重要参数。概述了2-8 kV/cm电场中细胞膜通透性的动态变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc7a/4678064/227544fce5cd/BMRI2015-457896.001.jpg

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