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Recent biotechnological developments of electropulsation A prospective review

机译:电脉冲的最新生物技术发展前景展望

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During the last 25 years, basic research has improved our knowledge on the molecular mechanisms triggered at the membrane level by electric pulses. Applied aspects may now be used under safe conditions. Electropulsation is known as a very efficient tool for obtaining gene transfer in many species to produce genetically modified organisms (GMO). This is routinely used for industrial purposes to transfer exogenous activities in bacteria, yeasts and plants. The method is simple and of a low cost. But electropulsation is not limited to this application for biotechnological purposes. It is known that the field-associated membrane alterations can be irreversible. The pulsed species cannot recover after the treatment. Their viability is strongly affected. This appears as a very promising technology for the eradication of pathogenic microorganisms. Recent developments are proposed for sterilization purposes. New flow technologies of field generation allow the treatment of large volumes of solution. When high flow rates are used, microorganisms are submitted both to a hydromechanical and to an electrical stress. The synergy of the two effects may be present when suitable pulsing conditions are chosen. Several examples for the treatment of domestic water and in the food industry are described. Walled microorganisms are affected not only at the membrane level. We observed that alternations are present on the cell wall. A very promising technology is the associated controlled leakage of the cytoplasmic soluble proteins. Large dimeric proteins such as β-galactosidases can be extracted at a high yield. High volumes can be treated by using a flow process. Extraction of proteins is obtained with many systems including mammalian cells.
机译:在过去的25年中,基础研究提高了我们对电脉冲在膜水平触发的分子机理的认识。现在可以在安全条件下使用应用的方面。电脉冲是一种非常有效的工具,可用于在许多物种中获得基因转移以生产转基因生物(GMO)。这通常用于工业目的,以转移细菌,酵母和植物中的外源活性。该方法简单且成本低。但是电脉冲不限于出于生物技术目的的该应用。众所周知,与场相关的膜变化可能是不可逆的。处理后,脉冲物质无法恢复。它们的生存能力受到严重影响。这似乎是消除病原微生物的非常有前途的技术。提出了用于灭菌目的的最新发展。现场生成的新流程技术允许处理大量溶液。当使用高流速时,微生物既要承受水力机械作用,又要承受电应力作用。当选择合适的脉冲条件时,可能存在两种效果的协同作用。描述了用于处理生活用水和食品工业的几个示例。壁微生物不仅在膜水平受到影响。我们观察到细胞壁上存在交替。一项非常有前途的技术是细胞质可溶性蛋白的相关控制泄漏。可以以高收率提取大的二聚体蛋白质,例如β-半乳糖苷酶。大流量可以通过使用流处理来处理。蛋白质的提取可通过包括哺乳动物细胞在内的许多系统获得。

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