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首页> 外文期刊>Journal of applied microbiology >Modification of bacterial structures by a low-temperature gas plasma and influence on packaging material
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Modification of bacterial structures by a low-temperature gas plasma and influence on packaging material

机译:低温气体等离子体对细菌结构的修饰及其对包装材料的影响

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摘要

AbstractAims: To investigate the effect of a cascaded dielectric barrier discharge (CDBD) treatment on the biological structure of a selected bacterium and on the properties of different polymer films.Methods and Results: Inactivation kinetics were measured using air as the process gas and using Bacillus atrophaeus spores and vegetative cells, which had been homogeneously distributed on a surface. The changes to the outer coats and the DNA of the endospores and cells after plasma treatment were determined using biomolecular and chemical methods. The experiments showed that damage to the DNA molecules and changes in the cell walls can be observed as a consequence of the CDBD treatment. Furthermore, the influence of the plasma treatment on the properties of various polymer films was investigated using a variety of test methods. Except the sealing strength where a slight decrease was observed (max. 20%), no negative changes of the material properties have occurred.Conclusions: CDBD treatment can affect the DNA of spores and cells, depending on the treatment time. At the same time, practically relevant inactivation rates on packaging materials were observed, without any significant changes to the material properties.Significance and Impact of the Study: Knowledge about CDBD mechanisms was acquired from a biological point of view, and the suitability of the method for treating polymer films was demonstrated.
机译:摘要目的:研究级联介质阻挡放电(CDBD)处理对选定细菌的生物学结构和不同聚合物膜性能的影响。方法和结果:以空气为工艺气体并使用芽孢杆菌(Bacillus)测定灭活动力学萎缩孢子和营养细胞,已经均匀地分布在表面上。使用生物分子和化学方法确定血浆处理后外被膜的变化以及内生孢子和细胞的DNA。实验表明,由于CDBD处理,可以观察到DNA分子的损伤和细胞壁的变化。此外,使用多种测试方法研究了等离子体处理对各种聚合物膜性能的影响。除了观察到的密封强度略有下降(最大20%)外,没有发生材料性能的负面变化。结论:CDBD处理会影响孢子和细胞的DNA,具体取决于处理时间。同时,观察到了包装材料上几乎相关的灭活率,而材料的特性没有任何显着变化。研究的意义和影响:从生物学的角度获得了关于CDBD机制的知识,以及该方法的适用性证明了用于处理聚合物膜的方法。

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