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Increased yield and selected properties of bacterial cellulose exposed to different modes of a rotating magnetic field

机译:暴露于旋转磁场不同模式下的细菌纤维素的产量和选定特性的提高

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摘要

Rotating magnetic field (RMF) is an interesting alternative to conventional bacterial cellulose (BC) production methods. The BC synthesis processes may be affected by RMF, which facilitates the transfer of oxygen and nutrients from the media to the microbial cells. RMF may also directly influence the various physical and chemical properties of BC. The main aim of the present study was to evaluate the impact of the RMF on the BC in regard to its yield and material properties. The correlation between the efficiency of polymer production and the different time of exposure to the RMF was also analyzed to determine the conditions of lower energy consumption during the cellulose formation process. It was found that the Gluconacetobacter xylinus cultures exposed to the RMF for a half of the time of the entire cellulose production process (72 h), considering the results obtained in controls, synthesized BC more effectively than bacteria continuously exposed to the RMF for 144 h. Furthermore, the application of the RMF, regardless of the exposure mode, did not negatively affect the polymer material properties. It was concluded that the use of the RMF may provide a novel technique for altering cellulose biogenesis and may be used in multiple biotechnological applications.
机译:旋转磁场(RMF)是传统细菌纤维素(BC)生产方法的一种有趣替代方法。 BC合成过程可能受到RMF的影响,RMF有助于氧气和营养物从培养基向微生物细胞的转移。 RMF还可能直接影响BC的各种物理和化学性质。本研究的主要目的是就其产量和材料性能评估RMF对BC的影响。还分析了聚合物生产效率与暴露于RMF的不同时间之间的相关性,以确定纤维素形成过程中较低能耗的条件。发现在整个纤维素生产过程的一半时间(72小时)中,暴露于RMF的木糖葡糖杆菌培养物(考虑到对照中获得的结果)比连续暴露于RMF 144小时的细菌更有效地合成了BC。 。此外,无论暴露模式如何,RMF的施加均不会对聚合物材料的性能产生负面影响。结论是,RMF的使用可以提供改变纤维素生物发生的新颖技术,并且可以用于多种生物技术应用中。

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