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Synthesis and Application of Amine Functionalized Iron Oxide Nanoparticles on Menaquinone-7 Fermentation: A Step towards Process Intensification

机译:甲萘醌7发酵中胺功能化氧化铁纳米粒子的合成与应用:工艺强化的一步

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摘要

Industrial production of menaquione-7 by Bacillus subtilis natto is associated with major drawbacks. To address the current challenges in menaquione-7 fermentation, studying the effect of magnetic nanoparticles on the bacterial cells can open up a new domain for intensified menqainone-7 process. This article introduces the new concept of production and application of l-lysine coated iron oxide nanoparticles (l-Lys@IONs) as a novel tool for menaquinone-7 biosynthesis. l-Lys@IONs with the average size of 7 nm were successfully fabricated and were examined in a fermentation process of l-Lys@IONs decorated Bacillus subtilis natto. Based on the results, higher menaquinone-7 specific yield was observed for l-Lys@IONs decorated bacterial cells as compared to untreated bacteria. In addition, more than 92% removal efficacy was achieved by using integrated magnetic separation process. The present study demonstrates that l-Lys@IONs can be successfully applied during a fermentation of menaquinone-7 without any negative consequences on the culture conditions. This study provides a novel biotechnological application for IONs and their future role in bioprocess intensification.
机译:枯草芽孢杆菌纳豆芽孢杆菌的menaquione-7的工业生产与主要缺点有关。为了解决甲萘醌7发酵中的当前挑战,研究磁性纳米粒子对细菌细胞的作用可以为强化甲萘醌7的过程开辟新领域。本文介绍了生产和应用l-赖氨酸包覆的氧化铁纳米颗粒(l-Lys @ IONs)的新概念,将其作为Menaquinone-7生物合成的新工具。成功制备了平均大小为7 nm的l-Lys @ IONs,并在装饰有枯草芽孢杆菌的l-Lys @ IONs的发酵过程中进行了检查。根据该结果,与未处理的细菌相比,观察到1-Lys @ IONs修饰的细菌细胞具有更高的甲萘醌-7比产率。此外,通过使用集成的磁选工艺,去除效率超过92%。本研究表明,l-Lys @ IONs可以在Menaquinone-7发酵过程中成功应用,而对培养条件没有任何负面影响。这项研究为离子及其在生物过程强化中的未来作用提供了一种新颖的生物技术应用。

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