Lal Neha, Seifan Mostafa, Ebrahiminezhad Alireza, Berenjian Aydin
School of Engineering, The University of Waikato, Hamilton 3240, New Zealand.
Biotechnology Research Center, Shiraz University of Medical Sciences, Shiraz P.O. Box 71348-14336, Iran.
Nanomaterials (Basel). 2023 Jun 8;13(12):1825. doi: 10.3390/nano13121825.
Menaquinone-7 (MK-7) is the most therapeutically valuable K vitamin owing to its excellent bioavailability. MK-7 occurs as geometric isomers, and only all- MK-7 is bioactive. The fermentation-based synthesis of MK-7 entails various challenges, primarily the low fermentation yield and numerous downstream processing steps. This raises the cost of production and translates to an expensive final product that is not widely accessible. Iron oxide nanoparticles (IONPs) can potentially overcome these obstacles due to their ability to enhance fermentation productivity and enable process intensification. Nevertheless, utilisation of IONPs in this regard is only beneficial if the biologically active isomer is achieved in the greatest proportion, the investigation of which constituted the objective of this study. IONPs (FeO) with an average size of 11 nm were synthesised and characterised using different analytical techniques, and their effect on isomer production and bacterial growth was assessed. The optimum IONP concentration (300 μg/mL) improved the process output and resulted in a 1.6-fold increase in the all- isomer yield compared to the control. This investigation was the first to evaluate the role of IONPs in the synthesis of MK-7 isomers, and its outcomes will assist the development of an efficient fermentation system that favours the production of bioactive MK-7.
甲萘醌-7(MK-7)是最具治疗价值的维生素K,因其具有出色的生物利用度。MK-7以几何异构体形式存在,只有全反式MK-7具有生物活性。基于发酵的MK-7合成面临各种挑战,主要是发酵产量低和下游加工步骤众多。这增加了生产成本,导致最终产品价格昂贵,难以广泛获取。氧化铁纳米颗粒(IONPs)因其能够提高发酵生产力并实现工艺强化,有可能克服这些障碍。然而,只有在最大比例地获得生物活性异构体的情况下,IONPs在这方面的应用才是有益的,本研究的目的就是对此进行调查。合成了平均粒径为11 nm的IONPs(FeO),并使用不同分析技术对其进行了表征,评估了它们对异构体产量和细菌生长的影响。与对照相比,最佳IONP浓度(300μg/mL)提高了工艺产量,全反式异构体产量增加了1.6倍。本研究首次评估了IONPs在MK-7异构体合成中的作用,其结果将有助于开发有利于生物活性MK-7生产的高效发酵系统。