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通过蓝藻代谢与膜过滤相结合实现生物产品的分离:促进蓝藻的工业应用

Separation of Bioproducts through the Integration of Cyanobacterial Metabolism and Membrane Filtration: Facilitating Cyanobacteria's Industrial Application.

作者信息

Hao Fei, Li Xinyi, Wang Jiameng, Li Ruoyue, Zou Liyan, Wang Kai, Chen Fuqing, Shi Feixiong, Yang Hui, Wang Wen, Tian Miao

机构信息

School of Ecology and Environment, Northwestern Polytechnical University, Xi'an 710072, China.

Center of Special Environmental Biomechanics & Biomedical Engineering, School of Life Sciences, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Membranes (Basel). 2022 Sep 30;12(10):963. doi: 10.3390/membranes12100963.

Abstract

In this work, we propose the development of an efficient, economical, automated, and sustainable method for separating bioproducts from culture medium via the integration of a sucrose-secreting cyanobacteria production process and pressure-driven membrane filtration technology. Firstly, we constructed sucrose-secreting cyanobacteria with a sucrose yield of 600-700 mg/L sucrose after 7 days of salt stress, and the produced sucrose could be fully separated from the cyanobacteria cultures through an efficient and automated membrane filtration process. To determine whether this new method is also economical and sustainable, the relationship between membrane species, operating pressure, and the growth status of four cyanobacterial species was systematically investigated. The results revealed that all four cyanobacterial species could continue to grow after UF filtration. The field emission scanning electron microscopy and confocal laser scanning microscopy results indicate that the cyanobacteria did not cause severe destruction to the membrane surface structure. The good cell viability and intact membrane surface observed after filtration indicated that this innovative cyanobacteria-membrane system is economical and sustainable. This work pioneered the use of membrane separation to achieve the in situ separation of cyanobacterial culture and target products, laying the foundation for the industrialization of cyanobacterial bioproducts.

摘要

在这项工作中,我们提出开发一种高效、经济、自动化且可持续的方法,通过整合分泌蔗糖的蓝藻生产过程和压力驱动膜过滤技术,从培养基中分离生物产品。首先,我们构建了在盐胁迫7天后蔗糖产量为600 - 700 mg/L的分泌蔗糖的蓝藻,并且通过高效且自动化的膜过滤过程可以将产生的蔗糖与蓝藻培养物完全分离。为了确定这种新方法是否也经济且可持续,系统地研究了膜种类、操作压力与四种蓝藻物种生长状况之间的关系。结果表明,所有四种蓝藻物种在超滤过滤后都能继续生长。场发射扫描电子显微镜和共聚焦激光扫描显微镜结果表明,蓝藻对膜表面结构没有造成严重破坏。过滤后观察到的良好细胞活力和完整的膜表面表明,这种创新的蓝藻 - 膜系统是经济且可持续的。这项工作开创了利用膜分离实现蓝藻培养物和目标产物原位分离的先河,为蓝藻生物产品的工业化奠定了基础。

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