Effects and interactions of metal oxides in microparticle‐enhanced cultivation of filamentous microorganisms

微粒 微生物 纳米技术 金属 化学 生产力 化学工程 生物物理学 材料科学 环境化学 生物 细菌 有机化学 工程类 宏观经济学 经济 遗传学
作者
Andreas Reiner Laible,Anna Dinius,Marcel Schrader,Rainer Krull,Arno Kwade,Heiko Briesen,Stefan Schmideder
出处
期刊:Engineering in Life Sciences [Wiley]
卷期号:22 (12): 725-743 被引量:23
标识
DOI:10.1002/elsc.202100075
摘要

Filamentous microorganisms are used as molecular factories in industrial biotechnology. In 2007, a new approach to improve productivity in submerged cultivation was introduced: microparticle-enhanced cultivation (MPEC). Since then, numerous studies have investigated the influence of microparticles on the cultivation. Most studies considered MPEC a morphology engineering approach, in which altered morphology results in increased productivity. But sometimes similar morphological changes lead to decreased productivity, suggesting that this hypothesis is not a sufficient explanation for the effects of microparticles. Effects of surface chemistry on particles were paid little attention, as particles were often considered chemically-inert and bioinert. However, metal oxide particles strongly interact with their environment. This review links morphological, physical, and chemical properties of microparticles with effects on culture broth, filamentous morphology, and molecular biology. More precisely, surface chemistry effects of metal oxide particles lead to ion leaching, adsorption of enzymes, and generation of reactive oxygen species. Therefore, microparticles interfere with gene regulation, metabolism, and activity of enzymes. To enhance the understanding of microparticle-based morphology engineering, further interactions between particles and cells are elaborated. The presented description of phenomena occurring in MPEC eases the targeted choice of microparticles, and thus, contributes to improving the productivity of microbial cultivation technology.

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