丝状真菌颗粒作为细胞固定化的多功能平台:迄今为止的发展和未来展望。

IF 4.3 2区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbial Cell Factories Pub Date : 2024-10-16 DOI:10.1186/s12934-024-02554-3
Minami Ogawa, Jaime Moreno-García, Tyler J Barzee
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引用次数: 0

摘要

众所周知,丝状真菌能高效生产具有工业意义的有价值分子,但尽管真菌生物质在生物技术领域有着丰富多样的应用机会,其应用领域的探索却相对较少。菌丝生物质的一个前景广阔的应用领域是作为固定动物、植物和微生物细胞等不同细胞类型的平台。丝状真菌生物质几乎无需处理,是一种可持续的生物材料,与其他可能是合成或经过大量加工的固定化支持物相比,它还可以保证食品安全。由于这些特点,真菌-细胞组合可根据目标应用进行定制,并可应用于从生物修复到生物医学等多个领域。为改善菌丝上的细胞负载而进行的优化工作,推动了应用科学和基础科学的发展,使人们了解了菌界之间和菌界内部的相互作用。本综述首次汇编了动物、酵母、微藻、细菌和植物细胞固定在丝状真菌支撑物上的技术现状,并展望了在强化发酵、食品和生物燃料生产以及废水处理中的应用。确定了进一步研究和开发的机会,包括阐明固定化机制和共培养动态的物理、化学和生物基础;扩大所研究的细胞-真菌组合;探索以前未考虑的应用;以及示范放大操作。结论是,利用丝状真菌的独特品质作为细胞支持,创造新型材料和产品以支持循环生物经济的潜力是存在的。
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Filamentous fungal pellets as versatile platforms for cell immobilization: developments to date and future perspectives.

Filamentous fungi are well-known for their efficiency in producing valuable molecules of industrial significance, but applications of fungal biomass remain relatively less explored despite its abundant and diverse opportunities in biotechnology. One promising application of mycelial biomass is as a platform to immobilize different cell types such as animal, plant, and microbial cells. Filamentous fungal biomass with little to no treatment is a sustainable biomaterial which can also be food safe compared to other immobilization supports which may otherwise be synthetic or heavily processed. Because of these features, the fungal-cell combination can be tailored towards the targeted application and be applied in a variety of fields from bioremediation to biomedicine. Optimization efforts to improve cell loading on the mycelium has led to advancements both in the applied and basic sciences to understand the inter- and intra-kingdom interactions. This comprehensive review compiles for the first time the current state of the art of the immobilization of animal, yeast, microalgae, bacteria, and plant cells in filamentous fungal supports and presents outlook of applications in intensified fermentations, food and biofuel production, and wastewater treatment. Opportunities for further research and development were identified to include elucidation of the physical, chemical, and biological bases of the immobilization mechanisms and co-culture dynamics; expansion of the cell-fungus combinations investigated; exploration of previously unconsidered applications; and demonstration of scaled-up operations. It is concluded that the potential exists to leverage the unique qualities of filamentous fungus as a cellular support in the creation of novel materials and products in support of the circular bioeconomy.

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来源期刊
Microbial Cell Factories
Microbial Cell Factories 工程技术-生物工程与应用微生物
CiteScore
9.30
自引率
4.70%
发文量
235
审稿时长
2.3 months
期刊介绍: Microbial Cell Factories is an open access peer-reviewed journal that covers any topic related to the development, use and investigation of microbial cells as producers of recombinant proteins and natural products, or as catalyzers of biological transformations of industrial interest. Microbial Cell Factories is the world leading, primary research journal fully focusing on Applied Microbiology. The journal is divided into the following editorial sections: -Metabolic engineering -Synthetic biology -Whole-cell biocatalysis -Microbial regulations -Recombinant protein production/bioprocessing -Production of natural compounds -Systems biology of cell factories -Microbial production processes -Cell-free systems
期刊最新文献
Editorial expression of concern:Characterization and high-efciency secreted expression in bacillus subtilis of a thermo-alkaline β-mannanase from an alkaliphilic bacillus clausii strain S10. Combined metabolic engineering and lipid droplets degradation to increase vitamin A production in Saccharomyces cerevisiae. Increased cytoplasmic expression of PETase enzymes in E. coli. Optimized production of a truncated form of the recombinant neuraminidase of influenza virus in Escherichia coli as host with suitable functional activity. Retraction Note: Potential use of proprotein convertase subtilisin/kexin type 9 (PCSK9) inhibition and prevention method in viral infection.
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