电刺激:一种多用途的操纵技术介导微生物的应用。

IF 3.5 3区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Bioprocess and Biosystems Engineering Pub Date : 2024-11-29 DOI:10.1007/s00449-024-03107-z
Manjila Adhikari, Li Wang, Dhurba Adhikari, Sujan Khadka, Mati Ullah, Bricard Mbituyimana, Clemence Futila Bukatuka, Zhijun Shi, Guang Yang
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引用次数: 0

摘要

电刺激(ES)是一种使用电场单独操纵微生物的通用技术。在过去的几十年里,ES的功能已经从生物修复扩展到细胞和微生物的精确运动控制。然而,关于ES的潜在机制,最新进展以及在各个领域的更广泛的微生物应用方面的信息有限,例如生产具有更高性能的细胞外聚合物。本文综述了体外调控技术的最新进展,并讨论了体外调控技术作为一种独特的微生物体外调控技术,在生物修复、工业、生物膜灭活、消毒和生物合成控制等方面具有广泛的应用前景。本文讨论的一个具体应用是细胞外生物合成、调控和细胞外聚合物的组织,如细菌纤维素纳米原纤维、凝乳蛋白和微生物纳米线。总的来说,这篇综述旨在为微生物生物技术学家和合成生物学家提供一个平台,利用ES对微生物进行生物基应用,包括生产具有增强性能的细胞外聚合物。研究人员可以通过利用电场的潜力来设计、操纵和控制微生物的各种应用。
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Electric stimulation: a versatile manipulation technique mediated microbial applications.

Electric stimulation (ES) is a versatile technique that uses an electric field to manipulate microorganisms individually. Over the past several decades, the capabilities of ES have expanded from bioremediation to the precise motion control of cells and microorganisms. However, there is limited information on the underlying mechanisms, latest advancement and broader microbial applications of ES in various fields, such as the production of extracellular polymers with upgraded properties. This review article summarizes recent advancements in ES and discusses it as a unique external manipulation technique for microorganisms with wide applications in bioremediation, industry, biofilm deactivation, disinfection, and controlled biosynthesis. One specific application of ES discussed in this review is the extracellular biosynthesis, regulation, and organization of extracellular polymers, such as bacterial cellulose nanofibrils, curdlan, and microbial nanowires. Overall, this review aims to provide a platform for microbial biotechnologists and synthetic biologists to leverage the manipulation of microorganisms using ES for bio-based applications, including the production of extracellular polymers with enhanced properties. Researchers can engineer, manipulate, and control microorganisms for various applications by harnessing the potential of electric fields.

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来源期刊
Bioprocess and Biosystems Engineering
Bioprocess and Biosystems Engineering 工程技术-工程:化工
CiteScore
7.90
自引率
2.60%
发文量
147
审稿时长
2.6 months
期刊介绍: Bioprocess and Biosystems Engineering provides an international peer-reviewed forum to facilitate the discussion between engineering and biological science to find efficient solutions in the development and improvement of bioprocesses. The aim of the journal is to focus more attention on the multidisciplinary approaches for integrative bioprocess design. Of special interest are the rational manipulation of biosystems through metabolic engineering techniques to provide new biocatalysts as well as the model based design of bioprocesses (up-stream processing, bioreactor operation and downstream processing) that will lead to new and sustainable production processes. Contributions are targeted at new approaches for rational and evolutive design of cellular systems by taking into account the environment and constraints of technical production processes, integration of recombinant technology and process design, as well as new hybrid intersections such as bioinformatics and process systems engineering. Manuscripts concerning the design, simulation, experimental validation, control, and economic as well as ecological evaluation of novel processes using biosystems or parts thereof (e.g., enzymes, microorganisms, mammalian cells, plant cells, or tissue), their related products, or technical devices are also encouraged. The Editors will consider papers for publication based on novelty, their impact on biotechnological production and their contribution to the advancement of bioprocess and biosystems engineering science. Submission of papers dealing with routine aspects of bioprocess engineering (e.g., routine application of established methodologies, and description of established equipment) are discouraged.
期刊最新文献
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