细菌工程中的材料驱动战略

IF 1.8 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Giuseppe Maria Paternò
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引用次数: 0

摘要

这篇视角文章重点关注基于材料的细菌工程这一创新领域,突出介绍利用材料科学研究、增强和利用活细菌特性的跨学科研究。通过利用外源非生物材料界面,研究人员可以对细菌进行工程设计,使其发挥新的功能,如增强生物电能力和提高光合作用效率。此外,材料还能调节细菌群落,将细菌转化为生物杂交微型机器人,为可持续能源生产、环境修复和医疗应用提供有前景的解决方案。最后,该视角讨论了通过材料驱动调节细菌跨膜电位来实现细菌工程的一般范例。这一参数调节细菌的离子通道活性,并最终调节其生物能,这表明,控制这一参数可以让科学家破解细菌用于通信、执行任务和环境响应的生物电语言。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Materials-driven strategies in bacterial engineering

Materials-driven strategies in bacterial engineering

This perspective article focuses on the innovative field of materials-based bacterial engineering, highlighting interdisciplinary research that employs material science to study, augment, and exploit the attributes of living bacteria. By utilizing exogenous abiotic material interfaces, researchers can engineer bacteria to perform new functions, such as enhanced bioelectric capabilities and improved photosynthetic efficiency. Additionally, materials can modulate bacterial communities and transform bacteria into biohybrid microrobots, offering promising solutions for sustainable energy production, environmental remediation, and medical applications. Finally, the perspective discusses a general paradigm for engineering bacteria through the materials-driven modulation of their transmembrane potential. This parameter regulates their ion channel activity and ultimately their bioenergetics, suggesting that controlling it could allow scientists to hack the bioelectric language bacteria use for communication, task execution, and environmental response.

Graphical abstract

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来源期刊
MRS Communications
MRS Communications MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
2.60
自引率
10.50%
发文量
166
审稿时长
>12 weeks
期刊介绍: MRS Communications is a full-color, high-impact journal focused on rapid publication of completed research with broad appeal to the materials community. MRS Communications offers a rapid but rigorous peer-review process and time to publication. Leveraging its access to the far-reaching technical expertise of MRS members and leading materials researchers from around the world, the journal boasts an experienced and highly respected board of principal editors and reviewers.
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