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首页> 外文期刊>Advances in Experimental Medicine and Biology >Novel Approaches to Manipulating Bacterial Pathogen Biofilms: Whole-Systems Design Philosophy and Steering Microbial Evolution
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Novel Approaches to Manipulating Bacterial Pathogen Biofilms: Whole-Systems Design Philosophy and Steering Microbial Evolution

机译:操纵细菌病原体生物膜的新方法:整个系统的设计理念和指导微生物进化。

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Understanding and manipulating bacterial biofilms is crucial in medicine, ecology and agriculture and has potential applications in bioproduction, bioremediation and bioenergy. Biofilms often resist standard therapies and the need to develop new means of intervention provides an opportunity to fundamentally rethink our strategies. Conventional approaches to working with biological systems are, for the most part, "brute force", attempting to effect control in an input and effort intensive manner and are often insufficient when dealing with the inherent non-linearity and complexity of living systems. Biological systems, by their very nature, are dynamic, adaptive and resilient and require management tools that interact with dynamic processes rather than inert artefacts. I present an overview of a novel engineering philosophy which aims to exploit rather than fight those properties, and hence provide a more efficient and robust alternative. Based on a combination of evolutionary theory and whole-systems design, its essence is what I will call systems aikido; the basic principle of aikido being to interact with the momentum of an attacker and redirect it with minimal energy expenditure, using the opponent's energy rather than one's own. In more conventional terms, this translates to a philosophy of equilibrium engineering, manipulating systems' own self-organisation and evolution so that the evolutionarily or dynamically stable state corresponds to a function which we require. I illustrate these ideas with a description of a proposed manipulation of environmental conditions to alter the stability of co-operation in the context of Pseudomonas aeruginosa biofilm infection of the cystic fibrosis lung.
机译:了解和操纵细菌生物膜在医学,生态学和农业中至关重要,在生物生产,生物修复和生物能源中具有潜在的应用。生物膜通常会抵制标准疗法,因此开发新的干预手段的需求为从根本上重新思考我们的策略提供了机会。在大多数情况下,与生物系统一起使用的常规方法是“蛮力”,试图以投入和精力密集的方式进行控制,并且在处理生命系统固有的非线性和复杂性时通常不足。就其本质而言,生物系统是动态的,自适应的和有弹性的,并且需要与动态过程而不是惰性工件互动的管理工具。我概述了一种新颖的工程哲学,该哲学旨在开发而不是与这些特性抗争,从而提供一种更有效,更可靠的选择。基于进化论和整个系统设计的结合,其本质就是我所说的系统合气道。合气道的基本原理是与攻击者的动力互动,并使用对手的能量而非自己的能量以最小的能量消耗将其重定向。用更常规的术语来说,这转化为平衡工程学的哲学,即操纵系统自身的自组织和演化,以便演化或动态稳定状态对应于我们所需的功能。我通过描述拟议的环境条件改变囊性纤维化肺的铜绿假单胞菌生物膜感染情况下的合作稳定性来说明这些想法。

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