Ishikawa Takuji, Omori Toshihiro, Kikuchi Kenji
Department Finemechanics, Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan.
APL Bioeng. 2020 Oct 28;4(4):041504. doi: 10.1063/5.0026953. eCollection 2020 Dec.
Bacteria inhabit a variety of locations and play important roles in the environment and health. Our understanding of bacterial biomechanics has improved markedly in the last decade and has revealed that biomechanics play a significant role in microbial biology. The obtained knowledge has enabled investigation of complex phenomena, such as biofilm formation and the dynamics of the gut flora. A bottom-up strategy, i.e., from the cellular to the macroscale, facilitates understanding of macroscopic bacterial phenomena. In this Review, we first cover the biomechanics of individual bacteria in the bulk liquid and on surfaces as the base of complex phenomena. The collective behaviors of bacteria in simple environments are next introduced. We then introduce recent advances in biofilm biomechanics, in which adhesion force and the flow environment play crucial roles. We also review transport phenomena in the intestine and the dynamics of the gut flora, focusing on that in zebrafish. Finally, we provide an overview of the future prospects for the field.
细菌存在于各种环境中,在环境和健康方面发挥着重要作用。在过去十年中,我们对细菌生物力学的理解有了显著提高,并且揭示了生物力学在微生物生物学中发挥着重要作用。所获得的知识使得对诸如生物膜形成和肠道菌群动态等复杂现象的研究成为可能。一种自下而上的策略,即从细胞尺度到宏观尺度,有助于理解宏观细菌现象。在本综述中,我们首先阐述在大量液体中和表面上单个细菌的生物力学,这是复杂现象的基础。接下来介绍细菌在简单环境中的集体行为。然后我们介绍生物膜生物力学的最新进展,其中粘附力和流动环境起着关键作用。我们还综述肠道中的传输现象以及肠道菌群的动态,重点关注斑马鱼中的情况。最后,我们概述该领域的未来前景。