Interfaculty Institute of Microbiology & Infection Medicine, Cluster of Excellence CMFI, University of Tübingen, Tübingen, Baden-Württemberg, Germany.
Department of Biology, University of Washington, Seattle, Washington, USA.
Microbiol Mol Biol Rev. 2022 Jun 15;86(2):e0009420. doi: 10.1128/mmbr.00094-20. Epub 2022 Mar 14.
To combat infectious diseases, it is important to understand how host cells interact with bacterial pathogens. Signals conveyed from pathogen to host, and vice versa, may be either chemical or mechanical. While the molecular and biochemical basis of host-pathogen interactions has been extensively explored, relatively less is known about mechanical signals and responses in the context of those interactions. Nevertheless, a wide variety of bacterial pathogens appear to have developed mechanisms to alter the cellular biomechanics of their hosts in order to promote their survival and dissemination, and in turn many host responses to infection rely on mechanical alterations in host cells and tissues to limit the spread of infection. In this review, we present recent findings on how mechanical forces generated by host cells can promote or obstruct the dissemination of intracellular bacterial pathogens. In addition, we discuss how extracellular mechanical signals influence interactions between host cells and intracellular bacterial pathogens. Examples of such signals include shear stresses caused by fluid flow over the surface of cells and variable stiffness of the extracellular matrix on which cells are anchored. We highlight bioengineering-inspired tools and techniques that can be used to measure host cell mechanics during infection. These allow for the interrogation of how mechanical signals can modulate infection alongside biochemical signals. We hope that this review will inspire the microbiology community to embrace those tools in future studies so that host cell biomechanics can be more readily explored in the context of infection studies.
为了对抗传染病,了解宿主细胞与细菌病原体的相互作用非常重要。从病原体到宿主,反之亦然的信号可能是化学的或机械的。虽然宿主-病原体相互作用的分子和生化基础已经得到了广泛的探索,但在这些相互作用的背景下,机械信号和反应的相关知识相对较少。然而,各种各样的细菌病原体似乎已经开发出了改变宿主细胞生物力学的机制,以促进它们的存活和传播,反过来,许多宿主对感染的反应依赖于宿主细胞和组织中的机械改变,以限制感染的传播。在这篇综述中,我们介绍了最近的发现,即宿主细胞产生的机械力如何促进或阻碍细胞内细菌病原体的传播。此外,我们还讨论了细胞外机械信号如何影响宿主细胞与细胞内细菌病原体之间的相互作用。这种信号的例子包括细胞表面流体流动引起的切应力和细胞锚定的细胞外基质的可变刚度。我们强调了可以用于测量感染过程中宿主细胞力学的基于生物工程的工具和技术。这些方法允许研究人员探究机械信号如何与生化信号一起调节感染。我们希望这篇综述能够激发微生物学领域在未来的研究中采用这些工具,以便更方便地在感染研究的背景下探索宿主细胞生物力学。