Dogic Zvonimir
Department of Physics, Brandeis University Waltham, MA, USA.
Front Microbiol. 2016 Jun 30;7:1013. doi: 10.3389/fmicb.2016.01013. eCollection 2016.
Filamentous phages have unique physical properties, such as uniform particle lengths, that are not found in other model systems of rod-like colloidal particles. Consequently, suspensions of such phages provided powerful model systems that have advanced our understanding of soft matter physics in general and liquid crystals in particular. We described some of these advances. In particular we briefly summarize how suspensions of filamentous phages have provided valuable insight into the field of colloidal liquid crystals. We also describe recent experiments on filamentous phages that have elucidated a robust pathway for assembly of 2D membrane-like materials. Finally, we outline unique structural properties of filamentous phages that have so far remained largely unexplored yet have the potential to further advance soft matter physics and material science.
丝状噬菌体具有独特的物理性质,比如具有统一的颗粒长度,这在其他棒状胶体颗粒模型系统中是不存在的。因此,此类噬菌体的悬浮液提供了强大的模型系统,推动了我们对一般软物质物理学,尤其是液晶的理解。我们描述了其中的一些进展。特别是,我们简要总结了丝状噬菌体悬浮液如何为胶体液晶领域提供了有价值的见解。我们还描述了最近关于丝状噬菌体的实验,这些实验阐明了二维膜状材料组装的稳健途径。最后,我们概述了丝状噬菌体独特的结构性质,这些性质迄今为止在很大程度上仍未得到探索,但有潜力进一步推动软物质物理学和材料科学的发展。