CSIRO Manufacturing, Research Way, Clayton, VIC 3168, Australia.
Infection and Immunity Program, Department of Microbiology, Monash Biomedicine Discovery Institute, Monash University, Clayton, VIC 3800, Australia and Department of Infectious Diseases, The Alfred Hospital and Central Clinical School, Monash University, Melbourne, VIC 3004, Australia.
Chem Soc Rev. 2021 Feb 15;50(3):1587-1616. doi: 10.1039/d0cs00986e.
Biofilms are complex three-dimensional structures formed at interfaces by the vast majority of bacteria and fungi. These robust communities have an important detrimental impact on a wide range of industries and other facets of our daily lives, yet their removal is challenging owing to the high tolerance of biofilms towards conventional antimicrobial agents. This key issue has driven an urgent search for new innovative antibiofilm materials. Amongst these emerging approaches are highly promising materials that employ aqueous-soluble macromolecules, including peptides, proteins, synthetic polymers, and nanomaterials thereof, which exhibit a range of functionalities that can inhibit biofilm formation or detach and destroy organisms residing within established biofilms. In this Review, we outline the progress made in inhibiting and removing biofilms using macromolecular approaches, including a spotlight on cutting-edge materials that respond to environmental stimuli for "on-demand" antibiofilm activity, as well as synergistic multi-action antibiofilm materials. We also highlight materials that imitate and harness naturally derived species to achieve new and improved biomimetic and biohybrid antibiofilm materials. Finally, we share some speculative insights into possible future directions for this exciting and highly significant field of research.
生物膜是由绝大多数细菌和真菌在界面上形成的复杂三维结构。这些强大的群落对广泛的行业和我们日常生活的其他方面产生了重要的不利影响,但由于生物膜对传统抗菌剂具有很高的耐受性,因此去除它们具有挑战性。这个关键问题促使人们迫切需要寻找新的创新型抗生物膜材料。在这些新兴方法中,有一些很有前途的材料采用了水溶性大分子,包括肽、蛋白质、合成聚合物及其纳米材料,它们具有一系列可以抑制生物膜形成或分离和破坏已建立的生物膜中生物的功能。在这篇综述中,我们概述了使用大分子方法抑制和去除生物膜的进展,包括聚焦于对环境刺激做出响应以实现“按需”抗生物膜活性的前沿材料,以及协同多效抗生物膜材料。我们还强调了模仿和利用天然衍生物种以实现新的和改进的仿生和生物杂交抗生物膜材料的材料。最后,我们分享了对这个令人兴奋且非常重要的研究领域未来发展方向的一些推测性见解。