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生物膜的形成与光镊操控

Biofilm formation and manipulation with optical tweezers.

作者信息

Camba Czarlyn, Walter-Lakes Brooke, Digal Phillip, Taheri-Araghi Sattar, Bezryadina Anna

机构信息

Department of Physics and Astronomy, California State University Northridge, 18111 Nordhoff Street, Northridge, CA 91330, USA.

出版信息

Biomed Opt Express. 2024 Jan 29;15(2):1181-1191. doi: 10.1364/BOE.510836. eCollection 2024 Feb 1.

Abstract

Some bacterial species form biofilms in suboptimal growth and environmental conditions. Biofilm structures allow the cells not only to optimize growth with nutrient availability but also to defend each other against external stress, such as antibiotics. Medical and bioengineering implications of biofilms have led to an increased interest in the regulation of bacterial biofilm formation. Prior research has primarily focused on mechanical and chemical approaches for stimulating and controlling biofilm formation, yet optical techniques are still largely unexplored. In this paper, we investigate the biofilm formation of in a minimum biofilm-promoting medium (MSgg media) and explore the potential of optical trapping in regulating bacterial aggregation and biofilm development. Specifically, we determine the most advantageous stage of bacterial biofilm formation for optical manipulation and investigate the impact of optical trapping at different wavelengths on the aggregation of bacterial cells and the formation of biofilm. The investigation of optically regulated biofilm formation with optical tweezers presents innovative methodologies for the stimulation and suppression of biofilm growth through the application of lasers.

摘要

一些细菌种类在次优生长和环境条件下形成生物膜。生物膜结构不仅使细胞能够根据营养物质的可利用性优化生长,还能相互抵御外部压力,如抗生素。生物膜在医学和生物工程方面的影响引发了人们对细菌生物膜形成调控的更多关注。先前的研究主要集中在刺激和控制生物膜形成的机械和化学方法上,然而光学技术在很大程度上仍未得到充分探索。在本文中,我们研究了在最小生物膜促进培养基(MSgg培养基)中细菌的生物膜形成,并探索了光镊在调节细菌聚集和生物膜发育方面的潜力。具体而言,我们确定了用于光学操纵的细菌生物膜形成的最有利阶段,并研究了不同波长的光镊对细菌细胞聚集和生物膜形成的影响。用光镊对光调控生物膜形成的研究提出了通过应用激光刺激和抑制生物膜生长的创新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff0d/10890877/fba655730ab9/boe-15-2-1181-g001.jpg

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