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改变黏液生长生物膜的黏弹性会影响抗生素敏感性。

Altering the viscoelastic properties of mucus-grown biofilms affects antibiotic susceptibility.

作者信息

Rouillard Kaitlyn R, Markovetz Matthew R, Kissner William J, Boone William L, Plott Lucas M, Hill David B

机构信息

Marsico Lung Institute, The University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.

Joint Department of Biomedical Engineering, North Carolina State University and the University of North Carolina, Chapel Hill, NC, 27599, USA.

出版信息

Biofilm. 2023 Jan 21;5:100104. doi: 10.1016/j.bioflm.2023.100104. eCollection 2023 Dec.

Abstract

The viscoelastic properties of biofilms are correlated with their susceptibility to mechanical and chemical stress, and the airway environment in muco-obstructive pulmonary diseases (MOPD) facilitates robust biofilm formation. Hyperconcentrated, viscoelastic mucus promotes chronic inflammation and infection, resulting in increased mucin and DNA concentrations. The viscoelastic properties of biofilms are regulated by biopolymers, including polysaccharides and DNA, and influence responses to antibiotics and phagocytosis. We hypothesize that targeted modulation of biofilm rheology will compromise structural integrity and increase antibiotic susceptibility and mucociliary transport. We evaluate biofilm rheology on the macro, micro, and nano scale as a function of treatment with a reducing agent, a biopolymer, and/or tobramycin to define the relationship between the viscoelastic properties of biofilms and susceptibility. Disruption of the biofilm architecture is associated with altered macroscopic and microscopic moduli, rapid vector permeability, increased antibiotic susceptibility, and improved mucociliary transport, suggesting that biofilm modulating therapeutics will improve the treatment of chronic respiratory infections in MOPD.

摘要

生物膜的粘弹性与它们对机械和化学应激的敏感性相关,并且在黏液阻塞性肺部疾病(MOPD)中,气道环境有利于强大的生物膜形成。高浓度的粘弹性黏液会促进慢性炎症和感染,导致黏蛋白和DNA浓度增加。生物膜的粘弹性由包括多糖和DNA在内的生物聚合物调节,并影响对抗生素和吞噬作用的反应。我们假设,对生物膜流变学的靶向调节将损害其结构完整性,并增加抗生素敏感性和黏液纤毛运输能力。我们评估了在宏观、微观和纳米尺度上生物膜的流变学,作为用还原剂、生物聚合物和/或妥布霉素处理的函数,以确定生物膜的粘弹性与敏感性之间的关系。生物膜结构的破坏与宏观和微观模量的改变、快速的载体通透性、增加的抗生素敏感性以及改善的黏液纤毛运输有关,这表明生物膜调节疗法将改善MOPD中慢性呼吸道感染的治疗。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8915/9880403/57a583057893/ga1.jpg

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