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使用智能磁性流体和凝胶预防和破坏细菌生物膜。

Using SMART Magnetic Fluids and Gels for Prevention and Destruction of Bacterial Biofilms.

作者信息

Król Jarosƚaw E, Ehrlich Garth D

机构信息

Center for Surgical Infections and Biofilms, Center for Advanced Microbial Processing, Center for Genomic Sciences, Department of Microbiology and Immunology, Drexel University, Philadelphia, PA 19104, USA.

Department Head and Neck Surgery, Drexel University, Philadelphia, PA 19104, USA.

出版信息

Microorganisms. 2023 Jun 7;11(6):1515. doi: 10.3390/microorganisms11061515.

Abstract

Biofouling is a major problem in all natural and artificial settings where solid surfaces meet liquids in the presence of living microorganisms. Microbes attach to the surface and form a multidimensional slime that protects them from unfavorable environments. These structures, known as biofilms, are detrimental and very hard to remove. Here, we used SMART magnetic fluids [ferrofluids (FFs), magnetorheological fluids (MRFs), and ferrogels (FGs) containing iron oxide nano/microparticles] and magnetic fields to remove bacterial biofilms from culture tubes, glass slides, multiwell plates, flow cells, and catheters. We compared the ability of different SMART fluids to remove biofilms and found that commercially available, as well as homemade, FFs, MRFs, and FGs can successfully remove biofilm more efficiently than traditional mechanical methods, especially from textured surfaces. In tested conditions, SMARTFs reduced bacterial biofilms by five orders of magnitude. The ability to remove biofilm increased with the amount of magnetic particles; therefore, MRFs, FG, and homemade FFs with high amounts of iron oxide were the most efficient. We showed also that SMART fluid deposition can protect a surface from bacterial attachment and biofilm formation. Possible applications of these technologies are discussed.

摘要

生物污垢是所有自然和人工环境中的一个主要问题,在这些环境中,固体表面在有活微生物存在的情况下与液体接触。微生物附着在表面并形成一种多维黏液,保护它们免受不利环境的影响。这些结构被称为生物膜,具有危害性且很难去除。在这里,我们使用了智能磁流体[铁磁流体(FFs)、磁流变液(MRFs)和含有氧化铁纳米/微粒的铁凝胶(FGs)]和磁场从培养管、载玻片、多孔板、流动腔和导管上去除细菌生物膜。我们比较了不同智能流体去除生物膜的能力,发现市售的以及自制的FFs、MRFs和FGs比传统机械方法更能成功且高效地去除生物膜,尤其是从有纹理的表面。在测试条件下,智能磁流体将细菌生物膜减少了五个数量级。去除生物膜的能力随着磁性颗粒的数量增加而增强;因此,含有大量氧化铁的MRFs、FGs和自制FFs最为有效。我们还表明,智能流体沉积可以保护表面免受细菌附着和生物膜形成。讨论了这些技术的可能应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58f6/10305264/a395c87d0ca0/microorganisms-11-01515-g001.jpg

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