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Biofilms

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Journal Biofilm
Date 2023 Feb 17
PMID 36798742
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Abstract

The genus includes some of the deadliest pathogens of History (), but most of the species within the genus are environmental microorganisms. Because some of these nontuberculous mycobacteria (NTM) species can be human pathogens, the study of these mycobacterial biofilms has increased during the last decades, and the interest in this issue increased as well as the growing number of patients with diseases caused by NTM. Different molecular mechanisms have been described, being especially well known the importance of glycopeptidolipids. Moreover, the knowledge of the extracellular matrix has shown important differences with other microorganisms, especially because of the presence of lipidic molecules as a key component of this structure. The clinical importance of mycobacterial biofilms has been described for many chronic diseases, especially lung diseases and implant-related ones, both and , and even in patients. Moreover, the biofilm-producing capacity has been proven also in , while its importance is not well understood. Biofilm studies have also shown the increasing resistance of mycobacteria in sessile form, and the importance of this resistance in the management of the patients is beyond doubt, being surgery necessary in some cases to cure the patients. Diagnosis of mycobacterial diseases is still based on culture-based techniques designed for the detection of . Molecular biology-based methods are also broadly used but again designed for tuberculosis diagnosis. Antimicrobial susceptibility testing is also well developed for tuberculosis, but only some species of NTM have standardized techniques for this purpose. New tools or approaches are necessary to treat these patients, whose importance is increasing, as the number of potential hosts is also increasing throughout the world.

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References
1.
Chakraborty P, Kumar A . The extracellular matrix of mycobacterial biofilms: could we shorten the treatment of mycobacterial infections?. Microb Cell. 2019; 6(2):105-122. PMC: 6364259. DOI: 10.15698/mic2019.02.667. View

2.
Rose S, Babrak L, Bermudez L . Mycobacterium avium Possesses Extracellular DNA that Contributes to Biofilm Formation, Structural Integrity, and Tolerance to Antibiotics. PLoS One. 2015; 10(5):e0128772. PMC: 4444313. DOI: 10.1371/journal.pone.0128772. View

3.
Munoz Egea M, Ji P, Pruden A, Falkinham Iii J . Inhibition of Adherence of Mycobacterium avium to Plumbing Surface Biofilms of Methylobacterium spp. Pathogens. 2017; 6(3). PMC: 5617999. DOI: 10.3390/pathogens6030042. View

4.
Munoz-Egea M, Garcia-Pedrazuela M, Mahillo-Fernandez I, Esteban J . Effect of Antibiotics and Antibiofilm Agents in the Ultrastructure and Development of Biofilms Developed by Nonpigmented Rapidly Growing Mycobacteria. Microb Drug Resist. 2015; 22(1):1-6. DOI: 10.1089/mdr.2015.0124. View

5.
Costerton J, Lewandowski Z, Caldwell D, Korber D, Lappin-Scott H . Microbial biofilms. Annu Rev Microbiol. 1995; 49:711-45. DOI: 10.1146/annurev.mi.49.100195.003431. View