| Literature DB >> 35257011 |
Samira Tarashi1,2, Seyed Davar Siadat1,2, Abolfazl Fateh1,2.
Abstract
The mortality incidence from nontuberculous mycobacteria (NTM) infections has been steadily developing globally. These bacterial agents were once thought to be innocent environmental saprophytic that are only dangerous to patients with defective lungs or the immunosuppressed. Nevertheless, the emergence of highly resistant NTM to different antibiotics and disinfectants increased the importance of these agents in the health system. Currently, NTM frequently infect seemingly immunocompetent individuals at rising rates. This is of concern as the resistant NTM are difficult to control and treat. The details behind this NTM development are only beginning to be clarified. The current study will provide an overview of the most important NTM resistance mechanisms to not only antibiotics but also the most commonly used disinfectants. Such evaluations can open new doors to improving control strategies and reducing the risk of NTM infection. Moreover, further studies are crucial to uncover this association.Entities:
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Year: 2022 PMID: 35257011 PMCID: PMC8898113 DOI: 10.1155/2022/8168750
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1The most probable resistance mechanisms in NTM infections.
Characteristics of used antibiotics in NTM infections based on action and resistance mechanisms.
| Antibiotic | Action mechanism | Resistance mechanism | Highest activity against | Lowest activity against | |
|---|---|---|---|---|---|
| Suppression of cell wall synthesis | Ethambutol | Suppression of arabinogalactan biosynthesis | Mutation in | Rapid growers of NTM |
|
| Beta-lactams (imipenem) | Suppression of enzymatic activity of PBPs2 and peptidoglycan synthesis | Enhance cell wall permeability, the affinity of PBP, and the activity of | Rapid growers of NTM |
| |
| Isoniazid | Suppression of mycolic acid synthesis | Lack of catalase-peroxidase KatG and isoniazid efflux pump |
| Most species of NTM | |
| Vancomycin | Suppression of mature peptidoglycan assembly | Enhance cell wall permeability | Most species of NTM | Most species of NTM | |
| Delamanid | Suppression of keto- and methoxy-mycolic acid synthesis | Not determined for NTM species | MDR-TB3 |
| |
|
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| Suppression of DNA synthesis | Fluoroquinolones | Suppression of topoisomerase IV and DNA gyrase | Mutations in | Macrolide-resistant MAC | MAC |
| Sulfamethoxazole | Suppression of microbial folate metabolism and nucleic acid synthesis | Activity of reductase | Most species of NTM |
| |
| SPR719 and SPR720 | Suppression of ATPase activity gyrase and topoisomerase IV | Not determined for NTM species |
| Not determined for NTM species | |
|
| |||||
| Suppression of protein synthesis | Macrolides (clarithromycin and azithromycin) | Suppression of peptide chain elongation by binding to the exited peptide from ribosome | Activity of ribosomal methyltransferase (erm) | Most species of NTM |
|
| Oxazolidinones (linezolid, tedizolid, and LCB01-0371) | Binding to the 23SrRNA and suppression of protein synthesis | Mutation in | Most species of NTM (linezolid for MAC and |
| |
| Aminoglycosides | Irreversible binding to the 30S ribosomal subunit and suppression of translation process | Mutation in | Most species of NTM | MAC | |
| Tetracyclines | Reversibly bind to the 30S ribosomal subunit and suppression of binding of tRNA and mRNA-ribosome complex | Activity of ribosome protection proteins (otrA and tetM) | Most species of NTM | Most species of NTM | |
| Tigecycline | Binding to 30S ribosomal subunit and suppression of acyltRNA binding | Tet(X) enzyme |
| Not determined for NTM species | |
| Rifampin | Suppression of DNA-dependent RNA polymerase of bacteria | Mutation in | MAC | MAC | |
|
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| Suppression of respiratory chain | Bedaquiline | Suppression of | Mutations in | MDR-TB |
|
| Clofazimine | Suppression of bacterial proliferation by blocking the intracellular redox cycling | Mutation in | Most species of NTM |
| |
1 M. avium complex; 2penicillin-binding proteins; 3multidrug-resistant tuberculosis.