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Stenotrophomonas maltophilia as an Emerging Ubiquitous Pathogen: Looking Beyond Contemporary Antibiotic Therapy
Anthony A Adegoke1,2,3, Thor A Stenström1, Anthony I Okoh2,3
1Institute for Water and Wastewater Technology, Durban University of Technology, Durban, South Africa.
Abstract:
Stenotrophomonas maltophilia is a commensal and an emerging pathogen earlier noted in broad-spectrum life threatening infections among the vulnerable, but more recently as a pathogen in immunocompetent individuals. The bacteria are consistently being implicated in necrotizing otitis, cutaneous infections including soft tissue infection and keratitis, endocarditis, meningitis, acute respiratory tract infection (RTI), bacteraemia (with/without hematological malignancies), tropical pyomyositis, cystic fibrosis, septic arthritis, among others. S. maltophilia is also an environmental bacteria occurring in water, rhizospheres, as part of the animals' microflora, in foods, and several other microbiota. This review highlights clinical reports on S. maltophilia both as an opportunistic and as true pathogen. Also, biofilm formation as well as quorum sensing, extracellular enzymes, flagella, pili/fimbriae, small colony variant, other virulence or virulence-associated factors, the antibiotic resistance factors, and their implications are considered. Low outer membrane permeability, natural MDR efflux systems, and/or resistance genes, resistance mechanisms like the production of two inducible chromosomally encoded β-lactamases, and lack of carefully compiled patient history are factors that pose great challenges to the S. maltophilia control arsenals. The fluoroquinolone, some tetracycline derivatives and trimethoprim-sulphamethaxole (TMP-SMX) were reported as effective antibiotics with good therapeutic outcome. However, TMP-SMX resistance and allergies to sulfa together with high toxicity of fluoroquinolone are notable setbacks. S. maltophilia's production and sustenance of biofilm by quorum sensing enhance their virulence, resistance to antibiotics and gene transfer, making quorum quenching an imperative step in Stenotrophomonas control. Incorporating several other proven approaches like bioengineered bacteriophage therapy, Epigallocatechin-3-gallate (EGCG), essential oil, nanoemulsions, and use of cationic compounds are promising alternatives which can be incorporated in Stenotrophomonas control arsenal.
Insights
Stenotrophomonas maltophilia is an emerging pathogen causing severe infections in vulnerable and immunocompetent individuals. New therapeutic strategies are needed to combat its virulence and antibiotic resistance, including biofilm control.
Area of Science:
- Medical Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Stenotrophomonas maltophilia is an opportunistic and true pathogen causing diverse infections.
- It is also an environmental bacterium found in various microbiota.
- This review focuses on clinical reports, virulence factors, and antibiotic resistance of S. maltophilia.
Purpose of the Study:
- To review clinical reports of Stenotrophomonas maltophilia infections.
- To examine virulence factors, biofilm formation, and quorum sensing.
- To discuss antibiotic resistance mechanisms and potential control strategies.
Main Methods:
- Literature review of clinical reports on S. maltophilia.
- Analysis of virulence factors, including biofilm formation and quorum sensing.
- Examination of antibiotic resistance mechanisms and therapeutic outcomes.
Main Results:
- S. maltophilia causes a range of infections in both vulnerable and immunocompetent individuals.
- Virulence factors include biofilm formation, quorum sensing, and antibiotic resistance mechanisms.
- Effective antibiotics include fluoroquinolones, tetracyclines, and trimethoprim-sulfamethoxazole (TMP-SMX), but resistance and toxicity are concerns.
Conclusions:
- Stenotrophomonas maltophilia poses significant challenges due to its virulence and antibiotic resistance.
- Quorum quenching and novel approaches like bacteriophage therapy and natural compounds show promise for control.
- Integrated strategies are essential for effective management of S. maltophilia infections.
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