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Published on: April 18, 2019
Alkyl deoxyglycoside-polymyxin combinations against critical priority carbapenem-resistant gram-negative bacteria
Ana M de Matos1, Patrícia Calado2, Mónica Miranda2
1Centro de Química Estrutural, Institute of Molecular Sciences, Departmento de Química e Bioquímica, Faculdade de Ciências, Universidade de Lisboa, 1749-016, Campo Grande, Lisbon, Portugal. amamatos@fc.ul.pt.
Abstract:
The escalating antimicrobial resistance crisis urges the development of new antibacterial treatments with innovative mechanisms of action, particularly against the critical priority carbapenem-resistant Acinetobacter baumannii (CRAB), Pseudomonas aeruginosa (CRPA) and Enterobacteriaceae (CRE). Membrane-disrupting dodecyl deoxyglycosides have been reported for their interesting phosphatidylethanolamine-associated bactericidal activity against Gram-positive strains; however, their inability to penetrate the Gram-negative outer membrane (OM) renders them useless against the most challenging pathogens. Aiming to repurpose alkyl deoxyglycosides against Gram-negative bacteria, this study investigates the antimicrobial effects of five reference compounds with different deoxygenation patterns or anomeric configurations in combination with polymyxins as adjuvants for enhanced OM permeability. The generation of the lead 4,6-dideoxy scaffold was optimized through a simultaneous dideoxygenation step and applied to the synthesis of a novel alkyl 4,6-dideoxy C-glycoside 5, herein reported for the first time. When combined with subtherapeutic colistin concentrations, most glycosides demonstrated potent antimicrobial activity against several multidrug-resistant clinical isolates of CRAB, CRE and CRPA exhibiting distinct carbapenem resistance mechanisms, together with acceptable cytotoxicity against human HEK-293T and Caco-2 cells. The novel 4,6-dideoxy C-glycoside 5 emerged as the most promising prototype structure for further development (MIC 3.1 μg/mL when combined with colistin 0.5 μg/mL against CRPA or 0.25 μg/mL against several CRE and CRAB strains), highlighting the potential of C-glycosylation for an improved bioactive profile. This study is the first to show the potential of IM-targeting carbohydrate-based compounds for the treatment of infections caused by MDR Gram-negative pathogens of clinical importance.
Insights
New carbohydrate-based compounds show promise in combating drug-resistant Gram-negative bacteria like carbapenem-resistant Acinetobacter baumannii (CRAB), Pseudomonas aeruginosa (CRPA), and Enterobacteriaceae (CRE). Combined with colistin, these novel glycosides effectively target challenging infections.
Area of Science:
- Medicinal Chemistry
- Microbiology
- Drug Discovery
Background:
- Escalating antimicrobial resistance (AMR) necessitates novel antibacterial agents, especially against critical Gram-negative pathogens.
- Existing membrane-disrupting agents are ineffective against Gram-negative bacteria due to outer membrane (OM) penetration limitations.
- Carbapenem-resistant Gram-negative infections (CRAB, CRPA, CRE) pose a significant global health threat.
Purpose of the Study:
- To repurpose alkyl deoxyglycosides against Gram-negative bacteria by enhancing OM permeability.
- To synthesize and evaluate novel carbohydrate-based compounds, including a unique 4,6-dideoxy C-glycoside.
- To assess the synergistic antimicrobial activity of these compounds with polymyxins against multidrug-resistant (MDR) Gram-negative pathogens.
Main Methods:
- Synthesis of a novel alkyl 4,6-dideoxy C-glycoside (compound 5) via optimized dideoxygenation.
- Evaluation of five reference alkyl deoxyglycosides and compound 5 in combination with subtherapeutic colistin.
- Antimicrobial susceptibility testing against clinical isolates of CRAB, CRPA, and CRE.
- Cytotoxicity assessment against human cell lines (HEK-293T, Caco-2).
Main Results:
- Most tested glycosides, particularly compound 5, demonstrated potent activity against MDR CRAB, CRPA, and CRE when combined with colistin.
- Compound 5 showed significant efficacy (MIC 3.1 μg/mL with colistin 0.5 μg/mL against CRPA; 0.25 μg/mL against CRAB/CRE).
- The novel compounds exhibited acceptable cytotoxicity profiles against human cell lines.
Conclusions:
- The study highlights the potential of targeting the Gram-negative inner membrane with carbohydrate-based compounds.
- Novel 4,6-dideoxy C-glycosides represent a promising scaffold for developing new treatments against MDR Gram-negative infections.
- Combination therapy with polymyxins can overcome OM barriers, enhancing the efficacy of glycoside antibacterials.
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