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Qualitative and Quantitative Assays for Detection and Characterization of Protein Antimicrobials
Published on: April 10, 2016
Optimized protocols for assessing libraries of poorly soluble sortase A inhibitors for antibacterial activity against
Sitah Alharthi1, Zyta Maria Ziora2, Peter Michael Moyle1
1School of Pharmacy, Pharmacy Australia Centre of Excellence, the University of Queensland, Woolloongabba 4102, Queensland, Australia.
Abstract:
Increasing antimicrobial resistance is a major global health concern. Conventional antibiotics apply selection pressures, which promote the accumulation of resistant microbes. Anti-virulence strategies, in contrast, are less potent antimicrobials, but are less likely to select for resistance, can be combined with existing antibiotics to improve their activity, and in some cases can overcome antimicrobial resistance towards other antimicrobials. Sortase A inhibitors (SrtAIs) represent an exciting example of this class; however, many reported examples demonstrate poor water solubility, which complicates their biological assessment and activity. This includes reports that use antimicrobial concentrations of organic solvents or conditions that fail to solubilise these compounds for minimal inhibitory concentration (MIC) assessments. Herein, we report the first study to optimise screening processes for a library of prospective SrtAIs (trans-chalcone (TC), berberine (BR), curcumin (CUR), and quercetin (QC)), including comparative assessment of the effects of various co-solvent concentrations, along with comparative assessment of their antimicrobial activities against multiple disease relevant bacterial strains (methicillin-sensitive and resistant S. aureus, E. coli, and P. aeruginosa), inhibition of the sortase A enzyme, and toxicity towards mammalian cells (HEK-293), using these optimised conditions. Optimal solubility with minimal effect on bacterial viability was observed in the presence of 5% (v/v) dimethyl sulfoxide (DMSO)-Mueller-Hinton Broth. Three antimicrobial susceptibility tests (broth microdilution, agar dilution, and disk diffusion) were assessed for their ability to accurately determine minimal inhibitory concentration (MIC) data for each SrtAI. Broth microdilution and agar dilution were both effective; however, the broth microdilution assay required the addition of a colorimetric metabolic indicator (resazurin) to enable simple and reliable MIC determination due to the development of precipitants over time. In contrast, disk diffusion did not provide reliable zone of inhibition data. Identical MIC data was observed with methicillin-sensitive and -resistant S. aureus (MRSA; ATCC43300), with lower potency activity against E. coli and P. aeruginosa. Under these conditions, TC and CUR demonstrated significant toxicity towards human embryonic kidney (HEK-293) cells, with QC showing less toxicity and BR limited-to-no toxicity at its MIC. Overall, the findings of this work provide optimised processes, which will prove useful for the study of other poorly soluble antimicrobial agents and SrtAIs. The obtained data suggests that BR should be considered in preference to the other SrtAIs for the development of new antimicrobial formulations, based on its superior antimicrobial and SrtA inhibition potency, and greatly reduced toxicity.
Insights
This study optimized screening for poorly soluble anti-virulence drugs, finding berberine effective against resistant bacteria with low toxicity. These methods aid future antimicrobial development.
Area of Science:
- Microbiology and Pharmacology
- Drug Discovery and Development
- Antimicrobial Resistance Research
Background:
- Antimicrobial resistance (AMR) is a growing global health crisis, driven by conventional antibiotics.
- Anti-virulence strategies offer a promising alternative, potentially reducing resistance selection and enhancing existing treatments.
- Sortase A inhibitors (SrtAIs) are a class of anti-virulence compounds, but poor solubility hinders their development and assessment.
Purpose of the Study:
- To optimize screening processes for poorly soluble Sortase A inhibitors (SrtAIs).
- To comparatively assess the antimicrobial activity, enzyme inhibition, and mammalian cell toxicity of selected SrtAIs.
- To evaluate the efficacy of different antimicrobial susceptibility testing methods for SrtAIs.
Main Methods:
- Screening of trans-chalcone (TC), berberine (BR), curcumin (CUR), and quercetin (QC) as prospective SrtAIs.
- Optimization of co-solvent concentrations (e.g., DMSO) in Mueller-Hinton Broth for solubility and minimal bacterial toxicity.
- Assessment of antimicrobial activity against S. aureus (MRSA), E. coli, P. aeruginosa using broth microdilution, agar dilution, and disk diffusion assays.
- Evaluation of sortase A enzyme inhibition and toxicity against HEK-293 mammalian cells.
Main Results:
- Optimal solubility for SrtAIs was achieved with 5% DMSO in Mueller-Hinton Broth, with minimal impact on bacterial viability.
- Broth microdilution (with resazurin) and agar dilution effectively determined Minimal Inhibitory Concentrations (MICs); disk diffusion was unreliable.
- Berberine (BR) demonstrated potent antimicrobial activity against MRSA, E. coli, and P. aeruginosa, with significant Sortase A inhibition and low mammalian cell toxicity.
- Trans-chalcone (TC) and curcumin (CUR) exhibited significant toxicity to HEK-293 cells, while quercetin (QC) showed moderate toxicity.
Conclusions:
- Optimized screening conditions, including 5% DMSO in Mueller-Hinton Broth and broth microdilution with resazurin, are crucial for evaluating poorly soluble SrtAIs.
- Berberine (BR) emerges as a promising candidate for new antimicrobial formulations due to its potent activity, Sortase A inhibition, and favorable safety profile.
- The developed methodologies provide a framework for studying other challenging, poorly soluble antimicrobial agents and advancing anti-virulence drug development.
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