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.

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.