Activities of Bismuth Thiols against Staphylococci and Staphylococcal Biofilms

Author:

Domenico Philip1,Baldassarri Lucilla2,Schoch Paul E.1,Kaehler Kristina3,Sasatsu Masanori4,Cunha Burke A.1

Affiliation:

1. Winthrop-University Hospital, Mineola, and State University of New York School of Medicine, Stony Brook, New York1;

2. Istituto Superiore de Sanitá, Rome, Italy2;

3. SurModics Inc., Eden Prairie, Minnesota3; and

4. Tokyo University of Pharmacy and Life Sciences, Tokyo, Japan4

Abstract

ABSTRACT Indwelling medical devices are associated with infectious complications. Incorporating antimicrobials into indwelling materials may reduce bacterial colonization. Bismuth thiols are antibiofilm agents with up to 1,000-fold-greater antibacterial activity than other bismuth salts. Staphylococci are particularly sensitive, as determined by agar diffusion and broth dilution susceptibility testing. Bismuth-ethanedithiol inhibited 10 methicillin-resistant Staphylococcus epidermidis strains at 0.9 to 1.8, Staphylococcus aureus ATCC 25923 at 2.4, and S. epidermidis ATCC 12228 at 0.1 μM Bi 3+ . Antiseptic-resistant S. aureus was sensitive to bismuth-2-3-dimercaptopropanol (BisBAL) at ≤7 μM Bi 3+ . Hydrogel-coated polyurethane rods soaked in BisBAL inhibited S. epidermidis for 39 days (inhibitory zone diameter in agar, ≥30 mm for >25 days). Slime from 16 slime-producing S. epidermidis strains was inhibited significantly by bismuth-3,4-dimercaptotoluene (BisTOL), but not by AgNO 3 , at subinhibitory concentrations. In conclusion, bismuth-thiols are bacteriostatic and bactericidal against staphylococci, including resistant organisms, but are also inhibitors of slime at subinhibitory concentrations. At subinhibitory concentrations, BisTOL may be useful in preventing the colonization and infection of indwelling intravascular lines, since staphylococci are important pathogens in this setting.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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