A new technology of microdispersed silver in polyurethane induces antimicrobial activity in central venous catheters
- 1 January 1999
- journal article
- review article
- Published by Springer Nature in Infection
- Vol. 27 (S1), S16-S23
- https://doi.org/10.1007/bf02561612
Abstract
Metal ions or metal ions in complexes or compounds have been used for centuries to disinfect fluids, solids and tissues. The biocidal effect of silver, with its broad spectrum of activity including bacterial, fungal and viral agents, is particularly well known and the term “oligodynamic activity” was coined for this phenomenon. Silver ions have an affinity to sulfhydryl groups in enzyme systems of the cell wall, through which they interfere with the transmembranous energy transfer and electron transport of bacterial microorganisms. Silver ions also block the respiratory chain of microorganisms reversibly in low concentrations and irreversibly in higher concentrations. Binding to the DNA of bacteria and fungi increases the stability of the bacterial double helix and thus inhibits proliferation. There is no cross resistance with antibiotics and also no induction of antimicrobial resistance by silver ions. The concentrations required for bactericidal activity are in the range 10−9 mol/l. These concentrations can be achieved in solution by the interaction of metallic silver with electrolytes only if there is a large enough surface of silver. By a novel technology, metallic silver is distributed in submicron particles in polyurethane and results in a concentration of 0.8% in an active surface of 450 cm2/g polyurethane. Polyurethane is hygroscopic and rapidly attracts water; the interaction of electrolyte solutions with the extremely finely distributed silver throughout the polyurethane releases bactericidal concentrations of silver ions over a period of years to the surface of the material. The electronegatively charged surface of bacteria attracts the positively charged silver ions. The concentrations released from the polyurethane are far below the toxic concentrations for humans.Keywords
This publication has 34 references indexed in Scilit:
- The Broad-Spectrum Activity and Efficacy of Catheters Coated with Minocycline and RifampinThe Journal of Infectious Diseases, 1996
- Consequences of Intravascular Catheter SepsisClinical Infectious Diseases, 1993
- Cytotoxicity to Human Leukocytes by Topical Antimicrobial Agents Used for Burn CareJournal of Burn Care & Rehabilitation, 1993
- In vitro and in vivo effect of antibiotics on catheters colonized by staphylococciEuropean Journal of Clinical Microbiology & Infectious Diseases, 1992
- Bacterial interactions with silverBioMetals, 1990
- The molecular mechanisms of copper and silver ion disinfection of bacteria and virusesCritical Reviews in Environmental Control, 1989
- Silver-resistant Enterobacteriaceae from hospital patientsCanadian Journal of Microbiology, 1979
- ULTRAVIOLET IRRADIATION OF NUCLEIC ACIDS COMPLEXED WITH HEAVY ATOMS—III. INFLUENCE OF Ag + AND Hg 2+ ON THE SENSITIVITY OF PHAGE AND OF TRANSFORMING DNA TO ULTRAVIOLET RADIATIONPhotochemistry and Photobiology, 1973
- ULTRAVIOLET IRRADIATION OF NUCLEIC ACIDS COMPLEXED WITH HEAVY ATOMS‐II. PHOSPHORESCENCE AND PHOTODIMERIZATION OF DNA COMPLEXED WITH Ag*Photochemistry and Photobiology, 1973
- Mechanism of Prophylaxis by Silver Compounds against Infection of BurnsBMJ, 1970