International Journal of Molecular Sciences · 2019 · 31 citations · 38 references
Antibiofilm strategies may be based on the prevention of initial bacterial adhesion, the inhibition of biofilm maturation or biofilm eradication. N-acetyl-L-cysteine (NAC), widely used in medical treatments, offers an interesting approach to biofilm destruction. However, many Eubacteria strains are able to enzymatically decompose the NAC molecule. This is the first report on the action of two hybrid materials, NAC-Si-1 and NAC-Si-2, against bacteria isolated from a water environment: <i>Agrobacterium tumefaciens</i>, <i>Aeromonas hydrophila</i>, <i>Citrobacter freundii</i>, <i>Enterobacter soli</i>, <i>Janthinobacterium lividum</i> and <i>Stenotrophomonas maltophilia</i>. The NAC was grafted onto functional siloxane polymers to reduce its availability to bacterial enzymes. The results confirm the bioactivity of NAC. However, the final effect of its action was environment- and strain-dependent. Moreover, all the tested bacterial strains showed the ability to degrade NAC by various metabolic routes. The NAC polymers were less effective bacterial inhibitors than NAC, but more effective at eradicating mature bacterial biofilms.
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Ann-Cathrin Olofsson, Malte Hermansson, Hans Elwing · Applied and Environmental Microbiology · 2003 · 244 citations · Full text
N-acetylcysteine inhibit biofilms produced by Pseudomonas aeruginosa
Tiemei Zhao, You-ning Liu · BMC Microbiology · 2010 · 216 citations · Full text