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P. aeruginosa, Aeromonas spp., and S. maltophilia showed sustained levels of susceptibility to several antimicrobial agents in the two time periods, whereas A. baumannii exhibited very high rates of resistance to most antimicrobial agents including imipenem.
CRRT significantly influences the pharmacokinetic and pharmacodynamic behavior of most antimicrobial agents.
Standard minimum inhibitory and bactericidal concentrations are not established for most antimicrobial agents against strains of bacteria commonly used for quality control in susceptibility testing.
Biofilms formed by fungal organisms are associated with drastically enhanced resistance against most antimicrobial agents, contributing to the persistence of the fungi despite antifungal therapy.
As opposed to most antimicrobial agents currently used for air disinfection, essential oils are low in toxicity and could be used in different environments, while people are present.
Biofilms formed by fungal organisms are associated with drastically enhanced resistance against most antimicrobial agents, contributing to the persistence of the fungi despite antifungal therapy [20, 24].
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The capacity of nanosilver (Ag nanoparticles) to destroy infectious micro-organisms makes it one of the most powerful antimicrobial agents, an attractive feature against 'super-bugs' resistant to antibiotics.
Compounds 3 and 4 showed stronger inhibition of Gram-positive bacteria and fungi growth, and the antimicrobial ability of compound 3j (a 4- benzylamino -5-chloro-2,6-difluoro 4- benzylamino -5-chloro-2,6-difluoro 4- benzylamino -5-chloro-2,6-difluoro 4- benzylamino -5-chloro-2,6-difluoro 4- benzylamino -5-chloro-2,6-difluoro 4- benzylamino -5-chloro-2,6-difluoro
Azole antifungals as the most interacting antimicrobial agents precipitated metabolism inhibition of CYP3A substrates.
The amido- and sulfonamidopyrimidine containing polymers exhibited most potent antimicrobial agents in the present series.
Among the entire synthesized derivatives, compounds, a4 and a5 were found to be the most active antimicrobial agents (Table 2, Fig. 2).
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