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The antimicrobial screening revealed that 2-methoxyphenyl nitroimidazole enol 3i possessed stronger anti-P.
Consequently, antimicrobial screening using classical minimum inhibitory concentration (MIC) measurements is becoming obsolete.
The in vitro antimicrobial screening of synthesized compounds indicated that compounds q1, q16, q19 and q20 exhibited appreciable antimicrobial potential.
The present paper covers the synthesis, characterization, thermal behavior, and antimicrobial screening of homo- and copolymers of NPEMA with PCPMA.
An antimicrobial screening was performed against different bacterial and fungal strains and against the M. tuberculosis H37Rv strain.
The results of the antimicrobial screening data revealed that most of the tested compounds showed moderate to good microbial inhibitions.
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When validating the antimicrobial screens, the variability and reproducibility revealed remarkable low inter- and intra-assay CVs, which indicates low media batch variation and an excellent opportunity to detect also weak antimicrobial activity.
Resistance to all 12 antimicrobials screened was observed in 8 isolates (0.44%, 8/1,826).
All isolates were resistant to the other antimicrobials screened using the VITEK® 2 Compact system (Table 1).
Resistance to all 12 antimicrobials screened as part of this surveillance project was observed in 8 isolates (6 S. Typhimurium, a single S. serotype 4,5,12 i:- and a single Duisburg).
The overall positive predictive values of antimicrobial drug screening, diagnosis code screening, and the combination of both were similar to those observed in phase 1, with higher values for diagnosis codes.
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