Purpose: Free nitrous acid (FNA) has recently been demonstrated as an antimicrobial agent to a range of microorganisms. However, its antimicrobial mechanism is largely unknown. For this study Desulfovibrio vulgaris Hildenborough was selected to gain a systematic understanding of the antimicrobial me...
Purpose: Free nitrous acid (FNA) has recently been demonstrated as an antimicrobial agent to a range of microorganisms. However, its antimicrobial mechanism is largely unknown. For this study Pseudomonas aeruginosa PAO1 was selected to gain a systematic understanding of the antimicrobial mechanism o...
Sulfate reducing bacteria (SRB), which can produce hydrogen sulfide in sewers, can lead to severe odor problems and asset deterioration due to the sulfide induced concrete corrion. Recently, free nitrou acid (FNA) has been discovered as a promising antimicrobial agent to inhibit SRB activities there...
Purpose: Free nitrous acid (FNA) has recently been demonstrated as an antimicrobial agent to a range of microorganisms. However, its antimicrobial mechanism is largely unknown. For this study Pseudomonas aeruginosa PAO1 was selected to gain a systematic understanding of the antimicrobial mechanism o...
Transcriptional profile of Mycobacterium tuberculosis in in vitro acid-nitrosative multistress, comparing untreated control cells and bacteria under multi-stress. Two-condition experiment, MTB-K vs. MTB-ACID-NO treated. Biological replicates: 3 controls, 3 Acid-NO treated, independently grown and ha...
Little is known about the role of the transcription factor PPARÃ?/d in liver. Here we set out to better elucidate the function of PPARÃ?/d in liver by comparing the effect of PPARa and PPARÃ?/d deletion using whole genome transcriptional profiling and analysis of plasma and liver metabolites. In fed...
Transcriptional profile of Mycobacterium smegmatis in in vitro acid-nitrosative multistress, comparing untreated control cells and bacteria under multi-stress. Two-condition experiment, MSMEG-K vs. MSMEG-ACID-NO treated. Biological replicates: 3 controls, 3 Acid-NO treated, independently grown and h...
Purpose: Free nitrous acid (FNA) has recently been demonstrated as an antimicrobial agent to a range of microorganisms. However, its antimicrobial mechanism is largely unknown. For this study Desulfovibrio vulgaris Hildenborough was selected to gain a systematic understanding of the antimicrobial me...