TY - JOUR
T1 - Rapid detection and respirometric profiling of aerobic bacteria on panels of selective media
AU - Jasionek, G.
AU - Ogurtsov, V.
AU - Papkovsky, D.
PY - 2013/2
Y1 - 2013/2
N2 - Aims: To evaluate high-throughput optical oxygen microrespirometry for selective detection and predictive identification of aerobic bacteria. Methods and Results: Using GreenLight probe, standard 384-well plates and time-resolved fluorescence reader, a representative panel of 16 partially selective media and 9 aerobic bacteria (Escherichia coli, Bacillus cereus, Staphylococcus aureus, Campylobacter jejuni, Yersinia enterocolitica, Pseudomonas aeruginosa, Streptococcus pyogenes, Salmonella typhimurium and Listeria innocua) were analysed. For each medium, bacterial strain and dilution, growth profiles were recorded, from which calibrations, doubling/generation times and growth patterns in different media were determined. Analytical performance, selectivity and general usability of the method were assessed, and mixed bacterial cultures were analysed. Conclusion: The microrespirometry platform facilitates simple, real-time detection and predictive identification of aerobic bacteria by looking at the patterns of their growth and respiration in several media and determining their growth and doubling times. Significance and Impact of the Study: The new screening method can be used for routine microbiological analysis and testing of aerobic bacterial cultures as well as complex food, environmental and clinical samples.
AB - Aims: To evaluate high-throughput optical oxygen microrespirometry for selective detection and predictive identification of aerobic bacteria. Methods and Results: Using GreenLight probe, standard 384-well plates and time-resolved fluorescence reader, a representative panel of 16 partially selective media and 9 aerobic bacteria (Escherichia coli, Bacillus cereus, Staphylococcus aureus, Campylobacter jejuni, Yersinia enterocolitica, Pseudomonas aeruginosa, Streptococcus pyogenes, Salmonella typhimurium and Listeria innocua) were analysed. For each medium, bacterial strain and dilution, growth profiles were recorded, from which calibrations, doubling/generation times and growth patterns in different media were determined. Analytical performance, selectivity and general usability of the method were assessed, and mixed bacterial cultures were analysed. Conclusion: The microrespirometry platform facilitates simple, real-time detection and predictive identification of aerobic bacteria by looking at the patterns of their growth and respiration in several media and determining their growth and doubling times. Significance and Impact of the Study: The new screening method can be used for routine microbiological analysis and testing of aerobic bacterial cultures as well as complex food, environmental and clinical samples.
KW - Food safety
KW - High throughput
KW - Oxygen
KW - Selective identification
UR - https://www.scopus.com/pages/publications/84872379920
U2 - 10.1111/jam.12049
DO - 10.1111/jam.12049
M3 - Article
C2 - 23107004
AN - SCOPUS:84872379920
SN - 1364-5072
VL - 114
SP - 423
EP - 432
JO - Journal of Applied Microbiology
JF - Journal of Applied Microbiology
IS - 2
ER -