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Biomedical subjects

A C Jason

Publications and source records attributed to A C Jason.

4 recordsLinked to original sources

Automatic procedures for measuring post-antibiotic effect and determining random errors.

Four methods are described for determining the post-antibiotic effect (PAE) automatically using the high resolution capabilities of the conductance measurement of bacterial growth. The time resolution of each method is derived by a statistical procedure for calculating random error from the component errors involved in each determination. The procedures are illustrated using data generated from the measurements of the growth of Escherichia coli NCTC 4174 after exposure of cultures to five antibiotic concentrations. Excellent agreement was found to exist between three of the four methods. However, that based on the determination of the time of peak growth rate is shown to provide better resolution than the other methods, i.e., those based on growth to 10(7) organisms/mL, the duration of the lag phase or the mean retardation of growth averaged over the entire period of observation. The results strongly suggest that PAE may be ascribed entirely to a prolongation of lag time.

Anti-Bacterial Agents

Use of the Malthus Microbial Growth Analyser to study the post antibiotic effect of antibiotics.

The post antibiotic effect (PAE) of ceftazidime, ciprofloxacin, mecillinam and imipenem alone and in combination against Gram-negative bacteria was assessed by a new technique using a Malthus Microbial Growth Analyser. Ciprofloxacin gave the most prolonged and consistent PAE (1.3-2.9 h) and imipenem also gave a significant PAE against some bacterial strains (up to 1.3 h). The PAE of both antibiotics was dependent on concentration. The PAE of combinations of ciprofloxacin and imipenem often showed less PAE than was present with either agent alone. Ceftazidime gave no significant PAE (-1.5-0.4 h), though mecillinam consistently gave a short PAE (approximately 0.5 h) against Escherichia coli. The new method allows for the rapid and labour saving evaluation of PAE. We believe that further studies on PAE of antibiotic combinations are desirable.

Amdinocillin

A deterministic model for monophasic growth of batch cultures of bacteria.

Experimental observations of bacterial numbers employing high resolution electrical conductance measurements of the culture provide the basis for a proposed deterministic model of monophasic growth of populations in batch culture. The model postulates that the production and growth of each bacterium is accompanied by the generation of a constant mass of toxic end-products and that specific growth rate declines in proportion to the ratio of the accumulated mass of these substances to the dry mass of the nutrient medium when the substrate is non-limiting. The theoretical relationship is found to fit extensive data for Escherichia coli (NCIB 9132) very closely and offers an analytical basis for the logistic curve frequently observed to represent the time-dependence of growth. These data incidentally provide substantial evidence that lag time and generation time are each independent of both inoculum number and concentration of the medium.

Bacteria