Radiometric studies of mycobacterium tuberculosis
- 1. Sao Paulo Univ., SP (Brazil). Centro de Medicina Nuclear
Description
An in vitro assay system that included automated radiometric quantification of 14CO2 released as a result of oxidation of 14C substrates was applied for studying the metabolic activity of M. tuberculosis under various experimental conditions. These experiments included the study of a) mtabolic pathways, b) detection times for various inoculum sizes, c) effect of filtration on reproducibility of results, d) influence of stress environment e) minimal inhibitory concentrations for isoniazid, streptomycin, ethambutol and rifampin, and f) generation times of M. tuberculosis and M. bovis. These organism were found to metabolize 14C-format, (U-14C) acetate, (U-14C) glycerol, (1-14C) palmitic acid, 1-14C0 lauric acid, (U-14C) L-malic acid, (U-14C) D-glucose, and (1-14C) D-glucose, but not (1-14C0 L-glucose, (U-14C) glucine, or (U-14C) pyruvate to 14CO2. By using either 14C-formate, (1-14C) palmitic acid, or (1-14C) lauric acid, 107 organisms/vial could be detected within 24 48 hours and as few as 10 organisms/vial within 16-20 days. Reproducible results could be obtained without filtering the bacterial suspension, provided that the organisms were grown in liquid 7H9 medium with 0.05% polysorbate 80 and homogenized prior to the study. Drugs that block protein synthesis were found to have lower minimal inhibitory concentrations with the radiometric method when compared to the conventional agar dilution method. The mean generation time obtained for M. bovis and different strains of M. tuburculosis with various substrates was 9 ± 1 hours. (author)
Abstract (Portuguese)
estudos radiometricos com o Mycobacterium tuberculosis. A atividade metabolica do M. tuberculosis sob diversas condicoes experimentais foi estudada utilizando um sistema radiometrico automatico, capaz de quantificar o 14CO2 produzido pela oxidacao de substancias marcadas com carbono-14. As experiencias realizadas incluiram: a) vias metabolicas; b) determinacao dos tempos de deteccao para inoculacoes de diversas magnitudes; c) efeito da filtracao sobre a reprodutibilidade dos resultados; d) influencia de meio hostil; e) determinacao das concentracoes inibitorias minimas para hidrazida, estreptomicina, etambutol e rifampicina f) tempo de duplicacao para o M. tuberculosis e M. bovis. estes microorganismos metabolizaram ate 14CO2 o 14C-formato, (U-14C) acetato, (U-14C) glicerol, (1-14C) acido palmitico, (1-14C) acido laurico, (U-14C) L-acido melico, (U-14C) D-glicose e (1-14C) D-glicose, mas nao (1-14C) L-glicose, (U-14C) glicina ou (U-14C) piruvato. Usando 14C-formato, (1-14C) acodp palmitico ou (1-14C0 acido laurico foi possivel detectar 10 bacilos/frasco em 24-48 horas e ate 10 bacilos/frasco em 16-20 dias. Resultados reprodutiveis foram obtidos sem filtrar a suspensao de bacterias, desde que cultivadas em meio 7H9 liquido com 0,05% de polissorbato 80 e homogenizadas antes da experiencia. Drogas que bloqueiam a sintese proteica apresentaram concentracao inibitoria minima menor com o metodo radiometrico do que com o convencional. O tempo medio de duplicacao para o M. bovis e varais cepas de M. tuberculosis com diversas substancias marcadas foi 9 ± 1 horas. (autor)Additional details
Publishing Information
- Journal Title
- Revista do Instituto de Medicina Tropical de Sao Paulo
- Journal Volume
- 29
- Journal Issue
- 1
- Series
- Rev. Inst. Med. Trop. Sao Paulo.
- Journal Page Range
- 18-25
- ISSN
- 0036-4665
- CODEN
- RMTSA
INIS
- Country of Publication
- Brazil
- Country of Input or Organization
- Brazil
- INIS RN
- 21067209
- Subject category
- S63: RADIATION, THERMAL, AND OTHER ENVIRONMENTAL POLLUTANT EFFECTS ON LIVING ORGANISMS AND BIOLOGICAL MATERIALS;
- Descriptors DEI
- CARBON 14; IN VITRO; MYCOBACTERIUM TUBERCULOSIS; RADIOMETRIC ANALYSIS
- Descriptors DEC
- BACTERIA; BETA DECAY RADIOISOTOPES; BETA-MINUS DECAY RADIOISOTOPES; CARBON ISOTOPES; CHEMICAL ANALYSIS; EVEN-EVEN NUCLEI; ISOTOPES; LIGHT NUCLEI; MICROORGANISMS; MYCOBACTERIUM; NUCLEI; QUANTITATIVE CHEMICAL ANALYSIS; RADIOISOTOPES; YEARS LIVING RADIOISOTOPES