Efficacies of selected disinfectants against Mycobacterium tuberculosis

Author:

Best M1,Sattar S A1,Springthorpe V S1,Kennedy M E1

Affiliation:

1. Laboratory Centre for Disease Control, Health and Welfare Canada, Ottawa, Ontario.

Abstract

The activities of 10 formulations as mycobactericidal agents in Mycobacterium tuberculosis-contaminated suspensions (suspension test) and stainless steel surfaces (carrier test) were investigated with sputum as the organic load. The quaternary ammonium compound, chlorhexidine gluconate, and an iodophor were ineffective in all tests. Ethanol (70%) was effective against M. tuberculosis only in suspension in the absence of sputum. Povidone-iodine was not as efficacious when the test organism was dried on a surface as it was in suspension, and its activity was further reduced in the presence of sputum. Sodium hypochlorite required a higher concentration of available chlorine to achieve an effective level of disinfection than did sodium dichloroisocyanurate. Phenol (5%) was effective under all test conditions, producing at least a 4-log10 reduction in CFU. The undiluted glutaraldehyde-phenate solution was effective against M. tuberculosis and a second test organism, Mycobacterium smegmatis, even in the presence of dried sputum, whereas the diluted solution (1:16) was only effective against M. smegmatis in the suspension test. A solution of 2% glutaraldehyde was effective against M. tuberculosis. This investigation presents tuberculocidal efficacy data generated by methods simulating actual practices of routine disinfection.

Publisher

American Society for Microbiology

Subject

Microbiology (medical)

Reference18 articles.

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3. Effect of methodology, dilution, and exposure time on the tuberculocidal activity of glutaraldehyde-based disinfectants;Cole E. C.;Appl. Environ. Microbiol.,1990

4. Collins C. 1988. Decontamination p. 165. In C. H. Collins (ed.) Laboratory-acquired infections. Butterworth & Co. Ltd. London.

5. Crowshaw B. 1971. The destruction of mycobacteria p. 419-449. In W. B. Hugo (ed.) Inhibition and destruction of the microbial cell. Academic Press Inc. (London) Ltd. London.

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