Abstract
A total of 504 clinical isolates of the family Micrococcaceae were tested for coagulase, deoxyribonuclease, clumping factor, and phosphatase to determine whether there is a correlation between the results of these tests and the pathogenicity of staphylococci. In the tests for coagulase production, it was found that either human or rabbit plasma could be used with broth cultures, whereas rabbit but not human plasma was satisfactory when microorganisms removed from solid culture medium were used. Deoxyribonuclease production correlated better than the fermentation of mannitol with coagulase production. The use of methyl green, Toluidine Blue O, or acridine orange offered no advantage over the use of HCl for detecting the production of deoxyribonuclease. Neither the presence of clumping factor nor the production of phosphatase correlated well with coagulase production. Strains of staphylococci that did not produce coagulase and deoxyribonuclease were isolated as frequently as, and from a greater variety of clinical sources than, strains which produced these substances. It is concluded that the production of coagulase and deoxyribonuclease are properties of staphylococci which are not necessarily indicative of potential pathogenicity of the organisms for man.
MeSH Terms
Acridines
Agglutination Tests
Air Microbiology
Anaerobiosis
Animals
Antibodies/analysis
Bacteriological Techniques
Coagulase/biosynthesis
Culture Media
Deoxyribonucleases/biosynthesis
Evaluation Studies as Topic
Fermentation
Glucose/metabolism
Humans
Mannitol/metabolism
Methods
Phenolphthaleins
Phosphoric Monoester Hydrolases/biosynthesis
Plasma
Rabbits
Rosaniline Dyes
Staphylococcal Infections/microbiology
Staphylococcus/enzymology,growth & development,immunology,isolation & purification,metabolism,pathogenicity
Tolonium Chloride
Chemicals
Acridines
Antibodies
Coagulase
Culture Media
Phenolphthaleins
Rosaniline Dyes
Tolonium Chloride
Mannitol
Deoxyribonucleases
Phosphoric Monoester Hydrolases
Glucose
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Morton H E
Cohn J
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