Isolation of Anaerobic Bacteria from Human Gingiva and Mouse Cecum by Means of a Simplified Glove Box Procedure

Author:

Aranki Alexander1,Syed Salam A.1,Kenney Ernest B.1,Freter Rolf1

Affiliation:

1. Department of Microbiology, The University of Michigan, Ann Arbor, Michigan 48104

Abstract

An anaerobic glove box constructed of clear flexible vinyl plastic is described. It is sufficiently inexpensive and simple in operation to be used not only in research but also in a clinical laboratory by technicians without special training. Conventional bacteriological techniques may be used inside the glove box for culturing and transferring anaerobic bacteria. The box may be heated to 37 C and thus serve as an anaerobic incubator as well, permitting inspection of cultures at any time. Media may be prepared and agar plates may be poured on the laboratory bench in the conventional manner. An overlay of trace amounts of palladium black catalyst over plated agar media reduces the medium to an oxidation-reduction (O-R) potential of - 300 mv within 2 days after introduction into the glove box. In spite of its greater simplicity, the system matched or excelled the roll tube method with respect to all parameters tested, including O-R potential obtainable in the media, O 2 concentration in the gas phase, and efficiency in isolating anaerobic bacteria from the mouse cecum. Comparative studies indicate that the conventional anaerobic jar method was inadequate for the isolation of strict anaerobes from human gingival specimens and from the mouse cecum. This was due to the exposure of specimens and media to air during plating on the open laboratory bench. Anaerobic jars were adequate for maintaining the proper conditions for growth of anaerobic bacteria once these had been established in the glove box. Images

Publisher

American Society for Microbiology

Subject

General Pharmacology, Toxicology and Pharmaceutics,General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

Reference15 articles.

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3. Hewitt L. F. 1950. Oxidation-reduction potentials in bacteriology and biochemistry. E. S. Livingstone Edinburgh.

4. The anaerobic mesophilic cellulolytic bacteria;Hungate R. E.;Bacteriol. Rev.,1950

5. The rumen bacteria and protozoa;Hungate R. E.;Ann. Rev. Microbiol.,1964

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