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Biomedical subjects

J B Babcock

Publications and source records attributed to J B Babcock.

5 recordsLinked to original sources

Institution-specific versus published in vitro antimicrobial susceptibility data in making formulary decisions.

The results of susceptibility testing of 549 isolates of gram-negative organisms to 17 antimicrobial agents were compared with published reports of the sensitivity of those organisms to those agents. All gram-negative bacilli isolated from cultures obtained from hospitalized patients during a three-month period were preserved for antimicrobial sensitivity testing. Standard Kirby-Bauer disk diffusion susceptibility tests were performed using 17 broad-spectrum antimicrobial agents that either were included in the hospital formulary or were being considered for inclusion. Organisms were recorded as being sensitive or resistant to each drug, and the results were compared with the published results of in vitro sensitivity studies. When the results of actual antimicrobial sensitivity testing varied from published results, the discordant results were assigned a ranking of 1 to 4 based on the percentage difference. In 34 of 77 drug-organism pairs tested, the results of susceptibility testing differed by more than 10% cumulative susceptibility from published values; 26 of these represented instances in which the results of actual testing were at least 10% less than published values. For seven of the antimicrobial agents that were being considered for inclusion in the hospital formulary, results indicating unexpectedly suboptimal activity against institutional pathogens were a determinant in eliminating the agents from further consideration. In vitro testing of antimicrobial susceptibility of local pathogens can be a better method of predicting the susceptibility of such pathogens to new antimicrobial agents than relying on published susceptibility data. Pharmacy and therapeutics committees should consider testing prevalent institutional pathogens for susceptibility to all antimicrobial agents that are proposed additions to the formulary.

Aminoglycosides

Use of casein, tyrosine, and hypoxanthine in the identification of nonfermentative gram-negative bacilli.

Four hundred and five (405) strains of nonfermentative gram-negative bacilli (NFB) were identified using conventional tests. The NFB studied include 323 originating from clinical specimens, 37 from environmental samples, and 45 authentic strains from other workers and from our culture collections. All these strains were studied for their ability to degradate casein, tyrosine, and hypoxanthine. It was found that these tests are useful in identifying NFB within 24 to 48 h when used with other tests.

Bacteria

Tyrosine degradation in presumptive identification of Peptostreptococcus anaerobius.

A new tyrosine medium was developed and evaluated for the differentiation of Peptostreptococcus anaerobius from other anaerobic, gram-positive cocci. The strains included 159 originating from clinical specimens and 13 reference strains received from other workers in the field. Only one strain of each species was included in the study from multiple cultures from the same patient. This medium is simple to prepare and can be used in a small clinical laboratory. One hundred seventy-two strains of anaerobic gram-positive cocci were grown and evaluated with the new tyrosine medium; 36 strains (100%) of P. anaerobius degradated the tyrosine crystals when incubated at 37 degrees C under anaerobic conditions in a GasPak jar (Baltimore Biological Laboratory) for approximately 72 h. On the other hand, 135 of 136 other anaerobic gram-positive cocci were negative for tyrosine degradation, but grew on the tyrosine agar plate when incubated anaerobically. The single strain that degraded tyrosine was 1 of the 13 isolates of Peptostreptococcus micros studied.

Anaerobiosis

Colonization of intensive care unit patients with gram-negative bacilli.

A prospective study of 64 patients admitted to a medical intensive care unit and 86 patients admitted to a surgical intensive care unit was done to determine the frequency of pharyngeal, intestinal, and tube site colonization with Gram-negative bacilli. Studies were carried out over a 13-week period. The pharyngeal carrier rate among the surgical patients increased by a total of 34 strains compared to 14 strains among medical patients. Similarly, the intestinal carrier rate increased by 35 strains compared to 12 strains. The increased carriage in surgical patients was related more to the presence of indwelling tubes and colonization of multiple sites in the same patient than to the use of antimicrobial drugs. Pharyngeal and rectal colonization in medical patients was related to antibiotic therapy. Indwelling tubes were used predominately in surgical patients and were a significant reservoir of these organisms.

Anti-Bacterial Agents