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Streptococcus mitis infection in newborns.

Although neonatal infections caused by Streptococcus viridans have been suggested to be less severe than those caused by classic neonatal pathogens, little is known about neonatal infections caused by specific species within this group of bacteria. We report six infants who had S. mitis isolated from blood culture. All were infected at < or = 3 days of age; five of the mothers had perinatal risk factors for neonatal sepsis. Five infants were preterm and three had birth weights < or = 2500 gm. Hematologic abnormalities were common. Two died as a result of the infection. Antibiotic susceptibility testing of four isolates revealed resistance to penicillin and ampicillin in three and resistance to gentamicin in two. In vivo resistance was not observed. S. mitis is not part of normal skin flora, should not be assumed to be a contaminant, and can cause severe neonatal disease. If S. mitis or S. viridans are recovered from a normally sterile body site and the patient fails to improve with penicillin therapy, it seems prudent to switch to vancomycin until susceptibility results are available.

Anti-Bacterial Agents↗

Evaluation of co-aggregation among Streptococcus mitis, Fusobacterium nucleatum and Porphyromonas gingivalis.

AIMS: To develop a semi-quantitative method for evaluating co-aggregation reactions among three bacterial species, and to examine the influence of Fusobacterium nucleatum on the adherence of Porphyromonas gingivalis. METHODS AND RESULTS: The method involves coating hydroxyapatite (HAP) discs with streptococcal cells and treatment with radio-labelled bacterial cell suspensions. The sensitivity of the method was estimated by comparison with a turbidometric co-aggregation assay. Results from the two methods were in close agreement. Streptococcus mitis-coated HAP discs were immersed in a 3H-labelled Fus. nucleatum cell suspension and then a 14C-labelled P. gingivalis cell suspension. The discs were then pyrolysed to recover and quantify the released 3H and 14C radioactivity. The number of Fus. nucleatum cells on the discs increased with immersion time and this, in turn, resulted in elevated adherence of P. gingivalis. CONCLUSION: The data indicate that the method closely reflects co-aggregation characters, and that Fus. nucleatum has a positive effect on the adherence of P. gingivalis. SIGNIFICANCE AND IMPACT OF THE STUDY: The present method, which is designed to mimic the oral environment, should prove useful in the semi-quantitative evaluation of co-aggregation reactions.

Bacterial Adhesion↗