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Reaction of clinical isolates and typed strains of the family Bacteroidaceae with rabbit anti-Bacteroides sera examined by radial immunodiffusion.

Antisera were produced which were reactive with Bacteroides fragilis, B. gingivalis, or B. melaninogenicus subsp. melaninogenicus. Anti-B. gingivalis serum exhibited strong reactions with strains of homologous species and reacted with only one other species, B. thetaiotaomicron. Antigens shared by organisms of the B. fragilis group and B. melaninogenicus subspecies of the Bacteroidaceae must be considered when serological methods are used for their identification.

Antibodies, Bacterial↗

Perinatal septicemia due to the Bacteroidaceae.

Two cases of perinatal septicemia due to the Bacteroidaceae are discussed. In contrast to most cases of perinatal septicemia caused by aerobic bacteria, these cases were not associated with prolonged rupture of the fetal membranes.

Adolescent↗

Comparison of three methods of susceptibility testing of bacteroidaceae, peptococcaceae and other anaerobes to doxycycline.

The in vitro activity of doxycycline against 147 strains of gram-positive and gram-negative anaerobes was determined by broth dilution, agar dilution and agar diffusion tests. The strains were isolated from clinical specimens in 1977. Saccharolytic Bacteroides strains (39 B. fragilis, 6 B. thetaiotaomicron, 4 B. vulgatus) showed broth dilution MICs of less than or equal to 0.0625-4.0 microgram/ml after 5 h incubation and MICs of less than or equal to 16 microgram/ml after 15 h incubation at 37 degrees C. With strains of B. oralis, B. melaninogenicus ss. intermedius, B. corrodens, Veillonella sp. and Megasphaera elsdenii the broth dilution MICs were less than or equal to 0.0625-32 microgram/ml after 15 h incubation. Peptostreptococcus spp., Propionibacterium acnes, Eubacterium sp., Bifidobacterium sp. and Clostridium sp. had broth dilution MICs of less than or equal to 2 microgram/ml, whereas Peptococcus spp. were inhibited by less than or equal to 0.0625 to greater than 32 microgram/ml. With the great majority of strains tested, MICs were 2 to 256 times higher in agar than in broth dilution tests. Clinical and experimental studies seem to be needed to determine which of the in vitro data are correlated to the outcome of doxycycline therapy. Several groups and species were separately considered for statistical analysis of the relationship between zone size and MIC. With gram-positive anaerobes, correlation was poor between broth dilution MIC and zone size (correlation coefficients r = - 0.168 for Peptococcaceae, and r = - 0.108 for P. acnes). When calculating the regression lines for agar dilution MICs and zone diameters, a higher correlation was found (r = - 0.9 for Peptococcaceae; r = - 0.397 for P. acnes). With B. fragilis and other Bacteroides species correlation coefficients were r = - 0.807 to r = - 0.891 for broth and agar dilution MICs and zone size but stochastic linearity was lacking.

Anaerobiosis↗

Summer mastitis in heifers: studies on the seasonal occurrence of Actinomyces pyogenes, Peptostreptococcus indolicus and Bacteroidaceae in clinically healthy cattle in Denmark.

With the aim of investigating the seasonal occurrence of Actinomyces pyogenes, Peptostreptococcus indolicus, Bacteroides melaninogenicus ss. levii and Fusobacterium necrophorum, and thus the potential for development of summer mastitis, clinically healthy Danish Holstein-Friesian heifers due to calve in the autumn were sampled from the teat tip, the conjunctiva and the oral cavity at 2-6 week intervals from 1979 to 1981. The overall isolation rates of F. necrophorum, P. indolicus and B. melaninogenicus ss. levii, in order of significance, were significantly higher during the pasture period whereas no differences in isolation rates of A. pyogenes between housed and pastured animals were detected. F. necrophorum was recovered almost exclusively from the oral cavity, P. indolicus and A. pyogenes occurred most frequently in samples from the teat skin, whereas isolates of B. melaninogenicus ss. levii were evenly distributed between conjunctiva and teat tip samples. A distinct seasonal pattern of the isolation rates of summer mastitis pathogens was recorded, which corresponded closely to the seasonal activity of symbovine insects, in particular the headfly Hydrotaea irritans (Fallén). However, the high proportion of clinically healthy bacterial carriers as compared with the incidence of clinical disease strongly suggests that as yet unknown contributing or triggering factors, apart from the mere presence of the relevant bacterial species, are required for the establishment and development of clinical summer mastitis.

Actinomycosis↗

Bacteroidaceae in thromboembolic disease: effects of cell wall components on blood coagulation in vivo and in vitro.

The effects of Bacteroides sp., Fusobacterium mortiferum, Bacteroides fragilis, and Sphaerophorus necrophorus on various parameters of blood coagulation in vivo and in vitro were determined and compared to the coagulation effects of Escherichia coli and Salmonella minnesota, wild type and R595. Intravenous injection of washed cells, culture filtrate, lipopolysaccharide, or lipid A of the anaerobic gram-negative microorganisms into mice resulted in acceleration of coagulation. Lipopolysaccharide and lipid A of the anaerobic microorganisms had no apparent effect on circulating platelets in mice or rabbits and did not cause aggregation of human platelets in vitro. Washed cells, lipopolysaccharide, and lipid A of Bacteroides sp. and F. mortiferum also significantly accelerated the clotting time of recalcified platelet poor normal human plasma and C6-deficient rabbit plasma. Lipid A, but not lipopolysaccharide, of E. coli and washed cells of S. minnesota R595 accelerated coagulation by a similar mechanism. These results indicated that Bacteroides sp. and F. mortiferum can accelerate blood coagulation in vivo and in vitro by a mechanism which does not involve platelets or terminal components of complement.

Animals↗

Sensitivity of Bacteroidaceae to fosfomycin.

The sensitivity of 116 strains of Bacteroides fragilis and 60 strains of Sphaerophorus to fosfomycin was studied. Of the 178 strains that were tested, 156 were isolated from pathological products in our department and the remainder came from the following collections: NCTC, ATCC and the Institut fur Mikrobiologie of the University of Bonn. Identification was made morphologically and biochemically in accordance with the scheme which we usually employ and which has previously been published. The sensitivities were determined by the progressive dilution method in a solid medium with a surface inoculation of the strain. The results obtained show that no matter what kind of B. fragilis was tested, none of them were sensitive to concentrations of 200 mug/ml fosfomycin. On the other hand, all strains of Sphaerophorus were sensitive to lesser concentrations than the aforementioned. The majority of these concentrations subsequently lie within therapeutic margins. The conclusion drawn from our results is that the sensitivity to fosfomycin constitutes a test for differentiating Bacteroides from Sphaerophorus and that fosfomycin is ineffective in injections caused by Bacteroides, although it is an active antibiotic against infections caused by Sphaerophorus.

Anti-Bacterial Agents↗