Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Bacteroidaceae”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

[In vitro activity of mezlocillin, azlocillin and carbenicillin against bacteroidaceae with particular reference to bacteroides fragilis (author's transl)].

The in vitro susceptibility of approximately 90 Bacteroidaceae strains to the the new broad-spectrum penicillins mezlocillin and azlocillin was determined by tube dilution tests and compared to susceptibility to carbenicillin. Bacteroides fragilis and Bacteroides thetaiotaomicron predominated among the strains tested. These strains are particularly important as pathogens and are known to produce beta-lactamase. At concentrations of 16 microng/ml or less, mezlocilin inhibited 81% of the Bacteroides cultures, and at 32 microng/ml 96% of the cultures. The amount of Bacteroides strains inhibited by 16 and 32 microng/ml of azlocillin was 67% and 93% respectively. Similar results were obtained with carbenicillin, concentrations of 32, 64 and 256 microng/ml inhibiting 55%, 87% and 94% of the strains respectively. Mezlocillin and azlocillin did not appear to be any more effective than carbenicillin against Sphaerophorus strains. Statistical analysis of the relationship between minimal inhibiting concentration and inhibition zone diameter showed that the susceptibility of Bacteroidaceae to mezlocillin, azlocillin and carbenicillin cannot be determined with sufficient accuracy by a standardized agar diffusion test.

Bacteroidaceae↗

Occurrence of Bacteroidaceae in vaginal secretions of healthy pregnant women and patients with colpitis.

The frequency of gram-negative non-sporing anaerobes with possible clinical significance was studied in healthy pregnant women and in patients with non-Candida vaginitis. Only 4% of the healthy pregnant women studied yielded anaerobes of the family Bacteroidaceae. However, the incidence of Bacteroidaceae in 58 patients with colpitis was 53.5%. The predominant anaerobic species was Bacteroides oralis.

Bacteroidaceae↗

Neuraminidase production by Bacteroidaceae.

The production of neuraminidase (EC 3.2.1.18) by 77 strains of Bacteroidaceae was investigated by techniques previously used to study neuraminidase production by clostridia. Conditions for culture and assay of Bacteroides fragilis neuraminidase were characterised. The enzyme is predominantly cell associated; it is not calcium dependent and the pH optimum for its production is c. 4.5. Most neuraminidase-positive Bacteroides strains produced the enzyme well in the test media but a few strains failed to produce it consistently in one or other of the media. Because of these occasional variations, strains were grown and tested in at least two media before being defined as neuraminidase negative. Within the B. fragilis group of species, B. fragilis, B. vulgatus, B. distasonis, B. ovatus, B. thetaiotaomicron and B. variabilis were neuraminidase positive while B. eggerthii, B. uniformis and B. splanchnicus were negative. Two subspecies of B. melaninogenicus (ss. melaninogenicus and ss. levii) were positive but the other (ss. intermedius) was negative. Strains of B. oralis and B. bivius produced the enzyme while B. ruminicola, B. disiens, B. asaccharolyticus and B. corrodens did not. The microaerophilic B. ochraceus were also positive. None of the Fusobacterium or Leptotrichia species tested produced neuraminidase. Our results for neuraminidase production are consistent for all strains of each species examined and we suggest that tests for neuraminidase production would be a valuable addition to biochemical tests currently used in taxonomic studies of the Bacteroidaceae.

Bacteroidaceae↗

Clinical spectrum of bacteroidaceae in a tertiary care hospital.

Members of Bacteroidaceae family are the most commonly isolated anaerobic pathogens in humans. This study summarises our experience of isolation and antimicrobial susceptibility pattern of these anaerobes from diverse clinical infections in a tertiary care hospital. Over a period of 5 years, 611 samples were received for anaerobic culture. Of these, 53 specimens yielded 62 anaerobic isolates. Thirty of the 62 isolates (48.4%) belonged to Bacteroidacea family obtained from 29 patients. They comprised of 14 (14/32; 43.7%) Prevotella spp., 13 (13/32; 40.6%) Bacteroides spp., 3 (3/32; 9.3%) Porphyromonas spp and Fusobacterium (2/32; 6.2%). In 14 of 27 patients (48%) the infection was polymicrobial. All the isolated strains were sensitive to metronidazole. This study highlights need for adopting anaerobic culture technique as a routine diagnostic procedure and constant monitoring of antimicrobial susceptibility of all anaerobic isolates.

Bacteremia↗

Dehydrogenase patterns in the study of Bacteroidaceae.

Enzyme patterns were obtained by starch-gel electrophoresis of cell-free extracts from organisms in the family Bacteroidaceae. Esterases, phosphatases, and lactic and succinic dehydrogenases were detected but offered no possibility for classification purposes. Alpha-glycerophosphate dehydrogenase and 6-phosphogluconate dehydrogenase were not detected. Zymograms of malic, glutamic, and glucose-6-phosphate dehydrogenases separated Bacteroides species from Sphaerophorus and Fusobacterium species. Malic dehydrogenase and glucose-6-phosphate dehydrogenase were found in Bacteroides but not Sphaerophorus and Fusobacterium. These dehydrogenase zymograms placed three gram-negative, nonsporeforming anaerobic rod isolates with the Bacteroides species. A close correlation was found between the classification of Bacteroidaceae by zymogram analysis and a numerical taxonomy scheme previously published from this laboratory.

Bacteria↗

Oxygen activation and defence against oxygen toxicity in a psychrophilic Bacteroidaceae.

When suddenly exposed to air the growth of the obligate anaerobic bacterium of the bacteroidaceae type, strain B6, continues for a few hours before coming to a complete stop. When air is shut off soon after growth has ceased, the organism is able to reestablish anaerobic conditions due to an ability to reduce O2, and resumes normal growth after another few hours. The O2 reducing ability of the organism is due to the presence in the cells of a particle-bound NADH oxidase, a soluble NADPH oxidase and a soluble pyruvate oxidase. The two pyridine nucleotide oxidases reduce O2 to H2O2, the pyruvate oxidase reduces O2 to H2O. Catalase and peroxidase were not detected in anaerobically grown cells. Kinetic studies with cell-free extracts showed that the pyruvate oxidase had a considerably greater affinity (smaller Km) for O2 and capacity (higher Vmax) for O2 reduction than the two other oxidases. It is postulated that the pyruvate oxidase acts as a scavenger for O2, leading to the non-toxic reduction product H2O, and thus functions as a defense mechanism against oxygen toxicity when the organism is exposed to aerobic condition.

Air Microbiology↗

[In vitro susceptibility of bacteroidaceae to cefoxitin and cephalothin (author's transl)].

The activity of the new cephamycin C derivatives cefoxitin against 102 clinical isolates of Bacteroidaceae (95 Bacteroides strains and 7 Fusobacterium-Sphaerophorus cultures) was determined by tube dilution and standardized agar diffusion tests and compared to that of cephalothin. Cefoxitin was more active than cephalothin against 56 Bacteroides fragilis strains, 19 Bacteroides thetaiota-omicron strains and two Bacteroides splanchnicus strains. The difference seemed less pronounced with five Bacteroides vulgatus and four Bacteroides variabilis cultures. Three Bacteroides melaninogenicus and six Bacteroides oralis strains displayed similar sensitivity to both cephalosporins. At concentrations of 32 microng/ml or less, cefoxitin inhibited 91% and cephalothin 33% of the Bacteroides strains. Two strains of Sphaerophorus varius were likewise much more sensitive to cefoxitin than to cephalothin (MIC values 8 micron8/ml of cefoxitin and 256 microng/ml of cephalothin). Three other Sphaerophorus strains (the species necrophorus and freundii/mortiferum) and two of Fusobacterium fusiforme (Fusobacterium nucleatum) strains were very similar in their susceptibility to both cephalosporins. Statistical analysis of the relationship between MIC and zone size diameter showed relatively high correlation coefficients for cefoxitin and cephalothin (r=-0.741 and r=-0.703 respectively).

Bacteroidaceae↗

Clinical significance of Bacteroidaceae.

Material from 50 patients with purulent otitis media was investigated. All patients had undergone surgical operation. The results indicate that anaerobic non spore-forming bacteria, especially gram-negative rods of the family Bacteroidaceae, may play an important role in the aetiology of purulent otitis media. In a further study, the pathogenicity of the isolated bacteria was investigated. For this purpose, guinea pigs were challenged by intramuscular injection of the organism. All of the isolated strains were sensitive to clindamycin.

Adolescent↗

Progress in the identification of nonmotile Bacteroidaceae from dental plaque.

Over the last decade, biochemical and chemical analyses have been used widely to study the intrageneric structure of Bacteroidaceae. New chromogenic substrates (e.g., naphthylamide-linked compounds) and fluorogenic substrates (e.g., 4-methylumbelliferyl or 7-amido-4-methyl-coumarin compounds) can be used to identify certain species within a few hours under aerobic conditions. Clarification of the taxonomy of many oral anaerobic species that are now considered important putative periodontal pathogens has permitted the development of panels of both polyclonal and monoclonal antibodies for their detection. Similarly, both DNA and RNA gene probes, derived through nucleic acid sequence analysis, have been constructed for several species; many such probes are now commercially available. In the long term, the application of these techniques will lead to a better understanding of the distribution, transmission, and ecological and clinical importance of many species that have hitherto remained poorly characterized.

Bacteroidaceae↗

In-vitro sensitivity of Bacteroidaceae, clostridia and propionibacteria to newer antimicrobial agents.

The susceptibility of 220 fresh clinical isolates of Bacteroidaceae, clostridia and propionibacteria to imipenem, ceftazidime, ciprofloxacin and four further substances were established by agar dilution tests. Imipenem was unique among the seven test antibiotics in that it was active against all the bacteria investigated. Whereas clindamycin suppressed all Gram-positive and 94 X 8% of the Gram-negative strains tested, and metronidazole was effective against all but the propionibacteria, ceftazidime and ciprofloxacin showed satisfactory activity against the Gram-positive bacteria only.

Anti-Bacterial Agents↗

Gas-lipuid chromatographic analysis of metabolic products in the identification of bacteroidaceae of clinical interest.

The acid end-products of 185 isolates from the family Bacteroidaceae were separated and analysed by gas-liquid chromatography on broth cultures. Different media were evaluated and definitive studies were performed in a fully supplemented complex medium. The limitations of this approach to the identification of a wide range of strains from various clinical sources were determined and the results were compared with those of a series of morphological, biochemical, tolerance and antibiotic-resistance tests. All test strains were identified to generic level by simple microscopic and colonial observations and GLC analysis; additional tests were required to allow species or subspecies identification of most strains. Population differences were detected between some species or subspecies isolated from different clinical sites by quantitative analyses of fatty acids, but individual strains could not always be separated because of overlapping ranges of distribution of acids that were common products of more than one species or subspecies. Small differences in minor products between different species or subspecies were variable and are not considered adequate for discrimination at these taxonomic levels without support from other observations. The potential application of the GLC technique to the rapid and accurate identification of these organisms in hospital laboratories is considered.

Bacteroidaceae↗

Composition of peptidoglycans in Bacteroidaceae: determination and distribution of lanthionine.

Peptidoglycans of organisms belonging to the strictly anaerobic family Bacteroidaceae were investigated for the presence of lanthionine. Different procedures for the quantitation of lanthionine were compared. Performic acid and peroxide oxidation procedures on 35S-labeled peptidoglycan from Fusobacterium nucleatum Fev1 resulted in low yields of cysteic acid (42 and 60%, respectively) and many other additional unidentified oxidation products. Lanthionine was, however, recovered in high yield (89% or more) from acid hydrolysates of unoxidized peptidoglycans. Lanthionine was found exclusively in some species of Fusobacterium, in particular F. nucleatum, F. necrophorum, F. russi, and F. gonidiaformans, for which lanthionine may be ascribed a function as a taxonomic marker. Peptidoglycans of these bacteria are thus proposed to belong to a new chemotype, assigned A1 delta. One strain of Fusobacterium, F. mortiferum VPI 0473 contained both lanthionine and diaminopimelic acid in about equal proportions. Species of F.plauti had a composition atypic of gram-negative cells. Chemotypic differences were also indicated among the species of Bacteroides investigated. Thus, some species contained lysine and not diaminopimelic acid as the major dibasic amino acid (e.g., F. asaccharolyticus). It is concluded that peptidoglycans of gram-negative organisms constitute a somewhat more heterogeneous group than hitherto assumed.

Alanine↗

Isolation and characterization of a cross-reacting antigen in strains of Bacteroidaceae.

A Bacteroidaceae cross-reacting antigen (BCA) was isolated from several strains belonging to species in the genera Fusobacterium and Bacteroides. We showed that each of the 28 strains examined synthesized either BCA or the O-specific lipopolysaccharide (LPS). The structural difference between the two antigens was demonstrated by passive hemagglutination. BCA coated erythrocytes spontaneously and reacted with equal intensity to all bacterial antisera of BCA+ strains, whereas LPS was species specific and also coated erythrocytes after the antigen was treated with NaOH. BCA is an acid polysaccharide as proven by immunoelectrophoresis and by its capacity to form a salt linkage with lysozyme. Chemical analysis demonstrated the presence of galactosamine, glucosamine, galactose, glucose, mannose, and N-acetyl. BCA was nontoxic and did not contain lipid A in its molecule. The small particle size of BCA determined its hapten character. When attached to acid-treated Salmonella minnesota Re cells, it acted as an immunogen. By immunizing rabbits with this hapten-bacterial cell suspension, we obtained a highly potent antiserum that agglutinated all BCA+ strains.

Antigens, Bacterial↗

Cellulose degradation by a new isolate from sewage sludge, a member of the Bacteroidaceae family.

A mesophilic anaerobe, a member of the Bacteroidaceae family (NRC2248), isolated from a cellulose-enrichment culture, digested untreated Whatman cellulose powder and HCl-treated cotton battings while producing hydrogen, carbon dioxide, cellobiose, glucose, and acetic acid as the sole volatile acid. This organism also utilized cellobiose as carbon and energy source but did not utilize glucose. It grew well in synthetic medium containing ammonium salts as nitrogen source and having a pH value of 7.0-7.1 and an Eh value of -160mV or lower. The nutrient requirements of this organism were found to be similar to those of other anaerobes except for Na2S which inhibited cellulose degradation in concentrations above 0.75 mM. Best cellulose degradation occurred under an atmosphere of 80% N2-20% CO2. Use of H2 or 80% H2-20% CO2 as headspace gas inhibited growth. Although accumulation of acetic acid in about 15-16 mM concentrations inhibited the further formation of H2, CO2, and acetic acid in the broth, it did not stop the degradation of cellulose. The results indicate that this organism has the ability to grow in media containing up to 20 g/L of cellulose and to produce industrially important and easily separable end products from cellulose.

Acetates↗

Neuraminidases of Bacteroidaceae die neuraminidasen von bacteroidaceen.

Neuraminidases can be detected in members of the anaerobic gram-negative non-sporing rods (Bacteroidaceae), especially in the genus Bacteroides. B. fragilis, the most virulent species, has the highest neuraminidase activity, while the other intestinal species exhibit markedly lower activities or the enzyme is completely absent. Members of the Bacteroides oralis group, so far investigated, degrade only substrates of lower molecular weight.

Anaerobiosis↗

Role of complement in host resistance against members of the Bacteroidaceae.

Considerable evidence has been reported in recent years suggesting that complement plays an important role in host resistance against members of the Bacteroidaceae. Most of the investigations in this area have focused on the genus Bacteroides because of its clinical importance. Various species of Bacteroides have been shown to activate the complement system in vitro via the classical and alternative pathways. Complement activation results in the generation of chemotactic factors that mobilize polymorphonuclear leukocytes to sites of infection. Activated complement also facilitates bacteriolysis and opsonophagocytic killing by polymorphonuclear leukocytes and macrophages. Strains possessing dense fibrillar polysaccharide capsules are resistant to both of these defense mechanisms. The putative importance of complement-dependent bacteriolysis and opsonophagocytic killing in resistance against Bacteroides infections in vivo requires confirmation. In addition, the role of complement in synergistic interactions between Bacteroides and facultative bacteria remains to be elucidated.

Antibodies, Bacterial↗

Growth of Bacteroidaceae in stirred fermentors.

The conditions for increasing bacterial yields in cultures of Bacteroidaceae by the use of stirred fermentors and pH control were investigated by means of three representative species: Sphaerophorus necrophorus, Bacteroides fragilis, and B. melaninogenicus. A medium containing tryptone, yeast extract, and glucose or sucrose was used. Horse serum had to be added to obtain substantial growth of B. melaninogenicus. The optimal pH for growth rate and yield was 7.0 to 7.2. Lysis of the bacteria occurred when the glucose (or sucrose) was exhausted. The rate of lysis was very high in cultures of S. necrophorus, less so in B. fragilis and B. melaninogenicus. Pleomorphism, manifested as large sperical forms of the bacteria, was observed in the late logarithmic phase of S. necrophorus. Great differences in the length of the lag phase and of the mean generation time were found among the three bacterial species. The yield in static cultures of the three species without pH control was approximately 0.4 g of dry cells per liter, but was increased, in stirred fermentors with pH control, to 3.5 g (S. necrophorus), 2.7 g (B. fragilis), and 4.3 g (B. melaninogenicus) per liter. With an inoculum density of 5 to 10 mg (dry weight) per liter, these yields were obtained in approximately 10 (S. necrophorus), 25 (B. fragilis), and 35 hr (B. melaninogenicus), respectively.

Bacteriological Techniques↗