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Tigecycline (GAR-936) activity against Streptococcus gallolyticus (bovis) and viridans group streptococci.

Viridans group streptococci including Streptococcus gallolyticus (formerly S. bovis) represent serious invasive pathogens often associated with endocarditis or sepsis among immunocompromised or cancer patients. Tigecycline (GAR-936), the first clinically studied glycylcycline, has a potent gram-positive activity with a potential treatment option for these streptococcal infections. The studied collection (848 strains) included 100 isolates each of Streptococcus anginosus, Streptococcus constellatus, Streptococcus intermedius, Streptococcus mitis, Streptococcus oralis, Streptococcus salivarius, Streptococcus sanguis, and fewer strains of S. gallolyticus (98 strains) and Streptococcus mutans (50 strains). These strains were isolated from patients on 3 continents in the SENTRY Antimicrobial Surveillance Program and tested for susceptibility and interpreted by Clinical and Laboratory Standards Institute broth microdilution methods and criteria (< or = 0.25 microg/mL for tigecycline per US Food and Drug Administration). Penicillin susceptibility rates for the entire collection varied from 61% (S. sanguis) to 98% (S. constellatus), and macrolide susceptibility was also compromised (49-88%; average, 69%). Tigecycline was active against all isolates tested, in contrast to tetracycline resistance rates of 8-66%, and highest for S. gallolyticus. In conclusion tigecycline was quite active against bacteremic isolates of viridans group streptococci species and S. gallolyticus with an overall MIC90 at < or = 0.06 microg/mL; the highest MIC was only 0.25 microg/mL.

Anti-Bacterial Agents↗

Recent taxonomic changes for anaerobic gram-positive and selected gram-negative organisms.

The strains formerly classified as Streptococcus anginosus or "Streptococcus milleri" have now been recognized as three distinct species, Streptococcus anginosus, Streptococcus constellatus, and Streptococcus intermedius. Streptococcus morbillorum has been transferred into the genus Gemella. Four new species within the genus Peptostreptococcus were recently named. A recent addition to the genus Clostridium is Clostridium argentinense, which includes Clostridium botulinum type G. Two new species of Actinomyces have been introduced: Actinomyces georgiae and Actinomyces gerencseriae. Arachnia propionica was shown to be related to propionibacteria and has been renamed Propionibacterium propionicum. Eubacterium yurii was named to contain "test-tube brush" bacteria found in subgingival plaque. Lactobacillus uli and Lactobacillus rimae are obligately anaerobic lactobacilli found in periodontal pockets. Bilophila is a new genus of gram-negative bacilli. Wolinella recta and Wolinella curva are now included in the genus Campylobacter. The taxonomic position of Mobiluncus, currently assigned to the family Bacteroidaceae, remains uncertain.

Bacteroides↗

Effect of low-molecular-weight chitosans on the adhesive properties of oral streptococci.

It was previously shown that a low-molecular-weight chitosan and its derivatives N-carboxymethyl chitosan and imidazolyl chitosan inhibit Streptococcus mutans adsorption to hydroxyapatite. The ability of the same molecules to interfere with adhesive properties of other oral streptococci (Streptococcus sanguis, Streptococcus gordonii, Streptococcus constellatus, Streptococcus anginosus, Streptococcus intermedius, Streptococcus oralis, Streptococcus salivarius, Streptococcus vestibularis) was tested. When saliva-coated or -uncoated hydroxyapatite beads were treated with N-carboxymethyl chitosan, a reduction varying from 60% to 98% depending on strains was observed. Low-molecular-weight chitosans and imidazolyl chitosan did not have any effect. Growth in N-carboxymethyl chitosan-supplemented medium (final concentrations ranging from 20 to 500 micrograms.ml-1) caused a dose related reduction in the adsorption of all strains to hydroxyapatite and in their affinity towards xylene. No effect was observed with low-molecular-weight chitosans and imidazolyl chitosan. In contrast to what observed with S. mutans, the three polysaccharides did not affect detachment from hydroxyapatite beads and adherence to cheek epithelial cells of the other streptococci. These results suggest that low-molecular-weight chitosans and/or imidazolyl chitosan, selectively affecting S. mutans adsorption to hydroxyapatite, may be very interesting as potential anti-dental caries agents.

Adult↗

Cross-reactivity between human sialyl Lewis(x) oligosaccharide and common causative oral bacteria of infective endocarditis.

The expression of sialy-Lewis(x) (sLe(x); Neu5Ac alpha 2-3 Gal beta 1-4) (Fuc alpha 1-3) GlcNAc-R) on oral bacteria producing infective endocarditis was determined by a whole-cell enzyme linked immunosorbent assay and an immunoelectron microscopy using the well-characterized anti-sLe(x) monoclonal antibody SNH-3 (mAb SNH-3; IgM class). mAb SNH-3 reacted strongly with whole cells of oral bacteria: Streptococcus sanguis, Streptococcus mutans, Streptococcus mitis, Streptococcus salivarius, Streptococcus intermedius, Streptococcus constellatus, Streptococcus anginosus, Streptococcus pyogenes, Actinobacillus actinomycetemcomitans, Eikenella corrodens and Porphyromonas gingivalis. The negatively stained immuno-electron micrograph of Streptococcus pyogenes showed many reactive gold particles on the cell surface. Our findings demonstrated the existence of immunologic mimicry between the sLe(x) oligosaccharide and cell surface antigens of many species associated with infective endocarditis. We propose the hypothesis that if these bacteria escape their normal habitats, the surface components that mimic the sLe(x) oligosaccharide might bind to host antigens of the selectin family which could promote binding to endothelial cells and, consequently, initiation of the events leading to infective endocarditis.

Antibodies, Monoclonal↗

Attachment level changes in destructive periodontal diseases.

The present communication attempts to summarize some of the features of attachment loss which are of interest to the clinician and the statistician analyzing data from clinical trials. These include the measurements employed to detect changes in attachment level, the nature of the destructive disease process and the effects of therapy on the attachment level measurements. Although there are several difficulties associated with the attachment level measurement, at the present time it appears to be the best estimator of periodontal attachment available. The overall standard deviation of this measurement in greater than 46,000 replicate measurements at periodontal sites in 58 subjects was 0.78 mm (range 0.4 to 1.2 mm). In the periodontally healthy subject, the length of the attachment measured around 28 teeth is approximately 700 mm. Therefore, there are approximately 1400 adjacent points along the periodontal attachment where a measurement could be made using a periodontal probe with a 0.5 mm diameter tip. If 6 measurements were recorded per tooth, then approximately 12% of the possible probable points would be evaluated. Recent data indicate that destructive periodontal diseases progress with acute bursts of activity rather than as slowly progressive, continual processes. Such findings suggest new models of attachment loss progression. In one likely model, destructive periodontal diseases would progress by asynchronous bursts of activity at individual sites which occur with greater frequency during a finite period of time in an individual's life. 3 major patterns of attachment loss could be distinguished when frequency distributions of attachment level measurements were constructed for 61 destructive periodontal disease subjects. Pattern I (30 subjects) exhibited a bimodal distribution with localized destruction occurring at less than 34% of sites. Pattern II (14 subjects) exhibited more widespread disease (greater than 33% of sites affected) with a trimodal frequency distribution. Pattern III (17 subjects) exhibited a unimodal distribution in which virtually all sites were affected. The proportions of Fusobacterium nucleatum, Streptococcus intermedius and Eikenella corrodens in subgingival plaque samples were significantly elevated in sites of subjects with patterns II and III (the widespread disease groups). Bacteroides intermedius, Streptococcus uberis and Actinobacillus actinomycetemcomitans were elevated in sampled sites of localized disease subjects (pattern I). The effects of therapy by Widman flap surgery and systemic tetracycline were examined by several statistical analyses.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Systemic doxycycline administration in the treatment of periodontal infections (II). Effect on antibiotic resistance of subgingival species.

The purpose of this investigation was to determine the proportion and prevalence of doxycycline resistant species in subgingival plaque samples taken during and after doxycycline administration. 20 subjects with adult periodontitis were randomly assigned to test (n = 10) or control groups (n = 10). Saliva samples as well as subgingival plaque samples taken from the distal surface of 6 posterior teeth were collected at baseline. All subjects received full mouth SRP and the test group systemic doxycycline at the dosage of 100 mg/day for 14 days. Saliva samples and plaque samples from the distal surface of 2 randomly selected teeth were taken at 3, 7 and 14 days during and after antibiotic administration. Control subjects were sampled at the same time points. Samples were anaerobically dispersed and serially diluted in PRAS Ringer's solution and plated on enriched Trypticase soy blood agar plates with or without 4 microg/ml doxycycline. After 7 days of anaerobic incubation, colonies were counted on both sets of plates. Microbial growth was washed from the doxycycline-containing media and the species identified using 40 DNA probes and checkerboard DNA-DNA hybridization. Differences in proportions of resistant species between test and control groups were tested for significance at each time point using the Mann Whitney test and over time within each group using the Quade test. The mean % (+/-SEM) of isolates resistant to 4 microg/ml doxycycline in the plaque samples of the test subjects increased from 6+/-2 to 48+/-9% during doxycycline administration, decreasing to 25+/-6% 2 weeks later and 9+/-2% at 90 days. In saliva, the % of resistant isolates rose from 13+/-1% to 81+/-10% during doxycycline administration falling to 46+/-8% 2 weeks later and 22+/-5% at 90 days. The % of resistant isolates did not change significantly in plaque or saliva samples of the control subjects at the same time points. For all subject visits combined, the most prevalent resistant species were: Streptococcus anginosus, Streptococcus oralis, Streptococcus intermedius, Streptococcus sanguis, Streptococcus mitis, Veillonella parvula, Actinomyces gerencseriae, Streptococcus constellatus, Actinomyces naeslundii genospecies 2, Streptococcus gordonii, Eikenella corrodens and Actinomyces naeslundii genospecies 1. Doxycycline resistant strains of these species were detected in both plaque and saliva samples prior to therapy and in the control group. Despite the finding of increased resistance, approximately 50% of the organisms present at periodontal sites at the end of 14 days of doxycycline administration tested sensitive to the agent.

Adult↗

Electrophoresis of whole-cell soluble proteins of microorganisms isolated from bacteremias in endodontic therapy.

We have previously demonstrated that anaerobic bacteria are the microorganisms most frequently isolated from blood following endodontic therapy of teeth with apical periodontitis. Phenotypic characterisation of the isolates suggested that the bacteria in the blood originated from the root canal. The present experiment using sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) was carried out in an effort to verify these findings, and to further study the microorganisms involved in endodontic bacteremias. Soluble cellular proteins were extracted from 11 reference strains and 26 bacterial isolates recovered from the root canal and blood. These included Propionibacterium acnes, Peptostreptococcus prevotii, Fusobacterium nucleatum, Prevotella intermedia. Actinomyces israelii, Streptococcus intermedius, Streptococcus sanguis. The electrophoretic patterns mostly confirmed the identity of the isolates as determined by the biochemical and antimicrobial resistance tests. Furthermore, with this typing method the species Prevotella intermedia and Prevotella nigrescens could be differentiated. These species had been recovered from both root canal and blood. Also, differences between subspecies of Fusobacterium nucleatum became evident with SDS-PAGE, and the results indicated that the organism recovered from the root canal and blood was Fusobacterium nucleatum subsp. vincentii. The electrophoretic patterns of the different organisms isolated from the root canal and the blood were similar, providing further evidence that the bacteria found in the blood originated from the root canal.

Bacteremia↗

Antibiotic susceptibilities of genetically characterized Streptococcus milleri group strains.

Previous studies of the antibiotic susceptibility of Streptococcus milleri group organisms have distinguished among species by using phenotypic techniques. Using 44 isolates that were speciated by 16S rRNA gene sequencing, we studied the MICs and minimum bactericidal concentrations of penicillin, ampicillin, ceftriaxone, and clindamycin for Streptococcus intermedius, Streptococcus constellatus, and Streptococcus anginosus. None of the organisms was resistant to beta-lactam antibiotics, although a few isolates were intermediately resistant; one strain of S. anginosus was tolerant to ampicillin, and another was tolerant to ceftriaxone. Six isolates were resistant to clindamycin, with representation from each of the three species. Relatively small differences in antibiotic susceptibilities among species of the S. milleri group show that speciation is unlikely to be important in selecting an antibiotic to treat infection caused by one of these isolates.

Ampicillin↗

Streptococcus sinensis sp. nov., a novel species isolated from a patient with infective endocarditis.

A bacterium was isolated from the blood culture of a patient with infective endocarditis. The cells were facultative anaerobic, nonsporulating, gram-positive cocci arranged in chains. The bacterium grows on sheep blood agar as alpha-hemolytic, gray colonies of 0.5 to 1 mm in diameter after 24 h of incubation at 37 degrees C in ambient air. Growth also occurs in 10 or 40% bile and on bile esculin agar but not in 6% NaCl. No enhancement of growth is observed in 5% CO(2). It is nongroupable with Lancefield groups A, B, C, D, F, or G antisera and is resistant to optochin and bacitracin. The organism is aflagellated and is nonmotile at both 25 and 37 degrees C. It is Voges-Proskauer test positive. It produces leucine arylamidase and beta-glucosidase but not catalase, urease, lysine decarboxylase, or ornithine decarboxylase. It hydrolyzes esculin and arginine. It utilizes glucose, lactose, salicin, sucrose, pullulan, trehalose, cellobiose, hemicellulase, mannose, maltose, and starch. 16S rRNA gene sequencing showed that there were 3.6, 3.7, 4.3, 4.7, and 5.9% differences between the 16S rRNA gene sequence of the bacterium and those of Streptococcus gordonii, Streptococcus intermedius, Streptococcus constellatus, Streptococcus sanguis, and Streptococcus anginosus, respectively. The G+C content of it (mean plus minus standard deviation) was 53.0% plus minus 2.9%. Based on phylogenetic affiliation, it belongs to the mitis or anginosus group of Streptococcus. For these reasons a new species, Streptococcus sinensis sp. nov., is proposed, for which HKU4 is the type strain. Further studies should be performed to ascertain the potential of this bacterium to become an emerging cause of infective endocarditis.

Adult↗

groESL sequence determination, phylogenetic analysis, and species differentiation for viridans group streptococci.

The full-length sequences of the groESL genes (also known as cpn10/60) of Streptococcus anginosus, Streptococcus constellatus, Streptococcus gordonii, and Streptococcus sanguis and the near full-length sequence of the groESL genes of Streptococcus intermedius, Streptococcus bovis, Streptococcus mitis, Streptococcus mutans, Streptococcus oralis, and Streptococcus salivarius were determined. The lengths of the groES genes from the 10 species listed above ranged from 282 to 288 bp, and the full-length sequences of groEL determined for 4 species (S. anginosus, S. constellatus, S. gordonii, and S. sanguis) revealed that each was 1,623 bp. The intergenic region (spacer) between the groES and groEL genes varies in size (15 to 111 bp) and sequence between species. The variation of the groES sequences among the species tested was greater (62.1 to 95.1% nucleotide sequence identities) than that of the groEL sequences (77.2 to 95.2% nucleotide sequence identities). Phylogenetic analysis of the groES and groEL genes yielded evolutionary trees similar to the tree constructed by use of the 16S rRNA gene. The intraspecies variation of the spacer was minimal for clinical isolates of some species. The groESL sequence data provide an additional parameter for identification of viridans group streptococcal species.

Bacterial Proteins↗

[Acute empyema caused by Streptococcus milleri in early pregnancy].

A 40-year-old woman was admitted to our department complaining of left lateral chest pain and fever. She smoked 10 cigarettes per day. Chest radiographs revealed increased density in the upper left lung field and air-fluid level in the lower left lung field. A diagnosis of acute empyema was made, because pus was aspirated by thoracentesis. Streptococcus intermedius (Streptococcus milleri group) was isolated from samples of pleural effusion. The patient was successfully treated with a combination of antibiotics and surgical drainage. It became clear after discharge that she was in her 6th week of pregnancy. Laboratory findings showed decreased lymphocyte transformation in the PHA and Con-A tests. We reasoned, therefore, that smoking and decreased cellular immunity due to pregnancy might be causes of bacterial infections such as empyema.

Acute Disease↗

Brain abscess after milk tooth self-extraction.

Brain abscesses are rare, especially in children, but they can be life-threatening infections. To date, dental pathology has been linked to only a small number of brain abscesses. To our best knowledge this is the first reported case of a brain abscess following self-extraction of a milk tooth. We are reporting on a 12-year-old previously healthy boy who developed a brain abscess in the vicinity of the left precentral gyrus. Clinical examination prior to surgery showed a severe right hemiparesis, more pronounced in his leg. We performed an ultrasonographically guided puncture and aspiration of the abscess through a small craniotomy. Immediately after the procedure he became hemiplegic. Bacteriological examination of the aspirated pus revealed Streptococcus intermedius, Streptococcus beta-haemolyticus group F, Fusobacterium species and gram-negative rods. The same species of microorganisms were identified in a smear from the vicinity of the extracted tooth. The patient was carefully screened for possible other sources of infection, but none was found. Following appropriate antimicrobial treatment he recovered completely and returned home without any neurological deficit.

Anti-Bacterial Agents↗

[Serologic study in patients with streptococcal infective endocarditis].

BACKGROUND: Infective endocarditis is a systemic disease in which there are a continuously antigenic stimulation of immunologic system. Streptococcus is still the most frequent cause of infective endocarditis. PATIENTS AND METHODS: We investigated the presence of antibody (AB), total and IgM by indirect immune fluorescence technique, in four groups of population: streptococcal infective endocarditis (SIE), streptococcal bacteraemia (SB), Staphylococcus aureus endocarditis, and healthy people. Antigens used were: 1) their own strain isolated from the blood of patients with SIE and SB ¿homologous AB¿, and; 2) seven species of Streptococcus: Streptococcus intermedius, Streptococcus salivarius, Streptococcus bovis, Streptococcus sanguis I, Streptococcus sanguis II, nutritional dependent streptococci and Enterococcus faecalis (heterologous AB). RESULTS: Homologous antibodies: titers > or = 1/512 were found in all patients with SIE and only in 2 with SB (sensitivity 100% and specificity 93%). IgM titer (threshold 1/32) was positive only in patients with SIE (sensitivity 75,5% and specificity 100%). The fall of the AB titer was continuous and slow, despite the good clinical evolution of patients. (AB titers were > or = 1/512 and IgM > or = 1/64 in 30% of patients 1 year later). Heterologous AB: in spite of statistically significant difference found in SIE versus the other groups, sensitivity of this test (threshold 1/256) is low, confidence interval include expected random value (50%), specificity is 88%. CONCLUSIONS: The utility of homologous AB for diagnosing infective endocarditis is demonstrated. On the contrary for heterologous AB, antigenic common fractions must be found in the different species.

Adult↗

Streptococcus milleri infection and pericardial abscess associated with esophageal carcinoma: report of two cases.

We report 2 cases of esophageal carcinoma with esophago-mediastinal fistula that developed pericardial abscess due to Streptococcus intermedius infection. Streptococcus intermedius, a generally harmless commensals in healthy humans, is not usually associated with infections of the oral cavity but may account for non-oral purulent infections. This report, however, highlights that Streptococcus intermedius infection can be life-threatening for some patients such as those with esophageal carcinoma with fistula.

Abscess↗

Bacterial profile and burden of periodontal infection in subjects with a diagnosis of acute coronary syndrome.

BACKGROUND: Periodontitis has been identified as a potential risk factor in cardiovascular diseases. It is possible that the stimulation of host responses to oral infections may result in vascular damage and the inducement of blood clotting. The aim of this study was to assess the role of periodontal infection and bacterial burden as an explanatory variable to the activation of the inflammatory process leading to acute coronary syndrome (ACS). METHODS: A total of 161 consecutive surviving cases admitted with a diagnosis of ACS and 161 control subjects, matched with cases according to their gender, socioeconomic level, and smoking status, were studied. Serum white blood cell (WBC) counts, high- and low-density lipoprotein (HDL/LDL) levels, high-sensitivity C-reactive protein (hsC-rp) levels, and clinical periodontal routine parameters were studied. The subgingival pathogens were assayed by the checkerboard DNA-DNA hybridization method. RESULTS: Total oral bacterial load was higher in the subjects with ACS (mean difference: 17.4x10(5); SD: 10.8; 95% confidence interval [CI]: 4.2 to 17.4; P<0.001), and significant for 26 of 40 species including Porphyromonas gingivalis, Tannerella forsythensis, and Treponema denticola. Serum WBC counts, hsC-rp levels, Streptococcus intermedius, and Streptococcus sanguis, were explanatory factors to acute coronary syndrome status (Nagelkerke r2=0.49). CONCLUSION: The oral bacterial load of S. intermedius, S. sanguis, Streptococcus anginosus, T. forsythensis, T. denticola, and P. gingivalis may be concomitant risk factors in the development of ACS.

Bacteroides↗

Experimental abscess formation caused by human dental plaque.

Human dental plaque consists of a wide variety of microorganisms, some of which are believed to cause systemic infections, including abscesses, at various sites in the body. To confirm this hypothesis experimentally, we examined the abscess-forming ability of native dental plaque in mice, the microbial features of the infectious locus produced by the plaque, and the anti-phagocytic property of microbial isolates. Aliquots of a suspension of supragingival dental plaque containing 6 x 10(6) colony-forming unit of bacteria were injected subcutaneously into the dorsa of mice. Abscess formation was induced in 76 of 85 mice using ten different plaque samples. Thirteen microorganisms were isolated from pus samples aspirated from abscess lesions. The microbial composition of pus, examined in 17 of 76 abscesses, was very simple compared to that of the plaque sample that had induced the abscess. The majority of the isolates belonged to the Streptococcus anginosus group, normally a minor component of plaque samples. S. anginosus was the most frequently detected organism and the most prevalent in seven abscesses, and Streptococcus intermedius and Streptococcus constellatus were predominant in one and three abscess samples, respectively. Each isolate of S. anginosus group produced abscesses in mice, and heat-treated supragingival dental plaque influenced the abscess-forming ability of S. anginosus isolate. These isolates possessed a high antiphagocytic capacity against human polymorphonuclear leukocytes. Our results suggest that human supragingival dental plaque itself is a source of the infectious pathogens that cause abscess formation.

Abscess↗

Identification of the anginosus group within the genus Streptococcus using polymerase chain reaction.

The aim of this study was to establish an identification method for the anginosus group within the genus Streptococcus by polymerase chain reaction (PCR). Using a primer pair based on the group-specific sequences of penicillin-binding protein 2B (pbp2b) gene, a 275-bp fragment was amplified from each species in the group but no size-matched products were obtained in other streptococci. Further identification in the species or subspecies level was possible by a multiplex PCR with primers for the 16S ribosomal RNA gene of Streptococcus anginosus, the hyaluronate lyase genes both of Streptococcus intermedius and Streptococcus constellatus subsp. constellatus, and the intermedilysin (ily) gene of S. intermedius. In the case ofStreptococcus constellatus subsp. pharyngis, the amplified fragment from the S. intermedius-type hyaluronate lyase gene was obtained, while that from the ily gene was not. These results also indicate that two different hyaluronate lyase genes are distributed among the anginosus group.

Aminoacyltransferases↗

Degradative enzymes of oral streptococci.

Members of the Streptococcus sanguis group (SSG) and Streptococcus milleri group (SMG) were screened for their ability to produce glycosidase, arylamidase (peptidase), protease, dextranase and glycosyltransferase activities. Species within each group produced unique patterns of activity. The most commonly produced glycosidases were beta-D-glucosidase, beta-D-galactosidase, N-acetyl-beta-D-glucosaminidase and N-acetyl-beta-D-galactosaminidase and the least commonly produced glycosidase activity was beta-fucosidase with Streptococcus intermedius (SMG) being the only species capable of producing the activity. For arylamidase activity, the most commonly produced type was lysine-arylamidase. Glycosidase and arylamidase activities were localized to particular sub-cellular fractions. alpha-galactosidase was found only in culture supernatant fluids whereas N-acetyl-beta-D-glucosaminidase was found in all fractions; the culture supernatant, cell wall, cell membrane and cytoplasm. No arylamidase activity was seen in culture supernatants. Phe-arg-arylamidase was found only in cytoplasmic fractions whereas val-pro-argarylamidase was found in cell walls, cell membranes and cytoplasmic fraction. Protease activity was measured as the degradation of bovine serum albumin (BSA) and casein. Casein was degraded by a number of strains whereas no species/strains were able to degrade BSA. Streptococcus intermedius, Streptococcus constellatus (SMG), Streptococcus mitior and Streptococcus defectivus (SSG) were the only species that produced hyaluronidase and no species produced chondroitin sulphatase. The groups were also examined for their abilities to produce glycosyltransferase and dextranase. Strep. sanguis, Streptococcus gordonii, Streptococcus mitis and Streptococcus oralis produced glucosyltransferase and, with the exception of the latter species, fructosyltransferase. No species within the SMG was capable of producing either glycosyltransferase.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminopeptidases↗