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Biomedical subjects

D J Groves

Publications and source records attributed to D J Groves.

30 records · Page 2Linked to original sources

Hemophilus vaginalis bacteremia.

During 1975--77 Hemophilus vaginalis bacteremia occurred post partum in eight previously healthy women. Seven had been admitted for delivery at term and one because of threatened abortion. Six underwent cesarean section. Post-partum pyrexia and neutrophilia were the main features. All the patients recovered uneventfully while receiving antibiotics. H. vaginalis is an infrequent agent of bacteremia; it affects predominantly women after obstetric trauma.

Anti-Bacterial Agents↗

Interspecific relationships of antibiotic resistance in Staphylococcus sp.: isolation and comparison of plasmids determining tetracycline resistance in S. aureus and S. epidermidis.

Tetracycline resistance in Staphylococcus aureus and S. epidermidis was confirmed to be determined by plasmids of the same size. Digestion of plasmids from each strain with restriction endonucleases EcoR1, HindIII, and AluI showed a high degree of similarity in their DNA sequences. At least 10 cleavage sites which appear to be common to both plasmids were detected. An additional three cleavage sites appear to be unique to the S. epidermidis plasmid. Further, a survey of recent clinical isolates of tetracycline-resistant staphylococci detected 7 or 10 S. aureus strains and 8 of 9 S. epidermidis strains with plasmids which were of similar size to the purified reference plasmids and which, by hybridization, showed extensive DNA homology to the S. aureus reference plasmid DNA.

Base Sequence↗

A temperature-gradient technique for the elimination of antibiotic resistance.

A technique was developed which facilitates the application of elevated temperatures to strains of unknown heat sensitivity during attempts to eliminate antibiotic resistance. Cultures were subjected to a temperature gradient and the lowest temperatures which inhibited growth were found to be highly efficient in the elimination of gentamicin resistance in several strains of Staphylococcus aureus and S. epidermidis.

Bacteriological Techniques↗

Epidemiology of antibiotic and heavy metal resistance in bacteria: resistance patterns in staphylococci isolated from populations not known to be exposed to heavy metals.

Staphylococci were isolated from clinical specimens obtained from patients not known to be exposed to abnormal levels of heavy metals. The antibiotic and heavy metal resistance patterns of these strains were determined by using a disk diffusion test and computer sorting. Though not absolute, an association of resistance to mercury and tetracycline in coagulase-negative strains was found, in contrast to resistance to copper and penicillin in coagulase-producing strains. A high degree of correlation was observed between the resistance to phenyl mercury and inorganic mercury, but no correlation was obtained between resistance to methylmercury and other metals. In general, strains resistant to many agents were usually coagulase negative. A possible mechanism and implications of these associations are considered.

Anti-Bacterial Agents↗

Epidemiology of antibiotic and heavy metal resistance in bacteria: resistance patterns in staphylococci isolated from populations in Iraq exposed and not exposed to heavy metals or antibiotics.

Staphylococci were isolated from rural and urban populations in Iraq, which were not known to be exposed to either heavy metals or antibiotics. The antibiotic and heavy metal resistance patterns of these strains were analyzed in both mannitol-fermenting and nonfermenting strains. Over 90% of the strains were resistant to at least one of the following antibiotics: penicillin, chloramphenicol, erythromycin, tetracycline, cephalothin, lincomycin, or methicillin. In general, mannitol-fermenting strains were resistant to penicillin and cupric ions. Mannitol-negative strains were more frequently associated with mercuric ion and tetracycline resistance. Although resistance to penicillin and tetracycline can coexist, the combination of penicillin resistance and tetracycline resistance usually occurred in mannitol-negative strains. The possibility of selection of heavy metal-resistant strains due to exposure to toxic levels of methylmercury was examined. No significant increase in mercuric ion-resistant strains of staphylococci or Escherichia coli were detected in exposed populations as compared to control groups. The possible reasons for this result are discussed.

Anti-Bacterial Agents↗

Inhibition of transformation of Bacillus subtilis by heavy metals.

Mercuric ions, as well as organomercuric ions and cadmium ions, can inhibit deoxyribonucleic acid-mediated transformation in Bacillus subtilis 168 without decreasing the viability of the total population. Differences in the inhibition of transformation by mercuric ions are identifiable on a temporal and concentration dependence basis. Sensitivity to low concentrations (9.2 x 10(-8) M) appears early in the uptake of deoxyribonucleic acid before the transformed markers have become insensitive to deoxyribonuclease. Resistance to "low concentrations" of Hg(2+) is kinetically indistinguishable from the requirement for magnesium in the transformation process. This inactivation is not reversed by the mercury-binding compound glutathione. Sensitivity to mercuric ions at a higher concentration (5.52 x 10(-7) M) occurs after the donor deoxyribonucleic acid has become insensitive to deoxyribonuclease. These complex interactions between mercuric ions and the process of transformation are discussed.

Bacillus subtilis↗

Regulation of Cell Division in Escherichia coli: Characterization of Temperature-Sensitive Division Mutants.

A temperature-sensitive division mutant of Escherichia coli was isolated by using differential filtration to select for filaments at 42 C and normal cells at 30 C. Cells shifted from 30 to 42 C stop dividing almost immediately, suggesting the temperature-sensitive element is required for cell division late in the cell cycle. Cells returned to 30 from 42 C divide abruptly, suggesting accumulation of division potential at 42 C. Inhibitors of protein, deoxyribonucleic acid, and ribonucleic acid synthesis do not block division during the recovery period at 30 C. Cycloserine does not stop cell division, vancomycin shows some effect on cell division, whereas penicillin completely stops cell division during this period. The addition of high concentrations of NaCl to filaments at 42 C results in a burst of cell division. The final cell number is equivalent to the control which is grown at 30 C if sufficient salt is added (11 g/liter, final concentration). After the original burst, cell division ceases at the nonpermissive temperature even at increased osmolality. Chloramphenicol, puromycin, vancomycin, and penicillin prevent division during the recovery in the presence of NaCl. Kinetic data indicate division potential decays to a reversible inactive intermediate which rapidly decays to an irreversible inactive form. Conversion of division potential to the inactive form is correlated with a 100- to 1,000-fold derepression of the synthesis of division potential. The mutation appears to involve a stage in cross-wall synthesis which is required during the terminal stages of division.

Journal Article↗

Carbohydrate transport in Clostridium perfringens type A.

Resting-cell suspensions of Clostridium perfringens actively transported glucose and mannose but not six other carbohydrates which would support at least limited growth of the microorganism. Competition studies suggested that glucose and mannose were transported by a common mechanism which was highly specific. Analyses of intracellular pools demonstrated that the accumulated carbohydrates were present as phosphorylated derivatives, not as free carbohydrates, and specificity data indicated that phosphorylation occurred at the transport level rather than via the soluble hexokinase.

Biological Transport, Active↗

Glucose degradation in Clostridium perfringens type A.

Cell-free extracts of Clostridium perfringens were found to contain all the enzymes of the Embden-Meyerhof pathway of glycolysis in addition to lactic acid dehydrogenase and the pyruvate-clastic system. Neither glucose-6-phosphate dehydrogenase nor 6-phosphogluconate dehydrogenase activities could be demonstrated, suggesting the absence of the conventional hexose-monophosphate pathway in this organism.

Cell-Free System↗