PubMed Health⌕ Search

Biomedical subjects

H Hanaki

Publications and source records attributed to H Hanaki.

At least 19 recordsLinked to original sources

Combination effect of vancomycin and beta-lactams against a Staphylococcus aureus strain, Mu3, with heterogeneous resistance to vancomycin.

We tested the combined activity of vancomycin and seven beta-lactam antibiotics against Staphylococcus aureus clinical strain Mu3, which displays heterogeneous resistance to vancomycin. When combined with vancomycin, four of the seven tested beta-lactams exhibited an additive effect at or near their MICs, while all showed an antagonistic effect at lower, sub-MIC levels. This study implicated the unpredictable nature of combination therapy of beta-lactams and vancomycin against S. aureus with reduced susceptibility to vancomycin.

Anti-Bacterial Agents↗

[Effect of arbekacin on the production of toxic shock syndrome toxin 1 by methicillin-resistant Staphylococcus aureus].

The effect of arbekacin (ABK), vancokmycin (VCM) and teicoplanin (TEIC) on the production of toxic shock syndrome toxin-1 (TSST-1) by methicillin-resistant Staphylococcus aureus was examined. In logarithmic-phase cultures, ABK, VCM and TEIC inhibited TSST-1 production by 85, 10 and 25%, respectively, at the concentration of one-fourth the each MIC. In stationary-phase cultures, ABK inhibited TSST-1 production by 50% or 90% compared with the control at the concentration of 4.0 micrograms/ml or 5.0 micrograms/ml respectively. VCM and TEIC did not inhibit TSST-1 production at the concentration of 8.0 micrograms/ml or lower. In human blood cultures, TSST-1 production was inhibited by ABK by 50% at 0.04 microgram/ml (1/256 of Cmax), but not inhibited by VCM and TEIC at the concentration of 1/16 of Cmax or lower. It has been already known that ABK has higher bactericidal activity than VCM and TEIC. ABK combined the inhibition of TSST-1 production with high bactericidal activity in both bacterial growth phases, and therefore ABK should be considered for the treatment of TSST-1-mediated MRSA-infection.

Aminoglycosides↗

[MRSA].

Explore the source record for details and available documents.

Aminoglycosides↗

Contribution of a thickened cell wall and its glutamine nonamidated component to the vancomycin resistance expressed by Staphylococcus aureus Mu50.

Staphylococcus aureus Mu50, which has reduced susceptibility to vancomycin, has a remarkably thickened cell wall with an increased proportion of glutamine nonamidated muropeptides. In addition, Mu50 had enhanced glutamine synthetase and L-glutamine D-fructose-6-phosphate aminotransferase activities, which are involved in the cell-wall peptidoglycan synthesis pathway. Furthermore, significantly increased levels of incorporation of (14)C-labeled D-glucose into the cell wall was observed in Mu50. Unlike a femC mutant S. aureus strain, increased levels of production of nonamidated muropeptides in Mu50 was not caused by lower levels of glutamine synthetase activity but was considered to be due to the glutamine depletion caused by increased glucose utilization by the cell to biosynthesize increased amounts of peptidoglycan. After the cells were allowed to synthesize cell wall in the absence or presence of glucose and glutamine, cells with different cell-wall thicknesses and with cell walls with different levels of cross-linking were prepared, and susceptibility testing of these cells demonstrated a strong correlation between the cell-wall thickness and the degree of vancomycin resistance. Affinity trapping of vancomycin molecules by the cell wall and clogging of the outer layers of peptidoglycan by bound vancomycin molecules were considered to be the mechanism of vancomycin resistance of Mu50. The reduced cross-linking and the increased affinity of binding to vancomycin of the Mu50 cell wall presumably caused by the increased proportion of nonamidated muropeptides may also contribute to the resistance to some extent.

Bacterial Proteins↗

Postoperative toxic shock syndrome caused by a highly virulent methicillin-resistant Staphylococcus aureus strain.

We report on a rare fatal case of postoperative toxic shock syndrome caused by infection with a highly virulent methicillin-resistant Staphylococcus aureus strain, designated Sak-1, which was found to be characteristic in its increased production of toxic shock syndrome toxin 1 in human whole blood (about 30-fold more than produced in Tod Hewitt broth). The strain also produced a high level of toxic shock syndrome toxin 1 in the circulating blood of mice experimentally infected with the strain.

Adult↗

DNA vaccination by mecA sequence evokes an antibacterial immune response against methicillin-resistant Staphylococcus aureus.

More than 90% of methicillin-resistant Staphylococcus aureus (MRSA) isolates produce a penicillin-binding protein PBP2' (or PBP2a) with low affinity for beta-lactam antibiotics. PBP2' is encoded by the mecA gene, a foreign gene integrated into the chromosome of methicillin-susceptible S. aureus (MSSA). DNA vaccination by injection of transgene-expressing plasmids has been demonstrated to elicit an immune response against transgene-encoded protein. We hypothesized that the application of DNA vaccination with the mecA sequence would elicit protective immunity against MRSA. This immunity was evoked by injection of a mecA-expressing plasmid into BALB/c mice. Anti-PBP2' antibody was detected in the sera obtained from the DNA-vaccinated mice. These sera produced a five-fold increase in phagocytosis of MRSA compared with sera from mice treated with control plasmid. However, there was no difference in phagocytosis of MSSA among these groups. In addition, the in-vivo antibacterial effect of DNA vaccination was demonstrated in mice infected with MRSA. Eight days after iv inoculation of 10(8) cfu of MRSA into mice, the number of bacteria in the kidneys obtained from mice vaccinated with mecA-expressing plasmid (1.48 +/- 0.27 x 10(5) cfu/mg kidney; n = 18) was significantly lower than that from mice vaccinated with negative control plasmid (3.59 +/- 0.57 x 10(5) cfu/mg kidney; n = 17) (P < 0.02) or that from sham-treated mice (3. 43 +/- 0.66 x 10(5) cfu/mg kidney; n = 9) (P < 0.02). Interestingly, PBP2' was found in both the bacterial membrane fraction and the supernatant, thus being accessible to serum antibodies. Together these observations indicate that PBP2' or the mecA sequence may be eligible as a candidate molecule for vaccination against MRSA.

Animals↗

[Combination effect of teicoplanin and various antibiotics against hetero-VRSA and VRSA].

Eleven clinical strains of MRSA which were detected as heterogeneously-resistant to vancomycin (hetero-VRSA) on Mu3-medium (a newly devised hetero-VRSA detecting medium) were subjected to a study to explore the therapeutic possibility of combination therapy. Combination effects of teicoplanin with six different beta-lactam antibiotics (imipenem, panipenem, meropenem, flomoxef, sulbactam/ampicillin, cefoselis), arbekacin, and minocycline were evaluated on the strains of Mu3, Mu50 and the above 11 strains. Combination of teicoplanin with five beta-lactam antibiotics individually (except for cefoselis) showed a synergistic effect, while that with cefoselis showed synergistic or additive effect. Neither indifference nor antagonism effect was observed in combination of seicoplanin with beta-lactam antibiotics on these MRSA strains. The degree of synergistic effect in combination with teicoplanin was the strongest in imipenem, followed by panipenem > meropenem > flomoxef > sulbactam/ampicillin > cefoselis in this order. The average FIC index of the beta-lactam antibiotics against these strains was 0.113, 0.124, 0.163, 0.230, 0.264 and 0.388, respectively. Arbekacin and minocycline showed variable of effects in combination with teicoplanine. In the case of arbekacin, the ratio of synergy, addition, indifference, and antagonism were 30.8, 30.8, 0 and 38.4%, respectively, and in the case of minocycline, they were 15.4. 7.7, 0 and 76.9%, respectively. Vancomycin activity against hetero-VRSA and VRSA is antagonized with beta-lactam antibiotics, while teicoplanin activity is synergistic or additive. It is known that MRSA is relatively easy to emerge resistance to teicoplanin. Therefore, teicoplanin is not desirable for a monotherapy. However, in a combination with beta-lactam antibiotics, teicoplanin appeared to be a promising agent for the treatment of MRSA infection.

Anti-Bacterial Agents↗

[In vitro susceptibility of Streptococcus agalactiae clinical isolates to beta-lactam antibiotics].

The susceptibility of Streptococcus agalactiae (S. agalactiae) clinical isolates of Juntendo University Urayasu Hospital, and type strain ATCC 13813 to beta-lactam antimicrobial agents was evaluated by means of macro-broth dilution MIC determination, killing kinetics and population analysis. When 10(6) cells of S. agalactiae were inoculated and cultured in Todd-Hewitt broth containing two-fold serial dilutions of penicillin, the viable cell count showed that about 10(2) cells survived irrespective of the penicillin concentration which ranged from 0.063 to 128 micrograms/ml. The result indicated that S. agalactiae had tolerance to penicillin (MICs were around 0.063 microgram/ml). Furthermore, the S. agalactiae strains were found to have a paradoxical response to penicillin in an acidic condition (pH 5.5). When the cell counts were performed at pH 5.5, about 10(2) cells survived at penicillin concentrations from 0.016 to 0.125 microgram/ml, while about 10(4) cells survived at the concentrations of 1 to 8 micrograms/ml. The antibiotic tolerance and paradoxical effects of S. agalactiae were also observed in killing kinetics. The ATCC 13,813 and 10 out of 11 clinical strains showed slow response to penicillin-mediated killing at pH 7.8 and ATCC 13,813 and one of the clinical strains showed a reduced response with increase in penicillin concentration at pH 5.5. These results suggested that the tolerance and paradoxical effect of S. agalactiae cells to beta-lactam antibiotics may be one of the reasons for frequent re-colonization of S. agalactiae at the time of delivery after the chemophylaxis in the 2nd trimester.

Anti-Bacterial Agents↗

[Investigation of the antibacterial activity of faropenem against Streptococcus pneumoniae].

We evaluated the antibacterial activity of faropenem against penicillin-susceptible Streptococcus pneumoniae (PSSP) and penicillin-resistant S. pneumoniae (PRSP). It was shown that the minimum inhibitory concentrations against 90% of the clinically isolated strains (MIC90) of faropenem, penicillin G, cefaclor, cefcapene, and cefditoren against PSSP were 0.032, 0.063, 2, 0.25, and 0.125 micrograms/ml, respectively. While those against PRSP were 0.5, 2, > 128, 1, and 1 micrograms/ml, respectively. Furthermore, we evaluated the bactericidal activity, at the level of 1/4, 1, and 4 MIC, of faropenem and the above four reference antibacterial agents against PSSP and PRSP. Against PSSP No. 127, a sensitive strain to both penicillin G and cefcapene, faropenem showed almost the same bactericidal activity as those of reference agents. Against PSSP No. 108, a penicillin-susceptible and cephem-resistant strain, and PRSP No. 57, a resistant strain to both of penicillin and cephem, faropenem of 1 MIC showed bactericidal activity, but reference agents needed 4 MIC to show bactericidal activity.

Anti-Bacterial Agents↗

Activated cell-wall synthesis is associated with vancomycin resistance in methicillin-resistant Staphylococcus aureus clinical strains Mu3 and Mu50.

We have previously reported methicillin-resistant Staphylococcus aureus clinical strains, Mu50 and Mu3, representing two categories of vancomycin resistance: Mu50 representing vancomycin-resistant S. aureus (VRSA) with MICs > or = 8 mg/L, and Mu3 representing hetero-VRSA with MICs < or = 4 mg/L using standard MIC determination methods. The mechanisms of vancomycin resistance in these strains were investigated. These strains did not carry the enterococcal vancomycin-resistance genes, vanA, vanB, or vanC1-3, as tested by PCR using specific primers. However, both strains produced three to five times the amount of penicillin-binding proteins (PBPs) 2 and 2' when compared with vancomycin-susceptible S. aureus control strains with or without methicillin resistance; the amounts of PBP2 produced in Mu3 and Mu50 were comparable to those in the vancomycin-resistant S. aureus mutant strains selected in vitro. Incorporation of 14C-labelled Nacetyl-glucosamine into the cell was three to 20 times increased in Mu50 and Mu3, and release of the radioactive cell wall material was increased in Mu3 (and also in Mu50, though to a lesser extent), compared with control strains. The amounts of intracellular murein monomer precursor in these strains were three to eight times greater than those found in control strains. Transmission electron microscopy showed a doubling in the cell wall thickness in Mu50 compared with the control strains. Mu3 did not show obvious cell wall thickening. These data indicate that activated synthesis and an increased rate of cell wall turnover are common features of Mu3 and Mu50 and may be the prerequisite for the expression of vancomycin resistance in S. aureus.

Acetylglucosamine↗

Increase in glutamine-non-amidated muropeptides in the peptidoglycan of vancomycin-resistant Staphylococcus aureus strain Mu50.

The peptidoglycan compositions of vancomycin-resistant Staphylococcus aureus (VRSA) strain Mu50 (MIC 8 mg/L) and hetero-VRSA strain Mu3 (MIC 3 mg/L) were compared in order to understand the mechanism of vancomycin resistance. As compared with Mu3, the cell wall of Mu50 had increased amounts of glutamine-non-amidated muropeptides and decreased cross-linking of peptidoglycan with a greatly decreased dimer/monomer ratio of muropeptides. In agreement with this observation, the peptidoglycan of Mu50 bound 1.4 times more vancomycin than that of Mu3. The increase in non-amidated muropeptides and the reduced cross-linking of the cell-wall peptidoglycan may contribute to the vancomycin resistance by increasing the consumption of vancomycin by the pre-existing cell wall of Mu50 and reducing the amount of vancomycin reaching the cytoplasmic membrane where the vital targets of the antibiotic are situated.

Amino Acids↗

[In vitro susceptibilities of clinical isolates of coagulase-negative staphylococci to glycopeptide antibiotics].

Two hundred and thirteen clinical strains of coagulase-negative staphylococci isolated in Japan between 1980 and 1997 were analyzed for glycopeptide susceptibility by determining MIC using both Mueller-Hinton agar (MHA) and Brain Heart Infusion agar (BHIA) plates. Of 37 Staphylococcus epidermidis strains isolated between 1980 and 1981, all were susceptible to vancomycin and teicoplanin on both MHA and BHIA. However, of 122 isolates of Staphylococcus epidermidis isolated between 1994 and 1997, 1 (0.8%) was intermediate to vancomycin on MHA and 39 (32%) were intermediate on BHIA, while 3 (2.5%) and 27 (22.1%) were intermediate or resistant to teicoplanin on MHA and BHIA, respectively. It was demonstrated that the susceptibilities of the strains in 1990s to vancomycin and teicoplanin were significantly decreased compared with those in 1980s. Population analysis was performed with six strains each of Staphylococcus epidermidis and Staphylococcus haemolyticus (three with vancomycin MIC > or = 8 micrograms/ml and three with vancomycin MIC < or = 4 micrograms/ml using BHIA). The population curves of the Staphylococcus epidermidis strains showed a homogeneous pattern of susceptibility. Whereas, those for two Staphylococcus haemolyticus strains (vancomycin MIC = 8 micrograms/ml using BHIA) showed a typical heterogeneous pattern. Vancomycin-resistant mutants (MIC > or = 32 micrograms/ml) were obtained with a high frequency of 10(-4)-(-5) from the strains by one-step selection with 16 micrograms/ml of vancomycin.

Anti-Bacterial Agents↗

[Mechanism of vancomycin resistance in MRSA strain Mu50].

The mechanism of vancomycin resistance in methicillin-resistant Staphylococcus aureus (MRSA) Mu50 was investigated. More than 3 times increase of the incorporation of 14C-GluNAc into the cell wall of Mu50 was observed compared to those of vancomycin-susceptible strains FDA209P, H-1, LR5P1. The amount of cytoplasmic murein-monomer precursor increased more than 3 times in Mu50 compared to those of control strains. There was an increased production of PBP1, PBP2, and PBP2', which were 1.51, 17.2, and 7.06 times greater, respectively, in Mu50 than those in H-1, and 2.38, 4.46, and 1.96 times greater respectively, than those in LR5P1. By transmission electromicrograph, it was shown that the cell wall of Mu50 was twice thicker than that of LR5P1. Increase of tightly-bound vancomycin to the cell wall fraction was observed in Mu50 when compared to those in FDA209P and H-1 strains. From these results, the increase of the vancomycin targets, free D-Ala-D-Ala residues in the cell wall, in number, due to the activated cell wall synthesis, and/or decrease of the cross-linkage of the cell wall was suggested to be the mechanism of vancomycin resistance in the Mu50 strain.

Anti-Bacterial Agents↗

[Increase of non-amidated muropeptides in the cell wall of vancomycin-resistant Staphylococcus aureus (VRSA) strain Mu50].

The mechanism of resistance was studied with vancomycin-resistant Staphylococcus aureus (VRSA) strain Mu50. It was demonstrated that the incorporation of 14C-N-acetylglucosamine into the cell wall of Mu50 was not suppressed in the presence of 8 microliters/ml of vacomycin, whereas it was completely suppressed in vancomycin-susceptible strains FDA209P and H-1. Increased binding of vancomycin to the wall of Mu50 was observed compared to the control strains: 1.7 x 10(16) (Mu50), 6.1 x 10(15) (209P), and 6.7 x 10(15) (H-1) vancomycin molecules/mg cell wall, respectively. Remarkable proportion of the cell-wall component muropeptides were non-amidated in the cell wall of Mu50. In concordance with this phenomena, peptidoglycan cross-linkage decreased strikingly in the Mu50 strain. Free D-Ala-D-Ala residues at the end of muropeptides in the pre-existing cell wall generated by decreased cross-linkage seems to account for increased vancomycin binding. The increase of vancomycin-resistance level is presumably caused by sequestration of vancomycin molecules from primary target point on cell membrane. It was considered that at least two phenotypic changes are required for the vancomycin resistance in the Mu50 strain. First, as we have described previously, is the activated cell wall synthesis, and second, the reduction of cross-linkage of peptidoglycan by production of non-amidated muropeptide precursors.

Acetylglucosamine↗

[A novel method of detecting Staphylococcus aureus heterogeneously resistant to vancomycin (hetero-VRSA)].

We have developed a new method of detecting clinical S. aureus strains possessing heterogeneous resistance to vancomycin (hetero-VRSA). The method exploits characteristic antagonism between vancomycin and beta-lactam antibiotics against the strain Mu3, a representative hetero-VRSA. The method comprises of the following procedures: 1) overnight culture of bacteria is streaked on brain heart infusion agar containing 4 micrograms/ml of vancomycin, 2) paper discs impregnated with any one of beta-lactam antibiotics are placed onto the plate, and 3) the plate is incubated at 37 degrees C and the cell growth was observed after 24 h and 48 h of incubation. The Mu3 cells were grown only around the beta-lactam discs due to the antagonism between vancomycin and beta-lactam against Mu3 cells. A total of 321 MRSA clinical strains isolated in 1995 and 1996 from 12 medical facilities in Japan were tested with this method. A total of 39 strains (12.1%; 24 h) and 67 strains (20.96%; 48 h) grew around the beta-lactam discs. All the 10 strains (representing 10 facilities), tested with the analysis of resistant subpopulations to vancomycin, showed similar heterogeneous patterns as observed with Mu3. The method was considered as a convenient and rapid substitute for the population analysis, the authentic method for the detection of hetero-VRSA strains.

Anti-Bacterial Agents↗