PubMed Health⌕ Search

Biomedical subjects

S Pereyre

Publications and source records attributed to S Pereyre.

13 recordsLinked to original sources

Characterisation of in vitro-selected mutants of Ureaplasma parvum resistant to macrolides and related antibiotics.

Resistant mutants of Ureaplasma parvum were selected by serial passages of a susceptible strain in subinhibitory concentrations of different macrolides and related antibiotics (erythromycin, azithromycin, josamycin, quinupristin, quinupristin/dalfopristin, pristinamycin and telithromycin). Mechanisms of resistance were characterised by sequencing portions of genes encoding 23S rRNA and ribosomal proteins L4 and L22. Mutants with significantly increased minimum inhibitory concentrations could be selected with all the selector antibiotics, except quinupristin and pristinamycin. Mutants harboured mutations in domain V of the 23S rRNA gene at nucleotides G2056, G2057 or A2058 (Escherichia coli numbering) and in conserved portions of ribosomal proteins L4 and L22. Most of the mutations were associated with complete loss of macrolide and ketolide activity, whereas streptogramin combinations were less affected.

Anti-Bacterial Agents↗

Emergence of a 23S rRNA mutation in Mycoplasma hominis associated with a loss of the intrinsic resistance to erythromycin and azithromycin.

OBJECTIVES: Mycoplasma hominis is intrinsically resistant to 14- and 15-membered macrolides and to the ketolide telithromycin but is susceptible to josamycin, a 16-membered macrolide, and lincosamides. The aim of our study was to investigate the in vitro development of macrolide resistance in M. hominis and to study the impact of ribosomal mutations on MICs of various macrolides and related antibiotics. METHODS: Selection of macrolide-resistant mutants was performed by serial passages of M. hominis PG21 in broth medium containing subinhibitory concentrations of clindamycin, pristinamycin, quinupristin/dalfopristin and telithromycin. Stepwise selection of josamycin-resistant mutants was performed onto agar medium containing increasing inhibitory concentrations of josamycin. Resistant mutants were characterized by PCR amplification and DNA sequencing of 23S rRNA, L4 and L22 ribosomal protein genes. RESULTS: Various mutations in domain II or V of 23S rRNA were selected in the presence of each selector antibiotic and were associated with several resistance phenotypes. Josamycin was the sole antibiotic that selected for single amino acid changes in ribosomal proteins L4 and L22. Unexpectedly, the C2611U transition selected in the presence of clindamycin and the quinupristin/dalfopristin combination was associated with decreased MICs of erythromycin, azithromycin and telithromycin, leading to a loss of the intrinsic resistance of M. hominis to erythromycin and azithromycin. CONCLUSIONS: Ribosomal mutations were associated with resistance to macrolides and related antibiotics in M. hominis. Some mutants showed a loss of the intrinsic resistance to erythromycin and azithromycin.

Anti-Bacterial Agents↗

[Endocarditis due to Pasteurella sp. Two cases].

Human pasteurellosis is, in general, a locoregional infection due to contact with an animal. Systemic infections are rare and endocarditis is exceptionally described. The authors report two new cases of endocarditis due to Pasteurella spp, they then review 29 other published cases. Pasteurella spp. endocarditis presents as an acute form in 64% of cases and affects the aortic as often as the mitral valves. Contact with an animal is documented in 65% of cases. Pasteurella multocida is the most frequent species in this infection. The total death rate is 40% and can reach 57% of cases in case of immunodepression. The bad prognosis of this infection, justifies an early diagnosis and a rapid and adapted but not yet consensual medicosurgical treatment.

Aged↗

In vitro development of resistance to six and four fluoroquinolones in Mycoplasma pneumoniae and Mycoplasma hominis, respectively.

Selection of resistant mutants in sequential subcultures with increasing concentrations of six and four different fluoroquinolones was studied for one reference strain each of Mycoplasma pneumoniae and Mycoplasma hominis, respectively. All fluoroquinolones tested selected for resistance, with alterations affecting the quinolone resistance-determining regions of the four target topoisomerase genes.

Drug Resistance, Bacterial↗

Mechanisms of drug resistance in Mycoplasma pneumoniae.

Mycoplasma pneumoniae is a pathogenic mycoplasma responsible for respiratory tract infections in humans, occurring worldwide in children and adults. This review briefly focuses on its antibiotic susceptibility profile and on the development of acquired resistance for this microorganism. The lack of a cell wall in mycoplasmas makes them intrinsically resistant to beta-lactams and to all antimicrobials which target the cell wall. Intrinsic resistance related to specific mycoplasma species concerns essentially the acrolide-lincosamide-streptogramin-ketolide (MLSK) antibiotic group. M. pneumoniae is susceptible to all MLSK antibiotics, except to lincomycin. Among the three antibiotic classes used for the treatment of mycoplasmal infections including tetracyclines, MLSK group, and fluoroquinolones, macrolides and related antibiotics are the drug of choice for respiratory infections caused by M. pneumoniae. Both target alterations and efflux mechanisms implicated in acquired antibiotic resistance have been described in mycoplasmas either by genetic mutation or transfer of new genes carried by transposons. At present, M. pneumoniae remains greatly susceptible to antibiotics, but as this mycoplasma is difficult to isolate, the number of clinical strains tested is limited and the occurrence of acquired resistance not well documented. However some strains having acquired resistance to MLSK have been decribed in vivo and erythromycin-resistant isolates are spreading now in Japan. To date, no clinical isolates resistant to fluoroquinolones or tetracyclines have been described in the literature, but some strains having acquired resistance to both classes have been selected in vitro. Molecular diagnosis of this acquired resistance has been related to target alterations, in ribosome for macrolides and tetracyclines, or in topoisomerase II genes for fluoroquinolones.

Adult↗

In vitro selection and characterization of resistance to macrolides and related antibiotics in Mycoplasma pneumoniae.

Macrolide-resistant mutants of Mycoplasma pneumoniae were selected in vitro from the susceptible reference strain M129, by 23 to 50 serial passages in subinhibitory concentrations of macrolides and related antibiotics, erythromycin A, azithromycin, josamycin, clindamycin, quinupristin, quinupristin-dalfopristin, pristinamycin, and telithromycin. Mutants for which the MICs are increased could be selected with all antibiotics except the streptogramin B quinupristin. Portions of genes encoding 23S rRNA (domains II and V) and ribosomal proteins L4 and L22 of mutants were amplified by PCR, and their nucleotide sequences were compared to those of the susceptible strain M129. No mutation could be detected in domain II of 23S rRNA. Two point mutations in domain V of 23S rRNA, C2611A and A2062G, were selected in the presence of erythromycin A, azithromycin, josamycin, quinupristin-dalfopristin, and telithromycin. Mutants selected in the presence of clindamycin and telithromycin harbored a single amino acid change (H70R or H70L, respectively) in ribosomal protein L4, whereas insertions of one, two, or three adjacent glycines at position 60 (M. pneumoniae numbering) were selected in the presence of both streptogramin combinations. Telithromycin was the sole antibiotic that selected for substitutions (P112R and A114T) and deletions ((111)IPRA(114)) in ribosomal protein L22. Three sequential mutational events in 23S rRNA and in both ribosomal proteins were required to categorize the strain as resistant to the ketolide. Azithromycin and erythromycin A were the only selector antibiotics that remained active (MICs, 0.06 and 1 micro g/ml, respectively) on their mutants selected after 50 passages.

Anti-Bacterial Agents↗

In vitro activities of the newer quinolones garenoxacin, gatifloxacin, and gemifloxacin against human mycoplasmas.

The activities of garenoxacin, gatifloxacin, and gemifloxacin were compared with those of four fluoroquinolones against human mycoplasmas and ureaplasmas, including fluoroquinolone-resistant genetically characterized strains. Garenoxacin exhibited the highest activity, followed by gemifloxacin, moxifloxacin, and gatifloxacin. The minimal bactericidal activities of these three compounds were lower than those of the four fluoroquinolones.

Anti-Infective Agents↗

Mutations in 23S rRNA account for intrinsic resistance to macrolides in Mycoplasma hominis and Mycoplasma fermentans and for acquired resistance to macrolides in M. hominis.

The mechanisms of intrinsic resistance of Mycoplasma hominis to 14- and 15-membered macrolides were investigated in comparison with those of M. pneumoniae, which is naturally susceptible to macrolides. Radiolabeled erythromycin was not accumulated by M. hominis PG21, but addition of an ABC transporter inhibitor increased the level of erythromycin uptake more than two times, suggesting the existence of an active efflux process. The affinity of [(14)C]erythromycin to ribosomes isolated from M. hominis was dramatically reduced relative to that to ribosomes isolated from M. pneumoniae. The nucleotide sequences of 23S rRNA of both ribosomal operons rrnA and rrnB and ribosomal proteins L4 and L22 of M. hominis were obtained. Compared to the sequence of M. pneumoniae, M. hominis harbored a G2057A transition in its 23S rRNA sequence, as did M. fermentans, another mycoplasma that is erythromycin resistant. An additional C2610U change was also found in the sequence of M. hominis. Moreover, two M. hominis clinical isolates with acquired resistance to 16-membered macrolides were examined for mutations in domain II and domain V of 23S rRNA and in ribosomal proteins L4 and L22. Compared to the sequence of reference strain PG21, one isolate harbored a A2059G transition and a C2611U transition in one of the two rrn operons, while the other one was mutated only at position 2059, also on the same operon. No mutation was found in the two ribosomal protein sequences. Overall, the present study is an exhaustive characterization of the intrinsic resistance of M. hominis to 14- and 15-membered macrolides and the first description of mycoplasma clinical isolates resistant to macrolide, lincosamide, and streptogramin antibiotics harboring a mutation at position 2611 in the 23S rRNA.

Anti-Bacterial Agents↗

Culture-negative endocarditis due to Chlamydia pneumoniae.

We report on the case of a 54-year-old woman diagnosed as having culture-negative endocarditis (clinical and histopathologic evidence compatible with a recent episode of endocarditis). The responsibility of Chlamydia pneumoniae in this episode of endocarditis was suggested by a serological study and was then confirmed by the positive results of PCR and in situ hybridization tests with aortic and mitral valves tissues. To our knowledge, this is the first case of endocarditis due to C. pneumoniae confirmed by molecular biology-based techniques.

Blood↗

[Serologic diagnosis of chlamydial and Mycoplasma pneumoniae infections].

The diagnosis of Chlamydia trachomatis infection can be based either on direct detection of the organism or its components or indirectly by measuring antibodies as markers of the individual's response to the infection. The latter is currently of limited value. Neither IgG or IgA antibodies can be used to diagnose current genital infection by Chlamydia trachomatis or to exclude such an infection. There is no solid ground as yet for the use of IgA antibodies as a marker of persistant or unresolved infection. Commercial tests in the Elisa format based on peptides from the MOMP of Chlamydia trachomatis are available and show good specificities and sensitivities. Hsp60 seems to have a unique role in the development of tubal scarring and antibodies to chsp60 could predict tubal factor infertility. Serology is the main diagnostic tool for the diagnosis of Mycoplasma pneumoniae infection. The serologic assays are the complement fixation test (CF), immunofluorescence, the microparticle agglutination and recently EIAs. The CF test is still used for serodiagnosis of Mycoplasma pneumoniae infection because of the sensitivity of 90%. Single titer of >or= 64 are considered to be indicative of recent infection. A number of commercial EIAs have been developped. The difficulty for IgG interpretation is a definition of a cutoff value for discriminating infected and healthy subjects. Most of the IgM assays show good diagnostic sensitivities and are valuable tools for the early diagnosis of Mycoplasma pneumoniae infection in children. There are no wholly satisfactory serological methods for diagnosis of Chlamydia pneumoniae infection. Problems arise from the high background of IgG antibody prevalence, the lack of standardized testing methods.

Adolescent↗