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Biomedical subjects

F Bert

Publications and source records attributed to F Bert.

49 records · Page 3Linked to original sources

[Epidemiological studies of the susceptibility of Pseudomonas aeruginosa to antibiotics].

The susceptibility to antibiotics of 1367 non-replicate strains of Pseudomonas aeruginosa isolated at Beaujon Hospital between 1990 and 1992 was investigated and compared with the serogroup O and the strain origin (ward, sample). Five betalactam resistance patterns were distinguished according to susceptibility to ticarcillin, piperacillin, ceftazidime and aztreonam,: 1 = SSSS, 2 = RRSS, 3 = RRRR, 4 = RSSR, 5 = RRSR. The other antibiotics studied were imipenem, tobramycin, amikacin, ciprofloxacin and fosfomycin. Resistance to all antibiotics, fosfomycin excepted, was higher in intensive care units than in other wards. The respective frequencies of the phenotypes were: 70.3%, 4.3%, 11.8%, 10.2% and 3.4%. The frequency of pattern 3 steadily increased between 1990 and 1992 at the expense of pattern 1, whereas patterns 2, 4 and 5 remained stable. The most common serogroups were O6 (15.8%), O11 (14.5%) and O1 (9.9%). The O11 strains were more widespread in intensive care units than in other wards and were more resistant to antibiotics. Most of the O12 strains displayed pattern 2 and were highly resistant to antibiotics.

Anti-Bacterial Agents↗

[Legal regulations and practical application of studies of slaughtered game animals and their meat].

Meat regulations also involve game inspection. The previous publications on the one hand dealt with the regulations and their practice concerning game intended for slaughter, especially the control of fences and the gaining of meat. On the other hand regulations concerning game hunted for food (Deer: Red deer, Sika deer, Fallow deer, Roe deer; Horned ungulates: European mouflon, Chamois; Wild boar; European hare; European rabbit; game such as Badger and Raccoon) and regulations to be observed by hunters, mainly for the gaining of meat were discussed. The recent publication regarded meat inspection (routine inspection) of slaughter game. The following publication deals with meat inspection (routine inspection) of game hunted for food and with meat inspection (additional inspection) of slaughtered game as well as game hunted for food.

Abattoirs↗

[Legal foundation and practical execution of slaughtering and meat examination of game animals].

Meat regulations also involve game inspection. On the one hand the previous publications dealt with the regulations and their practice concerning game intended for slaughter, especially the control of fences and the gaining of meat. On the other hand regulations concerning game hunted for food (deer: red deer, sika deer, fallow deer, roe deer; horned ungulates: European mufflon, chamois; wild boar; European hare; European rabbit; game such as badger and raccoon) and regulations to be observed by hunters, mainly for the gaining of meat were discussed. At the beginning the following publication completes the previous ones concerning game hunted for food and later deals with the meat inspection of slaughtered game.

Abattoirs↗

[Legal fundamentals and practical accomplishments of abattoir and meat research in mammalian game animals].

Meat regulations also involve game inspection. The previous publication mainly dealt with the regulations and their practice concerning game intended for slaughter. The following publication deals with game hunted for food (deer: red deer, sika deer, fallow deer, roe deer; horned ungulates: european mufflon, chamois; wild boar; european hare; european rabbit) and also game such as the badger and the raccoon.

Animals↗

Analysis of a case of recurrent bacteraemia due to group A Streptococcus equisimilis by pulsed-field gel electrophoresis.

An 86-year-old woman with a history of metastatic breast cancer developed two episodes of streptococcal bacteraemia and erysipelas separated by an interval of 3 months. The isolates belonged to Lancefield group A but were biochemically identified as Streptococcus equisimilis. The similarity of the two isolates was established by DNA macrorestriction analysis and pulsed-field gel electrophoresis, indicating that the second episode was due to relapse and not reinfection.

Aged↗

Mitochondrial DNA diversity in the Llanos de Moxos: Moxo, Movima and Yuracare Amerindian populations from Bolivia lowlands.

BACKGROUND: Movima, Yuracare, Ignaciano and Trinitario are Amerindian populations living in the Bolivian lowlands of the Amazonian basin. The cultural and genetic affinity of the peoples living in this area is poorly known, despite many archaeological studies demonstrating its importance in pre-Columbian times. Densely populated Amerindian groups occupied the region, both in the Llanos and along the river streams of the Amazonian basin, practising intense agricultural activities and exchange of goods. The historical and linguistic records indicate that the land was occupied through successive migrations that gave rise to complex socio-economic communities. Genetic information suggests that the colonization of the American continent was fairly simple from a emigrational point of view, but other evolutionary processes, such as genetic drift or natural selection, could have also shaped the genetic background of present day populations in the Beni region. AIM: The objective of this study is to characterize the genetic diversity of these populations by analysing the sequence variability of the HVR-I control region in the mitochondrial DNA (mtDNA). The Amerindian origin of these populations suggests that close genetic similarities should be evident between the Beni samples studied here and other Amerindian groups. However, complex processes of population interactions and/or isolation in the Beni region might result in non-expected genetic affinities. SUBJECTS AND METHODS: DNA was extracted from pulled-out hairs obtained in situ from non-closely related individuals living in the Beni Department in Bolivia. DNA was extracted using a standard Chelex 100 method and a 401 bp DNA fragment of the HVR-I region was amplified using specific primers (L-15978 and H-16412). DNA amplicons were purified by centrifugation using Microspin S-300 HR columns and both SNA strands were sequenced after asymmetric PCR using direct Dye-Terminator 2 sequencing kit (Perkin-Elmer). Two independent 401 and 328 bp DNA fragments were sequenced separately for each sample. The sequence analyses includes mismatch distributions and mean pairwise differences, median network analysis, and neighbour joining, maximum likelihood phylogenetic comparisons. Genetic diversity of DNA sequences was also measured in various ways for the sample studied and UPGMA trees were drawn, including a large number of South Amerindian sequences. RESULTS: The genetic diversity of 401 nucleotide long mtDNA sequences in the hypervariable control region, from positions 16,000-16,400, was characterized in a sample of 54 Amerindians living in the Llanos de Moxos. A total of 34 distinct lineages were observed, defined by 41 variable nucleotide positions, and 70.6% of all lineages were single sequences. All four major Amerindian haplogroups were detected (A 18.5%, n=10; B 24.1%, n=13, C 50.0% n=27; and D 5.6%, n=3). The median network analysis observed suggests that processes of population expansion took place in the Beni region. However, no clear haplotype differentiation by population could be detected. High levels of molecular variability and a bimodal pair-wise mismatch distribution were seen within the sample. The analyses of molecular variance (AMOVA) showed that most of the variance observed was due to intrapopulation variability, and that the highest among-groups variance was obtained when a linguistic classification criteria was used. The phylogenetic comparison revealed unique lineages in the Beni areas, not reported for other Amerindian populations. CONCLUSIONS: The genetic diversity observed in the Beni area is higher than that observed in other American populations living in much larger areas and with a long, known evolutionary history, despite the reduced area of Moxos. This could result from processes of reproductive isolation between groups, followed by population expansions and migration, where genetic drift might have be a major evolutionary force in population differentiation.

Bolivia↗

Comparative activity of beta-lactam antibiotics against 'intrinsically' ticarcillin-resistant strains of Pseudomonas aeruginosa.

The in vitro activity of piperacillin, cefoperazone, cefsulodin, ceftazidime, aztreonam and imipenem was studied against 44 isolates of Pseudomonas aeruginosa with 'intrinsic' resistance to ticarcillin in comparison with 20 ticarcillin-susceptible strains, by MIC determination and the disk diffusion test. The activity of the antibiotics, imipenem excepted, against the resistant strains was reduced when compared to the susceptible strains. The most significant reduction was found for aztreonam and the least significant for ceftazidime. When considering the breakpoints, all strains were intermediate with aztreonam and cefoperazone, but most of them remained susceptible to ceftazidime, piperacillin and cefsulodin.

Anti-Bacterial Agents↗

Activities of piperacillin, ceftazidime, cefepime and cefpirome against Pseudomonas aeruginosa strains with intrinsic ticarcillin resistance.

The in vitro activities of cefepime and cefpirome against 44 intrinsically ticarcillin-resistant strains of Pseudomonas aeruginosa were compared to their activities against 20 ticarcillin-susceptible strains by MIC determination and the disk test. Time-killing curves were constructed for piperacillin, ceftazidime, cefepime and cefpirome against two susceptible and two resistant strains. The activities of cefepime and cefpirome against the resistant strains were impaired, and most of the strains were of intermediate sensitivity to these agents. The time-killing curves of the four beta-lactams were similar, with a modest decline in viable cell counts over the first 6 h followed by regrowth. There was no difference between the susceptible and resistant strains.

Anti-Bacterial Agents↗