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A Brunel

Publications and source records attributed to A Brunel.

5 recordsLinked to original sources

[Decrease of the intestinal microflora without consequences for the morphometry and topography of the distal ileum in the mouse treated with antibiotics].

The aim of this study was to assess the possible modifications in the conventional intestine when deprived of its symbiotic microflora. The experiment was designed to study the effect of a heavy antibiotic dose on fecal microflora during the 33-d treatment period as well as its effects upon the intestinal wall. Conventional adult mice received either a casein-starch diet (conventional controls) or an antibiotic-supplemented (0.66% dry matter, DM) diet (treated conventionals); Furthermore, germ-free (axenic) mice taken from isolators to the open animal room received the same antibiotic-supplemented diet (treated axenics) Fecal microbial population remained around 10(8)/g in the conventional mice while it decreased to 10(3)/g in the treated conventional mice. Fecal microbial population of the treated axenic mice dropped to 10(2)/g. At the end of the 33-d treatment period, no significant difference in ileal villus height between the treated or control groups no difference either was seen in the aspects of the villus and cell surface as shown by scanning electron microscopy. In the control group, however, development of bacterial colonies exhibiting various shapes were observed on the intestinal mucus. Although it was found that antibiotic treatment was followed by significant changes in microbial population and biochemical composition of digestive contents, this study concluded that the structure of the distal ileal epithelium was not impaired.

Animals

Intestinal microflora of the newborn rat as related to mammary, faecal, and vaginal Staphylococci strains isolated from the dam.

To determine the relative importance of maternal microflora (faeces, vagina, and teats) in the contamination of newborn rats, strains of staphylococci from six different families (dam + litter) were isolated. These strains were identified, and by means of numerical profiles analyzed for their degree of similarity for each litter and (or) biotope. The staphylococci strains found in the gut of the newborn rat originated first from the teats and thereafter from the faeces. Concomitant observation of some identical strains, however, suggested a certain degree of similarity between these two maternal biotopes in this animal.

Animals

Relationship between the digestive microflora of the newborn and maternal microflora in rodents as evidenced by a transit marker.

The cutaneous and digestive microflora of the dam, constitute the main sources of bacteria likely to colonize the digestive tract of the newborn. Our objective was to study the conditions (delay, level) in relation to the maternal microflora. Spores of Bacillus stearothermophilus were used as a tracer. They were spread on the mother's udder or given per os to the mother. In our study, we used holoxenic rats and axenic mice. The tracer was then followed in newborn rats and newborn mice. Transfer of the spore from the dam to the digestive tract of the newborn were generally observed very shortly after the contact between the dam and the newborn (2 or 3 h). This transfer requires a minimal concentrations of spores 1.5 x 10(6) spores/g feces and 3 x 10(6) spores/udder for the rat; 10(6) spores/g feces and 1.5 x 10(6) spores/udder for the mouse). Transfer of spores in the digestive tract of neonates is proportional to the level of spores on the udder. But only a hundredth or less of the initial inoculum is transferred. The transfer of spores via the udder or via the maternal feces led to very similar levels of implantation of spores in the digestive tract of neonates. These results emphasize the important role of the maternal fecal and mammary microflora in the colonization of the digestive tract of the newborn.

Animals

[Ozone therapy].

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Humans