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B Housset

Publications and source records attributed to B Housset.

99 records · Page 6Linked to original sources

Effects of culture conditions and hyperoxia on antioxidant enzymes in pig pulmonary artery and aortic endothelium.

Because hyperoxia induces early injury to lung endothelial cells and since tolerance to hyperoxia is correlated with increased lung antioxidant enzyme activity, we measured superoxide dismutase, catalase and glutathione peroxidase in both fresh isolates and primary cultures of endothelial cells from pig pulmonary artery and aorta. Cultured endothelial cells were studied at confluency and up to 5 days thereafter under control or hyperoxic conditions. In both types of confluent cell, total and cyanide-insensitive superoxide dismutase increased when compared to fresh cells. The most conspicuous postconfluency change in both types of endothelial cell was a marked decrease in glutathione peroxidase, which could be prevented by the addition of selenomethionine to culture media. A 5-day exposure to hyperoxia resulted in a 2-fold increase in cyanide-insensitive superoxide dismutase in both aortic and pulmonary artery endothelial cells. In view of a similar decrease in DNA in both types of cells despite some differences in enzyme levels, oxygen cytotoxicity could not be related to a particular antioxidant enzyme profile.

Aerobiosis↗

[The cyclines].

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Drug Resistance, Microbial↗

Decreased phosphatidyl choline content in bronchoalveolar lavage fluids of children with bronchopulmonary dysplasia: a preliminary investigation.

Bronchoalveolar lavage (BAL) was performed on 12 infants who had recovered from neonatal acute respiratory failure and on 12 patients with bronchopulmonary dysplasia (BPD) in order to evaluate the concentration of phosphatidyl choline (PC) in BAL fluid. These two groups were similar at birth (mean birth weight: 1,980 and 1,750 g, respectively; mean gestational age: 33.4 and 32.1 weeks respectively). Mechanical ventilation based on oxygen requirement lasted longer in the group with BPD. BAL was performed at the end of the first year of life (at 8.5 and 10.3 months, respectively) and the results were compared to control values (from infants of the same age without neonatal disease). Whereas the protein concentration in BAL fluid was similar in the two groups, a dramatic decrease of the BAL PC was found in BPD: The mean values of BAL-PC over protein ratio were 0.9 in the group without pulmonary sequelae and 0.3 in the group with BPD. These preliminary results suggest an impairment of the pulmonary surfactant metabolism in this chronic lung disease following neonatal acute respiratory failure.

Bronchopulmonary Dysplasia↗

Field investigation of influenza vaccine effectiveness on morbidity.

Our objective was to evaluate influenza vaccine effectiveness during an influenza epidemic by means of a matched case-control study. The study was performed by 35 general practitioners who collected specimens for influenza virus testing from 610 patients who consulted for infectious syndrome: 168 (28%) were influenza-positive. Two designs were used for selecting controls to take into account the high incidence-rate of influenza-like illness and the various possible protective effects of the vaccine. A first disease-free control matched for age and sex was selected during the same week as the case. A second control matched for age and sex was selected at the end of the epidemic period, irrespective of disease history during the epidemic period. Upper and lower bounds of vaccine effectiveness can be derived from these case-control designs. After adjustment for chronic conditions and exposure to an index case, analysis of the matched-pairs whose case was influenza-positive showed, with the first group of controls, an influenza vaccine effectiveness of 68% (95% CI, 10% to 88%) and, in the second group, 53% (95% CI, -19% to 82%). Among the pairs whose case was negative for influenza, vaccine effectiveness was, respectively, 31% (95% CI, -17% to 59%) and 12% (95% CI, -47% to 47%). Vaccine effectiveness was highest for the H3N2 subtype whose vaccine strain was identical to that of the wild-type strain. The results suggest that influenza vaccine is effective in the field in preventing influenza morbidity.

Adolescent↗

Biochemical aspects of free radicals metabolism.

The lung is particularly exposed to oxidant stresses, such as those that can be brought about by oxygen-derived free radicals. They mainly result from the monovalent reduction of molecular oxygen. The most reactive oxygen metabolite is the hydroxyl radical, whose formation appears to be dependent upon the presence of iron-chelates. Free radicals are normally produced by cellular metabolism. Furthermore, activated phagocytes, during the 'respiratory burst', release oxygen metabolites that are necessary for bacterial killing. Free radicals are highly reactive species. Their target molecules are proteins, DNA and polyunsaturated fatty acids whose alterations can lead to cell death. There are, however, several antioxidant substances which are enzymatic (superoxide dismutases, catalase and glutathione peroxidase) and non enzymatic (reduced glutathione, vitamin E and C etc...). In many experimental systems, an increase in antioxidant defences is associated with higher resistance to oxidant stress. However, the antioxidant system may be overwhelmed by an overproduction of intra and/or extracellular free radicals leading to tissue injury. Recent advances in the understanding of free radical metabolism can suggest some new therapeutic approaches such as the administration of exogenous antioxidant or iron chelators.

Animals↗

CFTR gene mutations in adults with disseminated bronchiectasis.

The severity and type of clinical manifestations are variable in patients with cystic fibrosis (CF). The respiratory syndromes in these patients consist of lung infections associated with disseminated bronchiectasis (DB), asthma, and chronic obstructive pulmonary disease. To investigate the possible involvement of the cystic fibrosis transmembrane conductance regulator (CFTR) gene in chronic pulmonary disease in adults, we studied 32 DB patients with a clinically isolated respiratory syndrome. Careful analysis of all the CFTR gene exons and their flanking regions revealed a significantly increased frequency of CFTR gene mutations in these patients. Thirteen CFTR gene mutations were identified in sixteen different alleles. Six of these mutations, which have previously been reported as CF defects, were found on nine alleles. A further four, two of which had not previously been described (D192N and 406-2 AdeltaC), are potentially disease-causing mutations. We also identified three rare substitutions (R31C, L997F, T1220I), which could be involved in mild CFTR gene disease. Four patients were compound heterozygotes, one carried two CFTR gene mutations (possibly allelic) and six were heterozygous for a mutation. These results indicate that CFTR gene mutations may play a role in bronchiectatic lung disease, possibly in a multifactorial context. These findings have implications for genetic counselling of DB patients and their families.

Adult↗