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Biomedical subjects

S Pierre

Publications and source records attributed to S Pierre.

26 records · Page 2Linked to original sources

Effects of carbon dioxide embolism with nitrous oxide in the inspired gas in piglets.

We have compared cardiorespiratory variables in anaesthetized piglets whose lungs were ventilated with oxygen in nitrous oxide (N2O group) or nitrogen (N group) after right ventricular carbon dioxide boluses (0.5 or 1 ml kg-1; n = 12) or slow graded injections (n = 6). Boluses affected all variables studied significantly (P < 0.05) except mean systolic arterial pressure. Significant changes in PE'CO2 (P = 0.012) and PaO2 (P = 0.048) values were observed in the N2O group. Changes in PaCO2 were related to volumes of injected carbon dioxide (P = 0.044). Boluses of 1.0 ml kg-1 induced severe circulatory collapse in two piglets in the N2O group. Slow embolization altered respiratory variables significantly (P < 0.001)). PaO2 decreased significantly in the N2O group (P < 0.0001). Mean pulmonary arterial pressure increased significantly over time (P = 0.001) and lasted longer in the N2O group (P < 0.05). Volumes and time required to induce a 50% increase in mean pulmonary arterial pressure differed significantly between groups (P < 0.05). We conclude that nitrous oxide worsened the effects of rapid and slow carbon dioxide emboli on cardiopulmonary variables. Rapid carbon dioxide embolism altered respiratory and haemodynamic variables, while slow carbon dioxide embolism changed only respiratory variables.

Anesthesia, General↗

A combination of distal and proximal regions is required for efficient prolactin regulation of transfected rabbit alpha s1-casein chloramphenicol acetyltransferase constructs.

In the rabbit, alpha s1-casein is the major casein secreted in the milk. Transcription of the alpha s1-casein gene is induced by PRL. To define the positions of the cis-sequences involved in the control of rabbit alpha s1-casein gene expression by PRL, chimeric genes containing upstream regions of alpha s1-casein gene linked to the chloramphenicol acetyltransferase gene were cotransfected into Chinese hamster ovary cells with the plasmid expressing the rabbit mammary PRL receptor. It was observed that a distal fragment -3442/-3118 was responsible for a high induction of PRL sensitivity when linked in the 5'-position to a chimeric construct (-391/1774)-chloramphenicol acetyltransferase. A cooperation between distal and proximal regions of the alpha s1-casein gene is responsible for the PRL-dependent enhancer activity of the distal fragment. The mammary gland-specific nuclear factor-like binding sequence found around position -90 in the proximal promoter of the alpha s1-casein gene is involved in this cooperation. The distal fragment was further studied to determine the position of regulatory regions. A -3442/-3385 fragment was sufficient to induce a PRL sensitivity similar to that conferred by the larger -3442/-3118 distal fragment, but multiple interactions are likely to exist between other regulatory regions included in this distal fragment. Four DNA-binding regions (I-IV) have been identified within the reduced -3442/-3385 fragment by footprint experiments using rabbit mammary gland or liver nuclear extracts (NE). Protected area III is observed using both NE. Protected areas I, II, and IV are specific for lactating mammary gland NE. The sequences of areas I and IV share several homologies with the sequence of the mammary gland-specific nuclear factor-binding site.

Animals↗

[Microscopic diagnosis of onychomycoses].

INTRODUCTION: The microbiological identification of onychomycosis may be uncertain as some fungi growing in culture from this material are not necessarily pathogen and invasive. Conversely, the negativity of a culture is not rare even when fungi are seen by microscopy. MATERIALS AND METHODS: We compared the information brought by standard histological examination, immunohistochemistry and in vivo confocal microscopy. RESULTS: The histological examination of nails is of importance in this pathology. We present a laboratory technique that proves to be easy and rapid. We report diagnostic criteria allowing the distinction between dermatophytes, yeasts and non-dermatophyte molds. The standard microscopic examination may further be improved by immunohistochemistry using some antibodies to fungi. In vivo confocal microscopy is a technique for the future. The dermatologist will be able to see fungi in the nail at the clinical examination, without any sampling or peculiar preparation. CONCLUSION: The histological examination is a routine technique useful for defining the nature and localization of fungi in the nail plate. Immunohistochemistry applied to onychomycosis is an experimental approach bringing prominent informations about the identification of fungi. In vivo confocal microscopy is a door opened to the future.

Arthrodermataceae↗

A distal region enhances the prolactin induced promoter activity of the rabbit alpha s1-casein gene.

Casein gene expression is induced in the rabbit mammary gland by prolactin (PRL). alpha s1-casein is the major casein secreted into milk. In order to define the position of the DNA sequences involved in the control of rabbit alpha s1-casein gene regulation by PRL, chimeric genes were constructed between upstream regions of the rabbit alpha s1-casein gene and the chloramphenicol acetyl transferase (CAT) reporter gene. A series of 5'-deleted fusion genes was obtained by nuclease digestion of the alpha s1-casein gene upstream region. These gene constructs were transfected into rabbit primary mammary cells, or cotransfected in CHO cells with the plasmid coding for the rabbit mammary receptor (PRL-R). A regulatory region has been located between nt -3768 and -3155. This region enhances the prolactin induced promoter activity of the alpha s1-casein gene. It might possess or cooperate with prolactin responsive elements located further downstream in the alpha s1-casein gene.

Animals↗

Genetic and molecular analysis of spontaneous respiratory deficient (res-) mutants of Escherichia coli K-12.

Respiratory deficient (res-) mutants of E. coli are slow growing microcolonial, anaerobic, catalase and benzidine negative strains whose broad phenotypic alteration may result from pleiotropic mutations in genes of the hemin biosynthetic pathway. They are easily recovered from platings of sensitive cells on concentrations of gentamicin higher than the minimal inhibitory concentration. These mutants show a dramatic change in their biochemical diagnostic profile resulting primarily from deficiencies in the active transport mechanisms of the cell. Using well-marked F- and Hfr strains, 157 mutants were analyzed from 3 different parent strains; all but 2 resulted from mutations in 3 loci of the hemin biosynthetic pathway. Of these a marked skew to hemB- mutations was seen, with more than 80% mapping there. The possibility that this hot spot resulted from transpositional activity was tested by Southern hybridization of EcoRI digests of the chromosomal DNA, using as a probe, a 2.8-kb fragment containing the hemB gene. The WT and other hemB+ control strains contained a 14.6-kb fragment. Of 18 hemB strains tested, 14 showed deletion and insertion mutations which fell into four classes based on the variation in the size of the fragment or on the absence of hybridization. The latter resulted from complete deletion of the hemB gene. An increase in fragment size from 1.5-kb to 3.4-kb was observed in some of the strains.

Aminoglycosides↗

The histological structure of Kveim tests parallels the evolution of pulmonary sarcoidosis.

The histopathology of the granulomas induced by Kveim antigen varies in patients with sarcoidosis. Eighty skin sites of Kveim tests were biopsied 4 and 5 weeks after the antigen was injected into the skin of patients with pulmonary sarcoidosis. The histological features in the skin of Kveim tests differed according to the stage of evolution of sarcoidosis and seem to parallel the pathological changes in the lung.

Granuloma↗