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X Vignon

Publications and source records attributed to X Vignon.

25 records · Page 2Linked to original sources

Halothane-induced functional and structural modifications in sarcoplasmic reticulum membranes from pig skeletal muscle.

We investigated the effect of halothane on lipid and protein components of sarcoplasmic reticulum membranes isolated from pig trapezius muscle. We studied the relationships between the (Ca2(+)-Mg2+)-ATPase activity and the interaction of the anesthetic with lipid and protein moieties by means of EPR and fluorescence spectroscopic techniques. Our results clearly show that below 5 mumol per mg protein, halothane interacts mainly with the lipid components of the membrane. This interaction is shown to be localized in the central core of the phospholipid bilayer and to induce an increase of the membrane calcium permeability. The interaction with protein components only occurs at higher halothane concentrations and affects its conformational and functional states. These results are discussed with respect to new insights into diethylether-SR membrane interaction and to malignant hyperthermia syndrome in the pig.

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Ultrastructural localization of calcium in post-mortem bovine muscle: a cytochemical and X-ray microanalytical study.

Calcium localization was demonstrated in bovine longissimus muscle using the antimonate precipitation technique in combination with electron probe X-ray microanalysis. Samples were taken each hour during the first 24 h post-mortem, and then after a storage period of 8 and 15 days. For all sampling times analysed, heavy precipitates were seen in dense parts of nuclei and on N-lines of myofibrils. Up to 18-20 h post-mortem, deposits were observed in sarcoplasmic reticulum at the level of triads. In comparison with the earlier post-mortem samples, myoplasmic precipitates were strongly increased at 4 h post-mortem, and just before rigor onset, at 19 h where intermyofibrillar spaces were completely blackened and triads were no more visible. These localizations of precipitates were still observed up to 15 days post-mortem. At these storage times, myofibril disruptions were seen at the level of N-lines. Wavelength-dispersive and energy-dispersive spectrometric analyses indicated that significant amounts of calcium occurred in the dense precipitates observed.

Animals↗

The postnatal development of the junctional complexes of hamster Sertoli cells as revealed by HRP and freeze-fracture.

The development of the Sertoli cells occluding junctions was investigated in testes from 5-, 10-, 15-, 20- and 30-day-old hamsters after intravascular administration of horseradish peroxidase (HRP) and by freeze-fracture. Up to the 15th day, HRP could be detected in the interstitial spaces and the central area of testicular cords. On day 20, the tracer reached the lumen of some tubules but in others it was retained at the periphery of the seminiferous epithelium, thus suggesting an asynchronous formation of the blood-testis barrier along the length of the tubules. Gap junctions associated with short rows of particles were found on freeze-fracture replicas from 5-day-old animals. Later on, a decrease in the frequency of gap junctions and a corresponding increase in the number of tight junctions was observed. Beyond the 20th day, tight junctions became morphologically and physiologically similar to those of mature animals, indicating establishment of the blood-testis barrier.

Animals↗

Evidence for the effectiveness of the blood--CSF barrier in the fetal rat choroid plexus. A freeze-fracture and peroxidase diffusion study.

The blood--cerebrospinal fluid (CSF) barrier in the choroid plexus is principally constituted of apical junctional complexes between epithelial cells. The effectiveness of this barrier was studied during the fetal development in the rat. Choroid plexuses from fetuses (14th and 18th embryonic day) and newborn (1 and 6 day old) rats were examined after intravascular administration of a proteic tracer (horseradish peroxidase) and investigated by freeze-fracture. From the 14th day of fetal life, apical junctions were seen to constitute a barrier that prevents the passage of peroxidase from blood to CSF; the tight junctions were morphologically similar to those of the mature animals; the junctional fibrils appeared continuous on complementary replicas. These data suggest that, from the 14th day of fetal development, the blood--CSF barrier is both morphologically and physiologically mature.

Animals↗

Cloning in cattle: from embryo splitting to somatic nuclear transfer.

The ability to obtain genetically identical offspring in cattle (clones) is useful for research and for potential applications to breeding schemes. Experimental possibilities for generating such animals have evolved considerably in the last two decades. Embryo splitting has become a relatively simple technique but is limited to twinning. Embryonic nuclear transfer has improved and is associated with sexing to generate sets of clones despite a great variability of results between parent embryos. The factors of progress are reviewed here. Recently, somatic cells used as a source of nuclei in bovine nuclear transfer has been demonstrated. Here we present the results of the developmental potential of nuclei from skin and muscle cells.

Animals↗

Analysis of lipid composition of sarcoplasmic reticulum membranes from normal and malignant hyperthermic pig skeletal muscle.

In search of a general membrane defect hypothesis for malignant hyperthermia syndrome, we analysed the lipid profiles of heavy sarcoplasmic reticulum membranes isolated from normal and malignant hyperthermia longissimus dorsi pig muscle. Malignant hyperthermia susceptibility was assessed by halothane challenge of pigs. Sarcoplasmic reticulum membranes from malignant hyperthermia susceptible pigs differed significantly from control ones in the cholesterol content and phosphatidylethanolamine/phosphatidylcholine ratio; both were higher in former membranes. These latter lipid modifications were in agreement with the significant increase of their bulk lipid viscosity, as evidenced by an increase of diphenyl hexatriene fluorescence anisotropy. The increased level of phosphatidylethanolamine associated with the decreased content of phosphatidylcholine in malignant hyperthermic membranes was shown to be a potential consequence of depressed activities of both phospholipid N-methyltransferase I and II activities. Finally, the distribution of fatty acids in these particular phospholipids showed no change in phosphatidylcholine molecules, whereas the percentage of arachidonate and stearate in the phosphatidylethanolamine species were respectively higher and lower in malignant hyperthermic membranes. These differences in major phospholipids content and the enrichment of a metabolically important fatty acyl chains in malignant hyperthermia sarcoplasmic reticulum membranes strongly suggest that the lipid metabolism may contribute to the molecular mechanism of malignant hyperthermia syndrome.

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