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Biomedical subjects

M Ivan

Publications and source records attributed to M Ivan.

At least 19 recordsLinked to original sources

Activated ras and ret oncogenes induce over-expression of c-met (hepatocyte growth factor receptor) in human thyroid epithelial cells.

Hepatocyte Growth Factor (HGF) receptor, encoded by the protooncogene c-met, is overexpressed in many human tumours, including those of thyroid epithelium. The absence in most cases of any primary structural abnormality of the met gene suggests that overexpression is secondary to mutation of other gene(s). To test this hypothesis we investigated the effect on met expression of two activated oncogenes known to play a major role in thyroid oncogenesis, ras and ret. To minimize the possibility of unknown co-operating events, we introduced these genes directly into normal human thyrocytes in primary culture using amphotropic retroviral vectors and assessed met expression as early as possible in the resulting epithelial colonies. Double immunofluorescence revealed expression of met protein, strictly localized to cells expressing the mutant ras and ret vectors, expression in background normal cells being barely detectable. In contrast, colonies induced to proliferate at a comparable rate by a vector expressing SV40 T showed no increase in met expression. To permit quantitation by Western blotting we also extended these findings to a thyroid cell line (R18) containing a zinc-inducible mutant ras gene. Induction of the oncogene led to a fourfold increase in met protein expression. We conclude that overexpression of met is induced by activation of the ras or ret signalling pathway and not simply by deregulation of the cell cycle per se. The data suggest that the proliferative advantage conferred by these oncogenes may be in part due to the resulting sensitization of tumour epithelium to paracrine HGF secreted by stromal cells.

Antigens, Viral, Tumor

GH3 cells expressing constitutively active Gs alpha (Q227L) show enhanced hormone secretion and proliferation.

cAMP levels in GH3gsp cells (Q227L mutation of Gs alpha), in comparison with uninfected GH3 and GH3vt (with vector alone) cells, were two to three fold (P< 0.01) higher (basal), and 10-20 fold (P<0.001) higher (in the presence of isobutyl methylxanthine, (IBMX)). Proliferation of GH3gsp cells after 7 days in culture, as determined by cell number and [(3)H]thymidine incorporation, were up to 25% (respectively P <0.001 and P < 0.02) higher. After chronic (4 days) but not acute (15 min) exposure to forskolin (10 microM) or dibutyryl cAMP (50 microM) all cell types showed a greater than 200% (P < 0.001) increase in [(3)H]thymidine incorporation. Secretion of prolactin and growth hormone by GH3gsp cells were two to four fold (P <0.001) higher than GH3 and GH3vt cells after 4 h and 10-12 fold (P <0.001) higher after 8 h. In conclusion GH3 cells possessing Q227L have a higher proliferation rate and secrete higher levels of prolactin and growth hormone which are associated with higher levels of cAMP.

1-Methyl-3-isobutylxanthine

An amphotropic retroviral vector expressing a mutant gsp oncogene: effects on human thyroid cells in vitro.

Point mutations of the gsp protooncogene (encoding the alpha-subunit of the Gs protein) that constitutively activate the cAMP signaling pathway are a common feature of and a plausible causative mechanism for thyroid hyperfunctioning adenomas (hot nodules). To investigate the extent to which mutant gsp acting alone can induce proliferation of thyroid follicular cells, we generated an amphotropic retroviral vector (based on the pBABE-neo plasmid and psi-CRIP packaging line) to permit stable introduction of a hemagglutinin-tagged Gln227-->Leu mutant gsp gene into normal human thyrocytes in vitro. The biological activity of the vector was confirmed by detection of HA-tagged Gsp protein expression and induction of cAMP synthesis in selected target cells. Normal human thyroid follicular cells in primary monolayer culture were infected with the gsp retroviral vector or with corresponding vectors expressing mutant H-ras or neo only as positive and negative controls, respectively. Although, as before, mutant ras generated 10-20 well differentiated epithelial colonies/dish of 10(5) infected cells, with an average lifespan of 15-20 population doublings, only small groups of no more than 15-50 differentiated thyrocytes were observed with the gsp vector. In addition to standard conditions (10% FCS), infections were performed in reduced serum (1% FCS, TSH, and insulin), in the presence of isobutylylmethylxanthine, or in the presence of agents capable of closing gap junctions, with no significant difference in outcome. Although little or no proliferative response was observed regardless of the conditions, there was clear evidence of morphological response (rearrangement of the actin cytoskeleton and increased cell size). The results suggest that gsp mutation may not be a sufficient proliferogenic stimulus by itself to account for hot nodule formation.

Animals

Spontaneous de-differentiation correlates with extended lifespan in transformed thyroid epithelial cells: an epigenetic mechanism of tumour progression?

Normal thyroid follicular cells, like many highly differentiated epithelia, have limited proliferative capacity. We previously showed that this could be extended by expression of the SV40 large T oncogene, but that immortal lines always lost thyroid-specific differentiation. Detailed analysis now show that clones expressing T undergo 2 mutually exclusive fates. They either (i) remain well-differentiated, in which case they undergo irreversible growth arrest after 5 to 15 p.d., or (ii) spontaneously develop poorly differentiated sub-clones that exhibit greatly extended proliferative life spans (up to 75 p.d.). The frequency of this event (> 3 per 10(4) cell divisions) greatly exceeds that expected from somatic mutation, suggesting an epigenetic basis. This is supported by our finding of rare de-differentiated epithelial cells in normal thyroid that all generate clones with extended life spans, indistinguishable from the above, following introduction of SV40 T. Escape from early mortality in differentiated thyroid epithelium therefore requires not only loss of tumour suppressor gene function (induced here by SV40 T), but also a switch in differentiation programme, with the latter effectively converting the follicular cell into a cell type with increased intrinsic proliferative potential. The analogy between this in vitro model and the progression of thyroid cancer from the well-differentiated to the highly aggressive, anaplastic form suggests that de-differentiation may play a causal rather than a passive role in this critical switch in tumour behaviour.

Antigens, Viral, Tumor

Mitogenic stimulation of normal and oncogene-transformed human thyroid epithelial cells by hepatocyte growth factor.

Hepatocyte growth factor (HGF) has been shown to be mitogenic for a wide variety of epithelial cells, including recently, dog thyroid follicular cells. Here we have extended this work to human thyrocytes, and find that recombinant HGF stimulates DNA synthesis (proportion of cells in cell cycle S phase) in normal primary cells in monolayer, with an ED50 of approximately 8 ng/ml and a maximum between 50 and 250 ng/ml. Stimulation was observed even in the presence of 10% fetal calf serum (previously the most potent mitogen for these cells in our hands), the maximum nuclear 3H-thymidine labelling index achieved with HGF being up to 6-fold higher than that with serum alone. A similar additive effect was observed on thyrocytes already stimulated to proliferate by expression of an activated ret oncogene. These results make HGF the most potent defined mitogen for human thyrocytes to date, and suggest that upregulated HGF/met signalling may confer a significant growth advantage even in neoplastic thyroid cells, consistent with the finding of increased met expression in many thyroid carcinomas.

Animals

Duodenal flow of microbial and feed nitrogen in sheep fed normal soybean meal or soybean meal treated with modified zein.

The effect of protecting soybean meal from microbial degradation in the rumen on duodenal flow of microbial N and feed N was studied with sheep. The soybean meal was protected with chemically modified zein. Two groups of four wethers, each equipped with a ruminal cannula and a duodenal reentrant cannula, were fed a diet based on corn silage (1 kg of DM/d) that contained either a normal or protected soybean meal supplement. The results showed no appreciable differences between the two supplements in ruminal fluid pH, total N, and NAN concentrations; however, the concentration of total VFA was lower for protected soybean meal than for normal soybean meal. Although the flow of NAN into the duodenum was not affected, bacterial N flow was 18% lower, and feed N flow was 195% higher, for protected soybean meal than for normal soybean meal. The digestibilities of OM, ADF, and N in the digestive tract were not affected by the type of supplement. The treatment of soybean meal decreased the degradability of total feed N in the stomach by 22 percentage points, but the increased supply of feed N into the small intestine because of the treatment was at the expense of decreased bacterial synthesis of protein in the rumen, probably because of a shortage of RDP in the diet.

Animal Feed

Effects of supplemental vitamins E and C on the immune responses of calves.

Two experiments were conducted to evaluate the effects of oral supplementation of vitamin C and vitamin E (alpha-tocopherol), alone and in combination, on immune responses of calves. In Experiment 1, 18 Holstein newborn female calves were supplemented with 0, 1, and 2 g/d of vitamin C from birth to 6 wk of age. Concentrations of ascorbic acid in blood plasma were significantly higher for supplemented calves than for control calves. No significant differences among treatments occurred in the concentrations of IgG1, IgG2, and titer to keyhole limpet hemocyanin. In Experiment 2, effects of oral supplementation of vitamins E and C on immune responses were studied using 18 Holstein female calves. Concentrations of alpha-tocopherol in blood plasma were significantly higher for supplemented than for control calves. The concentrations increased from birth to wk 1, and then very little change occurred from wk 1 to 6. Differences among treatments in the concentrations of IgG1, IgG2, IgM, and titer to keyhole limpet hemocyanin were not significant; however, concentrations of IgM in calves supplemented with vitamins E and C generally tended to be higher than those of control calves. Antibodies to keyhole limpet hemocyanin were higher at 6 wk than at 4 wk of age.

Animals

Metabolism of tritiated D-alpha-tocopherol and D-alpha-tocopheryl succinate in intraruminally dosed sheep.

The comparative disposition (absorption, plasma disposition, tissue distribution) of D-alpha-tocopherol and of D-alpha-tocopheryl succinate (forms of vitamin E) was investigated in 10 ruminally cannulated wethers. Tritiated tocopherols (4 microCi/kg BW) were administered directly into the rumen. Plasma and ruminal fluid activity were regularly measured from the time of administration to 96 h after administration. Radioactivity in lymph was measured in four additional wethers dosed intraruminally (100 microCi) with the same tritiated compounds. Lymph was collected from the cannulated thoracic duct during the first 24 h after the administration. Wethers were killed and selected tissues were measured for their tocopherol activity. Plasma and ruminal fluid specific activity vs time were modeled using appropriate compartmental and noncompartmental approaches. It was shown that there was a large difference in the relative bioavailability of the two compounds with a four times higher (P < .05) relative availability of D-alpha-tocopherol than of D-alpha-tocopheryl succinate. This was explained in terms of incomplete hydrolysis of tocopheryl succinate before absorption. By direct ruminal fluid measurement, it was estimated that tocopherol behaves similarly to a soluble ruminal marker with a ruminal transit time of approximately 19 h. In plasma, the total mean residence time was 148 h for D-alpha-tocopherol and 106 h for D-alpha-tocopheryl succinate. The lymph activity was mainly associated with tocopherol both after tocopherol and tocopheryl succinate administration. Tissue concentration of radioactivity was higher (P < .05) for sheep dosed with tocopherol than for those dosed with the tocopheryl succinate, confirming the difference in bioavailability of the two compounds.

Animals

In vivo and in vitro gastric emptying of milk replacers containing soybean proteins.

Gastric digestion of three milk replacers for which protein was provided either exclusively by milk powder or partially (50%) by heated soybean flour or soybean protein concentrate was studied in vivo and in vitro. In vivo gastric emptying of protein fractions of the diets was measured in six preruminant calves fitted with reentrant duodenal cannulas and used in a double 3 x 3 Latin square design. In vitro gastric emptying was studied after hydrochloric acid and rennet digestion in an artificial stomach. In vivo and in vitro flow rates of 12% TCA-insoluble N and total N were higher for the soybean diets than for the milk protein diet, indicating that the incorporation of soybean protein prevented casein from clotting. Because of this faster gastric emptying, proteolysis in the stomach was reduced. However, gastric emptying of NPN (12% TCA-soluble N) was significantly decreased only in vitro. No difference existed between the two milk replacers containing either soybean flour or soybean protein concentrate. In vivo and in vitro results were correlated, suggesting that the in vitro method could be used to predict gastric digestion of protein fractions in vivo.

Animal Feed

A variant epithelial sub-population in normal thyroid with high proliferative capacity in vitro.

We describe the existence in normal human primary thyroid cultures of a hitherto unrecognised sub-population of epithelial cells. This variant phenotype is characterised by squamoid morphology, absence of thyroglobulin, and an altered profile of intermediate filament expression. We suggest that these cells are derived from scattered foci of squamous metaplasia present in the normal gland. Although they are initially present at a frequency of less than 10(-4), their very high proliferative capacity enables them to outgrow the 'classical' follicular cells and confers a much increased capacity for gene transduction. Recognition of these cells is therefore crucial in the interpretation of long-term thyroid culture experiments and those involving in vitro gene transfer.

Biomarkers

Liver biopsy in sheep.

Liver biopsies were performed in the same group of 16 sheep on 8 consecutive wk using an apparatus with a fibre optic continuous light source and a telescope. The sheep were placed in a sternal position on a special table constructed of metal pipes (3.8 cm diameter) and 4.5 cm spacing. Approximately 300 mg of fresh liver sample was removed from each sheep to be analyzed for copper or vitamin E.

Animals

Plasma 1,25-dihydroxyvitamin D, insulin-like growth factor-1, calcium, magnesium and phosphorus concentrations in pregnant beef cows and calves from a herd with a known history of congenital joint laxity and dwarfism.

An investigation was undertaken to ascertain the possibility of a relationship between calcium, inorganic phosphorus, magnesium, 1,25-dihydroxyvitamin D [1,25(OH)2D], and insulin-like growth factor-1 (IGF-1) concentrations in blood plasma and occurrence of congenital joint laxity and dwarfism (CJLD) in young cattle. Pregnant cows were fed hay (30 cows) or grass silage (122 cows) during winter months (October 15 to calving in March). Blood samples were taken from cows on seven occasions during the experiment and 48 hours after calving, and from calves at birth, and at seven, 14 and 56 days old. Five per cent of calves born (six of 122) to cows fed grass silage and none born to cows fed hay were affected by CJLD. The diet and health status of calves were not significantly (P greater than 0.05) associated with the plasma concentration of 1,25(OH)2D. The plasma calcium concentration declined with age of the calves (P less than 0.05) but was not affected by the occurrence of CJLD. Plasma phosphorus and magnesium concentrations in calves born to cows fed silage were higher (P less than 0.05) than in those born to cows fed hay. At birth and seven days old, plasma phosphorus concentrations were higher (P less than 0.05) in CJLD-affected calves than in healthy calves but the plasma concentration of IGF-1 was not different (P greater than 0.05). It was concluded that the high plasma phosphorus concentrations in CJLD-affected calves and their dams could be related to the aetiology of the CJLD condition in calves.

Animals

Effects of bentonite on wool growth and nitrogen metabolism in fauna-free and faunated sheep.

Two experiments were carried out with sheep that originated from a fauna-free flock and were fed a soybean meal-corn silage diet with or without a bentonite supplement. One-half of the sheep fed each diet in each experiment were faunated with a mixed population of ruminal protozoa, whereas the other half of the sheep remained fauna-free until the end of both experiments. Wool growth and daily gain were measured in Exp. 1. (eight rams per treatment), which lasted 110 d, and the metabolic effects in the rumen and intestinal tract of protozoa and dietary bentonite supplement were tested with cannulated wethers (four wethers per treatment) in Exp. 2. The results of Exp. 1 showed decreased wool growth (P less than .05) due to the presence of protozoa in the rumen. Dietary supplementation with bentonite partly offset the decreased wool growth in sheep with protozoa, but there were no effects of dietary bentonite and no protozoa x bentonite interaction (P greater than .05). Daily gain was decreased by the dietary bentonite (P less than .05) supplement but was not affected (P greater than .05) by the ruminal presence of protozoa. In Exp. 2, protozoa increased (P less than .01) the ruminal concentrations of ammonia and decreased (P less than .05) the acetic:propionic acid molar ratio. Fractionation of N in the duodenal digesta flowing from the stomach to the small intestine showed that protozoa decreased (P less than .05) the flow of nonammonia N and bacterial N, and there was a protozoa x bentonite interaction for these effects (P less than .05).(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acids

Biokinetics and biliary excretion of radiotocopherol administered orally to sheep.

Four adult sheep were given .4 microCi/kg of BW of D-alpha[5-Me-3H]tocopherol orally. Plasma alpha-tocopherol specific activities were measured serially during a 72-h period, after which the sheep were killed. The disposition kinetics were best described by the use of a two-compartment model. The radiotocopherol had a slow distribution phase followed by a relatively slow elimination phase. During the 72-h period of serial monitoring the peak plasma specific activities were observed between 32 to 48 h. At slaughter (72 h after dosing) tissue radioactivity distribution indicated a high rate of accumulation in some glandular organs such as the liver and adrenals. Identification of radioactive components excreted in bile, using HPLC or thin-layer chromatography, showed that unchanged radiotocopherol was present only at very low concentrations (less than 3% of the total recovered radioactivity).

Administration, Oral

Effects of bentonite and monensin on selected elements in the stomach and liver of fauna-free and faunated sheep.

Forty-eight rams, originating from a fauna-free flock, were divided into three groups of 16 and fed a corn silage-based diet that was unsupplemented (control) or included bentonite or monensin supplements. Eight rams in each group were inoculated with a mixed population of ruminal protozoa; the other rams remained free of protozoa throughout the 110-d experiment. The rams had free access to drinking water and assigned diet. All rams were killed at the end of the experiment, and ruminal and abomasal contents and livers were removed and sampled. Protozoal numbers in ruminal fluid of faunated rams were lower for groups fed bentonite or monensin supplements than for the control group. Bentonite decreased and monensin increased ruminal pH. The ruminal solubilities of Cu, Zn, and Mg were decreased by the presence of ruminal protozoa, but those of Fe, Mn, and Ca were not affected. Bentonite supplement decreased, and monensin supplement increased, the ruminal solubilities of Cu, Zn, and Mg. Protozoa increased the abomasal solubilities of Fe, but the other elements were not affected. Liver concentrations of Cu were decreased by bentonite and increased by monensin, but protozoa decreased the liver concentrations of both Cu and Mg. Liver concentration of Zn was affected by a monensin x protozoa interaction and that of Mg by a bentonite x protozoa interaction. It was concluded that chronic Cu poisoning could be accelerated by dietary supplements of monensin in sheep without ruminal microfauna, and the dietary Cu bioavailability could be decreased by dietary supplements of bentonite in sheep with a normal population of protozoa in the rumen.

Abomasum

Plasma alpha-tocopherol profiles in sheep after oral administration of dl-alpha-tocopheryl acetate and d-alpha-tocopheryl polyethylene glycol-1000 succinate.

Twenty-five yearling wethers, weighing 45 to 50 kg, were used in a trial designed to compare the bioavailability of dl-alpha-tocopheryl acetate (TA) and d-alpha-tocopheryl polyethylene glycol-1000 succinate (TPGS). The sheep, five per treatment, were each given a basal diet without vitamin E supplement (control) or with a daily oral supplement of 240 iu TA or TPGS, or of 480 iu TA or TPGS. Blood samples were obtained at zero time, and then twice daily for three weeks. The bioavailability was greater for TA than for TPGS. This was indicated by the significantly higher (P less than 0.01) plasma alpha-tocopherol concentrations during the three-week experimental period in sheep dosed with equivalent units of TA than in those dosed with TPGS. When administered at 480 iu, the TPGS produced plasma profiles similar to those found after administration of the lower (240 iu) dose of the TA.

Administration, Oral

Metabolic changes in the rumen following protozoal inoculation of fauna-free sheep fed a corn silage diet supplemented with casein or soybean meal.

Fauna-free wethers were fed bi-hourly a corn silage diet containing casein or soybean meal as a protein supplement. The wethers were inoculated via rumen cannula with a mixed population of ruminal ciliate protozoa. Ruminal fluid was sampled daily for 4 d before and for 13 d (and on d 28) after inoculation. Protozoal populations reached peak numbers on d 8 and decreased to new levels after d 9 for wethers on both supplements. Protozoa decreased (P less than 0.01) the concentrations of total volatile fatty acids, increased (P less than 0.01) the pH and decreased (P less than 0.01) he concentrations of total and non-ammonia nitrogen in ruminal fluid. The concentrations of ammonia nitrogen increased with increasing numbers of protozoa for wethers on both supplements, but the concentrations decreased after d 7 to approximately pre-inoculation levels for the casein-supplemented diet. The increasing numbers of protozoa were associated with the increased concentrations of total and free alpha-amino nitrogen (P less than 0.01) and sulfide (P less than 0.05) and with the decreased concentrations of soluble Cu (P less than 0.05) in the ruminal fluid in soybean meal-supplemented wethers but not in those receiving casein. It was concluded that dietary proteins with differing physical characteristics are metabolized to a different extent by ruminal ciliate protozoa, which in turn can affect the metabolism of other dietary nutrients such as nitrogen and sulfur and contribute to copper-sulfur interaction.

Ammonia