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Biomedical subjects

G Flik

Publications and source records attributed to G Flik.

108 records · Page 6Linked to original sources

Calmodulin-mediated cadmium inhibition of phosphodiesterase activity, in vitro.

Ion-stripped bovine brain calmodulin (CaM) binds 4 moles Cd2+ as well as 4 moles Ca2+ per mole protein, with similar affinity; in the presence of 1 mM Mg2+ the molar binding ratio of CaM for Ca2+ decreased to 3, the apparent K0.5 for Ca2+ nearly doubled, but the binding characteristics of CaM for Cd2+ were not changed. Saturating concentrations Ca2+ did not affect the molar binding ratio of CaM for Cd2+, but increased the apparent K0.5 for Cd2+; vice versa, saturating concentrations Cd2+ decreased the molar binding ratio for Ca2+ to 2 without affecting the apparent K0.5 for Ca2+. CaM-independent phosphodiesterase (PDE) activity was inhibited at [Cd2+] greater than 10(-5) M. Cd2+-CaM as well as Ca2+-CaM activated PDE. However, the Cd2+-CaM complex is less effective than the Ca2+-CaM complex in stimulating CaM-dependent enzyme activities. Cd2+ inhibits Ca2+- and CaM-dependent PDE in a competitive way. Introduction of Cd2+ in a medium containing Ca2+ and CaM may, therefore, result in a reduction of CaM-dependent enzyme stimulation. By its interference with Ca2+- and CaM- dependent PDE activity, Cd2+ could upset the catabolic pathway of cellular cyclic nucleotide metabolism.

Alkaline Phosphatase↗

Cadmium inhibition of Ca2+ uptake in rainbow trout gills.

The effects of cadmium (Cd2+) on calcium (Ca2+) transport in the gills of rainbow trout (Salmo gairdneri) were studied. The gill epithelium of freshwater fish represents a model for a Ca2+-transporting tight epithelium. Unidirectional Ca2+ fluxes in the gills were estimated in an isolated saline-perfused head preparation. Ca2+ influx was not affected when up to 10 microM Cd were added to the ventilatory water at the start of flux determinations (in vitro exposure). However, after 16 h in vivo preexposure of the fish to 0.1 microM Cd in the water, a 79% inhibition of Ca2+ influx was observed. Ca2+ efflux was not affected when up to 10 microM Cd were added to the ventilatory water during the flux determination. Ca2+ efflux in fish preexposed to 0.1 microM Cd for 16 h was also not affected; a preexposure to 1 microM Cd, however, resulted in a 173% increase in Ca2+ efflux rates. Tracer retention in the gill tissue indicated that both Ca2+ and Cd2+ enter the gill epithelium via a lanthanum (La3+)-inhibitable pathway. It is concluded that Cd2+ readily enters the branchial epithelial cells, similarly as Ca2+ does via La3+-sensitive apical Ca2+ channels. The inhibitory action of Cd2+ on transepithelial Ca2+ influx seems to result from an inhibition of the basolateral Ca2+ transport, occurring after a critical intracellular Cd2+ concentration has been reached.

Animals↗

Effects of ovine prolactin on calcium uptake and distribution in Oreochromis mossambicus.

Ovine prolactin stimulated the net uptake rate of Ca2+ from the water by 96%, produced frank hypercalcemia, and increased total bone calcium content in fed rapidly growing freshwater male tilapia, Oreochromis mossambicus. It did not, however, alter the size of the readily exchangeable bone calcium pool. The increase in calcium accumulation resulted from an increase in whole-body Ca2+ influx and a decrease in Ca2+ efflux. It is concluded that prolactin exerts an important control over Ca2+ exchange between the fish and its environment and that through its hypercalcemic action prolactin indirectly facilitates bone mineralization.

Animals↗

Environmental control of prolactin synthesis in the teleost fish Oreochromis (formerly Sarotherodon) mossambicus.

In the cichlid fish Oreochromis mossambicus prolactin cell activity is inversely related to the osmolarity and the Ca2+ concentration of the ambient water. Prolactin cell activity was estimated, at the end of a 3-week experimental period, by determination of the rate of prolactin synthesis during incubation of the rostral parts of the pituitary gland, in the presence of [3H]lysine. Since the secretory activity of isolated prolactin cells is known to be inversely related to the osmolarity of the incubation medium, the possibility was investigated that the effects of changes in ionic composition of the ambient water on prolactin secretion in vivo are mediated by changes in osmolarity of the blood plasma. No support was found for this hypothesis. In fish exposed to high water osmolarities prolactin cell activity was reduced, while plasma osmolarity increased. In contrast, at high Ca2+ concentrations of the water, when prolactin secretion was inhibited to a similar extent, plasma osmolarity was significantly reduced. Although direct effects of plasma osmolarity on prolactin cells cannot be excluded completely, it is unlikely that plasma osmolarity is the predominant factor in the control of prolactin cell activity in situ. The physiological significance of the capacity of isolated prolactin cells to respond to changes in osmolarity of the ambient medium--a capacity shared with some other endocrine cell types--is therefore unclear.

Animals↗

Active Ca2+ transport in plasma membranes of branchial epithelium of the North-American eel, Anguilla rostrata LeSueur.

A branchial epithelial membrane fraction, more than 20-fold enriched in Na+/K+-ATPase activity when compared with the crude homogenate of the tissue, was obtained from adult freshwater American eels. In a membrane vesicle preparation that consisted of 33% inside-out, 23% right-side-out and 44% leaky vesicles, the accumulation of 45Ca2+ was stimulated by ATP, but not by ADP. Accumulation of 45Ca2+ was prevented when vesicles were pretreated with detergent or the Ca2+ ionophore A23187; Ca2+ efflux was observed when the ionophore was added to actively 45Ca2+-loading vesicles. Oxalate did not affect Ca2+ accumulation in these vesicles. Kinetic analysis of the Ca2+-transport process by an Eadie-Hofstee plot revealed that the process is homogeneous; its kinetic parameters are a K0.5 for Ca2+ of 0.053 microM and a Vmax of 2.25 nmol Ca2+/min.mg protein (at 37 degrees C). The calmodulin dependency of this Ca2+ transporting process was shown by the inhibitory action of calmodulin antagonists and by the stimulatory effect of calmodulin repletion after EGTA treatment of the membranes. We conclude that an ATP-energized Ca2+ pump is present in the plasma membranes of branchial epithelium, that resembles the Ca2+ pumps of e.g. mammalian intestinal or renal plasma membranes, and propose its involvement in branchial Ca2+-uptake from the water.

Adenosine Triphosphate↗

Whole-body calcium flux rates in cichlid teleost fish Oreochromis mossambicus adapted to freshwater.

Radiotracer techniques were used to measure influx and efflux rates of Ca2+ in freshwater-adapted Oreochromis mossambicus. The influx rate of Ca2+ is related to body weight (W) as Fin = 50W0.805 nmol Ca2+/h. For a 20-g fish the calculated influx rate was 558 nmol Ca2+/h, and this was attributed largely to extraintestinal uptake since the drinking rate was estimated to be only 28 microliter water/h, which corresponds to an intake of 22.4 nmol Ca2+/h. The Ca2+ efflux rate was calculated using the initial rate of appearance of radiotracer in the ambient water and the specific activity of plasma Ca2+. Tracer efflux rates were constant over 6-8 h, which indicated that there was no substantial loss of tracer in either the urine or the feces because this would have resulted in random bursts of tracer loss. Efflux rates then primarily represent integumentary and presumably branchial efflux rates. The efflux rate of Ca2+ is related to body weight as Fout = 30W0.563 nmol Ca2+/h, which means an efflux rate of 162 nmol Ca2+/h for a 20-g fish. The net whole-body Ca2+ influx, calculated as Fnet = Fin - Fout, was 396 nmol/h for a 20-g fish, which proves that the ambient water is an important source of Ca2+.

Adaptation, Physiological↗

Hypothalamically-induced insulin release and its potentiation during oral and intravenous glucose loads.

Male Wistar rats were provided with bilateral cannulas in the lateral hypothalamic area (LHA) and cannulas in the left and right jugular vein. Freely moving rats provided in this way with cannulas were infused with transmitters in the LHA and with various substances in the blood circulation during simultaneous sampling of blood without disturbing the animals. Infusion of norepinephrine (NE) in the LHA resulted in increased insulin levels while plasma glucagon and blood glucose were nearly not affected. This LHA mediated insulin release was suppressed by atropine injection in the blood circulation suggesting a vagal contribution to the observed phenomenon. Administration of either an oral or i.v. glucose load during noradrenergic stimulation of the LHA elicited an exaggerated insulin response when compared to their controls. This LHA potentiated insulin response during an oral and i.v. glucose load could be suppressed by atropinization of the rats. It is concluded that meal-related stimuli are relayed to the NE-stimulated area of the LHA and that these stimuli modulate the output from this area of the LHA that is concerned with the release of insulin.

Animals↗

Evidence for the presence of calmodulin in fish mucus.

Partly purified mucus collected from the skin of three species of fish contains a protein that, on sodium dodecyl sulphate/polyacrylamide gel electrophoresis, comigrates with bovine brain calmodulin and shows the same calcium-dependent shift in electrophoretic mobility as calmodulin. Fish mucus contains a heat-stable activator of cyclic nucleotide phosphodiesterase; activation is concentration dependent and sensitive to the specific calmodulin inhibitor calmidazolium (R 24571). The presence of calmodulin in fish mucus is further indicated by means of a specific radioimmunoassay. A drop in the calcium concentration of the water induces an increase in the immunoassayable calmodulin concentration of mucus, which indicates that the function of calmodulin in mucus is related to control of permeability of the skin epithelium to water and ions.

3',5'-Cyclic-AMP Phosphodiesterases↗

The effect of water acidification on prolactin cells and pars intermedia PAS-positive cells in the teleost fish Oreochromis (formerly Sarotherodon) mossambicus and Carassius auratus.

Although exposure to acid water (pH 3.5) induces severe and prolonged reduction in plasma osmolarity and total plasma calcium concentration in tilapia (Oreochromis mossambicus) and goldfish (Carassius auratus), the responses of the hypophyseal cells are clearly different. In tilapia, the size of the rostral pars distalis of the pituitary gland is enlarged as a result of the increase in size and number of prolactin cells. The pars intermedia PAS-positive (PIPAS) cells are not noticeably changed. Conversely, in goldfish, prolactin cells are unaffected, whereas the number of enlarged PIPAS cells increases markedly. Stimulation of prolactin secretion may be responsible for the partial restoration of plasma osmolarity and calcium levels observed in tilapia after two weeks exposure to acid water. Prolactin cells apparently play a role in the adaptation to acid stress by counteracting osmoregulatory disturbances. Goldfish show no restoration of plasma osmolarity during the course of the experiment. Plasma calcium levels tend to increase. Although prolactin may have an osmoregulatory function in goldfish under steady state conditions, goldfish prolactin cells do not seem to participate in the physiological adaptation to environmental changes that disturb water and ion homeostasis. The function of PIPAS cells in tilapia remains unclear and is apparently unconnected with ion regulation. The observations on these cells in goldfish are consistent with the hypercalcemic activity suggested for them.

Animals↗

Effect of various vitamin D analogs on plasma calcium and phosphorus and intestinal calcium absorption in fed and unfed American eels, Anguilla rostrata.

Injection of about 1 ng/g body wt per day of either vitamin D3 or 1,25-(OH)2-vitamin D3 for 7 days induces hypercalcemia and hyperphosphatemia in fed American eels, Anguilla rostrata, but only hyperphosphatemia in unfed eels. These same analogs also stimulated the uptake of 45Ca from intestinal sacs in situ. The vitamin D3 appeared to be relatively more effective than the 1,25-(OH)2D3 metabolite and chlorpromazine inhibited the effect of vitamin D3 on intestinal calcium uptake. 7-Dehydrocholesterol, vitamin D2, and 24,25-(OH)2D3 did not stimulate hypercalcemia, hyperphosphatemia, or intestinal calcium uptake.

24,25-Dihydroxyvitamin D 3↗

Prolactin and acid stress in the teleost Oreochromis (formerly Sarotherodon) mossambicus.

Prolactin is probably implicated in the control of physiological adaptation to sublethal acid stress in tilapia. Exposure of fish to water at pH 3 caused death within 72 hr, which was associated with pronounced hemodilution. At pH 4 mortality was low, although a substantial and rapid decrease in plasma osmolality, plasma Na+, and plasma total Ca was observed. These effects were at least partly due to increased permeability of the gills for water and ions. After a few days at pH 4, restoration of plasma osmolality, Na+, and total Ca was noticeable. Control levels were reached after 5 days for Ca, and after 10 days for osmolality, Na+, and branchial osmotic water permeability. Prolactin secretion increased markedly during acid exposure, as was established by morphometrical and biochemical methods. In tilapia, administration of prolactin is known to raise plasma osmolality, Na+, and plasma total Ca. This hormone further has been shown to reduce branchial osmotic water permeability. It is concluded therefore that the restoration of plasma electrolytes and branchial osmotic water permeability during chronic acid stress are causally connected with the observed stimulation of prolactin secretion.

Animals↗

Ca2+-dependent phosphatase and Ca2+-dependent ATPase activities in plasma membranes of eel gill epithelium--III. Stimulation of branchial high-affinity Ca2+-ATPase activity during prolactin-induced hypercalcemia in American eels.

Infusions of ovine prolactin for 10 days induced hypercalcemia in unfed American eels, Anguilla rostrata LeSueur, that tentatively was related to stimulation of branchial Ca2+-uptake mechanisms. Analysis of ATPase activities in the plasma membranes of the branchial epithelium in prolactin treated eels showed a specific stimulation of high-affinity Ca2+-ATPase. The results of this study form further evidence that the high-affinity Ca2+-ATPase activity represents the Ca2+-pump of the branchial epithelium.

Animals↗

Ca2+-dependent phosphatase and ATPase activities in eel gill plasma membranes--I. Identification of Ca2+-activated ATPase activities with non-specific phosphatase activities.

The characteristics of Ca2+-activated ATPase activities previously often postulated as components for the calcium transporting system in fish gills do not fulfil the requirements of a transport Ca2+-ATPase. The chelation of Ca2+- or Mg2+-ions is a prerequisite for the adenosinephosphate esters to serve as substrate for gill plasma membrane phosphatases. Ca2+-activated ATP hydrolysis results from the activity of a heterogeneous pool of phosphatases located in the plasma membranes of the branchial epithelium, as is concluded from substrate specificity tests and the effects of various inhibitors on these hydrolytic activities. In the present study only non-specific phosphatases could be shown.

Adenine Nucleotides↗

Carp macrophages and neutrophilic granulocytes secrete an interleukin-1-like factor.

Carp, Cyprinus carpio L, macrophages and neutrophilic granulocytes obtained from pronephros were cultured. Supernatant was harvested after 48 h and tested for interleukin-1 (IL-1) bioactivity. A concentration-dependent stimulation of proliferation was found of carp Ig- lymphocytes as well as of the murine IL-1 dependent D10 (N4) M cell line. A 4 h treatment of cells with phorbol myristate acetate prior to culture gave a two- to fourfold enhancement of the bioactivity in the supernatant. Antibodies raised in sheep against human recombinant IL-1 alpha or IL-1 beta added to the supernatant annulled the IL-1 bioactivity. Western blot analysis of supernatants with sheep or rabbit polyclonal antisera against human IL-1s revealed 22 kDa and 15 kDa protein species. The predominant newly synthesized protein that was immunoprecipitated with these antisera was a 15 kDa molecular species. We conclude that carp macrophages and neutrophilic granulocytes produce an IL-1-like molecule with T-cell proliferating potency that shares structural similarities with mammalian IL-1. This is the first evidence for the IL-1 signal protein in carp immunocompetent cells.

Animals↗

Cortisol inhibits apoptosis in carp neutrophilic granulocytes.

The direct effect of cortisol treatment on carp neutrophil viability was examined in vitro. Cortisol treatment caused an inhibition of neutrophil apoptosis. The effect was blocked by glucocorticoid receptor blocker RU486, showing that rescue from apoptosis was receptor mediated. Using binding studies with radioactive cortisol, a single class of glucocorticoid receptors was detected with high affinity (Kd = 2.6 nM) and low capacity (497 receptors/cell) for cortisol binding. Both in vitro and in vivo cortisol treatment did not affect neutrophil respiratory burst activity. These data indicate that cortisol can augment the supply of functional neutrophilic granulocytes in conditions of acute stress, which may be essential for survival, since phagocytes form the first line of defence against micro-organisms.

Animals↗

Cortisol induces apoptosis in activated B cells, not in other lymphoid cells of the common carp, Cyprinus carpio L..

In mammalian T and B cells glucocorticoids (GS) regulate development and selection through induction of apoptosis; more recently GS-induced apoptosis has also been implicated in the removal of circulating, activated T and B cells following an immune response. In an earlier report we have given the first evidence for cortisol-induced apoptosis as an immune regulator in an aquatic vertebrate, the common carp. Here we report on subpopulation-specific sensitivity of carp peripheral blood leukocytes (PBL) to cortisol-induced apoptosis. B cells, the most abundant leukocyte subpopulation in fish blood, are sensitised to cortisol-induced apoptosis by activation with the mitogens LPS or PHA. Cortisol-induced apoptosis in B cells is receptor mediated as it is blocked by the synthetic GS receptor blocker RU486. In contrast to what is known for mammalian lymphocytes, apoptosis in carp T cells is hardly affected by cortisol, both in unstimulated and in PHA-stimulated cell cultures. A culture supernatant of PHA-prestimulated PBL, containing IL-2-like activity, decreased spontaneous apoptosis in both T and B cells, but did not affect cortisol-induced apoptosis in B cells. Apoptosis in thrombocytes was unaffected by either mitogens, cortisol, or lymphocyte supernatant. The difference between mammalian and fish leukocyte sensitivity to cortisol is discussed in the light of differences in the immune response of mammals and fish.

Animals↗

The impact of calcium, magnesium, zinc, and copper in blood and seminal plasma on semen parameters in men.

To investigate the impact of calcium, magnesium, zinc, and copper in blood and seminal plasma on semen parameters, 107 fertile and 103 subfertile males provided a standardized blood and semen specimen. Total calcium and magnesium concentrations were determined with colorimetric end point assay procedures. Zinc and copper were determined by flame atomic absorption spectrophotometer (AAS). Semen analysis was performed according to World Health Organization guidelines (1992). The concentrations of calcium, magnesium, zinc, and copper in blood and seminal plasma were not different between the subfertile and fertile group. Weak correlations were demonstrated between blood plasma zinc concentrations and sperm count (rs = 0.18), sperm motility (rs = 0.15), and abnormal sperm morphology (rs = 0.13). Zinc and magnesium concentrations in seminal plasma correlated weakly with sperm count (rs = 0.17 and rs = 0.16, respectively), and copper concentrations in blood plasma with motility (rs = 0.25). Strong correlations were found between calcium, magnesium, and zinc in seminal plasma. Although calcium, magnesium, zinc, and copper play an essential role in spermatogenesis and fertility, the determination of these elements in blood and seminal plasma does not discriminate on the basis of fertility in this group of men.

Adult↗