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Cytotoxic effects of sodium selenite on tadpoles (Xenopus laevis).

The cytotoxic effects of sodium selenite on developing tadpoles (Xenopus laevis) were examined by scanning, light, and electron microscopy. Selenium exposure resulted in disorganization, vacuolization, and swelling of the outer layer of epithelial cells in the tadpole epidermis. Examination of muscle cells in the somites revealed myofibril disorganization and cell degeneration. Mitochondria in both epithelial and muscle cells were swollen and showed loss of cristae. It is likely that sublethal exposures to selenium compounds result in cellular damage which could affect motility, and thus survival, over longer periods of time.

Animals↗

Variations among cultured cells in glutathione peroxidase activity in response to selenite supplementation.

The aim of this study was to devise conditions for manipulation of the activity of selenium-dependent glutathione peroxidase in cell lines by means of variation in culture medium contents of selenite and fetal calf serum. Nine different cell lines were studied. A low glutathione peroxidase activity was, in most cases, obtained by the use of a medium with a low (2%) serum content. Selenite induced in most of the cell lines an increase in glutathione peroxidase activity, with a plateau ranging from 10 nM to 300-1000 nM. Growth-retarding effects of selenite became apparent at 300-2000 nM, showing a large cell line variation. Supplementation with 50-100 nM selenite for 1 week should generally be suitable for maximal glutathione peroxidase induction. The selenium contents of serum batches were highly variable, pointing to the importance of using only one well-defined, preferably low-selenium, batch. The glutathione peroxidase activities varied considerably between cell lines and the selenite-induced increases ranged from negligible to more than 10-fold. The availability of cell lines with such variable responses should be valuable for experiments aimed at evaluating the importance of glutathione peroxidase and selenium compounds independently of glutathione peroxidase for the protection against oxidative insult.

Cell Division↗

Selenium protects primary human keratinocytes from apoptosis induced by exposure to ultraviolet radiation.

The generation of reactive oxygen species has been implicated in ultraviolet radiation (UVR)-induced skin damage. In mice, increasing dietary selenium intake protects skin from UVR-induced DNA damage and photocarcinogenesis. We sought to determine whether selenium supplementation could protect keratinocytes from apoptosis resulting from exposure to broadband (TL20W/12) UVR. Unirradiated cultures contained 6.5 +/- 1% apoptotic cells; the maximum percentage of apoptotic cells (34 +/- 5%) was seen 16 h after UVR of 600 J/m(2). Under these conditions cell death from necrosis was 15 +/- 2.5% of the total cells. A 24-h preincubation with sodium selenite (10 nm(-1) microm) or selenomethionine (50 nm(-1) microm) protected cultured human keratinocytes from UVR-induced apoptosis. In primary keratinocytes the greatest reduction in apoptosis was found with 100 nm of either selenium compound (71% reduction in the numbers of total apoptotic cells; P < 0.01). Supplementation with 100-200 nm selenite or selenomethionine prevented UVR-induced apoptosis, but did not decrease the levels of UVR-induced p53, as measured by Western blotting. Collectively, this data suggests that selenium prevents UVR-induced cell death by inhibiting p53-independent cell death pathways.

Acridine Orange↗

Effect of selenite on renal toxicity and antitumor activity of cis-diamminedichloroplatinum in mice inoculated with Ehrlich ascites tumor cell.

Effect of sodium selenite on renal toxicity and antitumor activity of cis-diamminedichloroplatinum (Cisplatin; CDDP) repeatedly administered to mice inoculated with Ehrlich ascites tumor cells were examined. Simultaneous repeated administration of selenite with CDDP markedly improved the growth depression, the renal toxicity indicated by blood urea nitrogen value and the diarrhea caused by CDDP, and inhibited the growth of Ehrlich ascites tumor cells cooperatively with CDDP. This results suggest that selenium compounds are useful for prevention of the toxic side effects of CDDP.

Animals↗

Synthesis of 5-methylaminomethyl-2-selenouridine in tRNAs: 31P NMR studies show the labile selenium donor synthesized by the selD gene product contains selenium bonded to phosphorus.

An enzyme preparation from Salmonella typhimurium catalyzes the conversion of 5-methylaminomethyl-2-thiouridine in tRNAs to 5-methylaminomethyl-2-selenouridine when supplemented with selenide and ATP. Similar preparations from a Salmonella mutant strain carrying a defective selD gene fail to catalyze this selenium substitution reaction. However, supplementation of the deficient enzyme preparation with the purified selD gene product (SELD protein) restored synthesis of seleno-tRNAs. In the absence of the complementary enzyme(s), the SELD protein catalyzes the synthesis of a labile selenium donor compound from selenide and ATP. 31P NMR studies show that among the products of this reaction are AMP and a compound containing selenium bonded to phosphorus. The reaction is completely dependent on the addition of both selenide and magnesium. The dependence of reaction velocity on ATP concentration shows sigmoidal kinetics, whereas dependence on selenide concentration obeys Michaelis-Menten kinetics indicating a Km value of 46 microM for selenide.

Adenosine Monophosphate↗

Combination of neutron activation analysis, tracer techniques, and biochemical methods in the investigation of selenium metabolism.

In several studies on rats, the metabolism of selenium was investigated. The quantitative determination of the element was carried out by instrumental neutron activation analysis. For in vivo tracer experiments, 75Se-labeled selenium compounds were used. In addition to these methods, procedures for the measurement of the selenoenzyme glutathione peroxidase, and for the investigation of other selenoproteins, were applied. In this way, information on the specific pools and sites of action of the element, on biologically important selenoproteins and the regulation of the selenium metabolism, was obtained.

Animals↗

Reproductive outcomes in a population exposed long-term to inorganic selenium via drinking water.

Despite being an essential element in mammals and lower animals at very low doses, selenium is recognized as a teratogen and a growth-inhibiting substance in several animal species. Some inorganic selenium compounds have also been shown to be mutagenic and pro-oxidant: however, very little is known about their effects on human reproduction. Between 1972 and 1988, a few thousand residents in the municipality of Reggio Emilia, northern Italy, were accidentally exposed to drinking water with unusually high levels of inorganic selenium (selenate), range 7-9 microg/l, through a local public water supply system. We found no deleterious effect on overall body weight and length of newborns and stillborns delivered by 18 women previously exposed to high-selenium tapwater. Rates of spontaneous abortions, however, were increased slightly (RR = 1.73; 95% CI = 0.62-4.80), compared with rates among unexposed women from the same municipality. From 1980 through 1988 the prevalence of congenital malformations at birth among the exposed population was similar to that expected, but estimates were imprecise owing to small numbers. Results do not suggest marked effects on human reproduction from chronic exposure to selenate in drinking water at < 10 microg/l.

Abortion, Spontaneous↗

Mammary cancer chemoprevention by inorganic and organic selenium: single agent treatment or in combination with vitamin E and their effects on in vitro immune functions.

The chemopreventive efficacies of selenate, selenite, selenium dioxide, selenomethionine and selenocystine were examined during the promotion phase of carcinogenesis in the 7,12-dimethylbenz[a]anthracene-induced mammary tumor model in rats. Each agent was added to the diet at a final concentration of 3 p.p.m. selenium. In general there was no significant difference in the potency of these five selenium compounds in inhibiting the development of mammary tumors. The interaction of vitamin E (500 p.p.m.) with either selenite or selenomethionine was further characterized in a second carcinogenesis study. Results of this experiment suggested that vitamin E enhanced the protective effect of selenite but not that of selenomethionine. In an attempt to explore the synergistic mechanism of selenium and vitamin E, the effects of these two agents on mitogen-induced blastogenesis and natural killer cytotoxic activity were also investigated. No consistent changes in these in vitro immune functions were detected resulting from supranutritional feeding of either selenite or vitamin E or both. The metabolism of inorganic versus organic selenium was discussed in relation to their role in the control of neoplastic growth as well as to their selective modulation by vitamin E.

9,10-Dimethyl-1,2-benzanthracene↗

Trace elements (copper, zinc, manganese, and selenium) in plasma and erythrocytes in relation to dietary intake during infancy.

All determinations of copper, zinc, manganese, and selenium were performed with a flameless atomic absorption spectrophotometer. Seventy-three full-term infants aged 1 to 52 weeks were divided into three age groups. Each age group contained two subgroups, breast-fed and formula-fed. No statistically significant differences between formula-fed and breast-fed subgroups were found in regard to the levels of copper and zinc in plasma and erythrocytes. At 1 to 5 weeks of age, the manganese concentration of erythrocytes was higher in formula-fed than in breast-fed infants (p less than 0.001). This might be due to the high dietary intake of this element in the formula-fed subgroup. On the other hand, plasma selenium concentrations were significantly higher in breast-fed than in formula-fed infants of all ages (p less than 0.01 at 1 to 5 weeks and p less than 0.05 at 6 to 52 weeks). This suggests that selenium compounds are biologically more available for infant nutrition in breast milk than in formula.

Copper↗

Selenoprotein synthesis in E. coli. Purification and characterisation of the enzyme catalysing selenium activation.

The product of the selD gene from Escherichia coli catalyses the formation of an activated selenium compound which is required for the synthesis of Sec-tRNA (Sec, selenocysteine) from Ser-tRNA and for the formation of the unusual nucleoside 5-methylaminomethyl-2-selenouridine in several tRNA species. selD was overexpressed in a T7 promoter/polymerase system and purified to apparent homogeneity. Purified SELD protein is a monomer of 37 kDa in its native state and catalyses a selenium-dependent ATP-cleavage reaction delivering AMP and releasing the beta-phosphate as orthophosphate. The gamma-phosphate group of ATP was not liberated in a form able to form a complex with molybdate. It was precluded that any putative covalent or non-covalent ligand of SELD not removed during purification participated in the reaction. In a double-labelling experiment employing [75Se]selenite plus dithiothreitol and [gamma-32P]ATP the 75Se and 32P radioactivities co-chromatographed on a poly(ethyleneimine)-cellulose column. No radioactivity originating from ATP eluted in this position when [alpha-32P]ATP or [beta-32P]ATP or [14C]ATP were offered as substrates. The results support the speculation that the product of SELD is a phosphoselenoate with the phosphate moiety derived phosphoselenoate from the gamma-phosphate group of ATP. The alpha,beta cleavage of ATP is also supported by the finding that neither adenosine 5'-[alpha,beta-methylene]triphosphate nor adenosine 5'-[beta,gamma-methylene]triphosphate served as substrates in the reaction.

Adenosine Triphosphate↗

[Selenium as an essential and deficient factor in the nutrition of Russian population].

The paper presents summarized data on the metabolism of selenium and approaches to justifying physiological requirements for this micronutrient. The studies dealing with the levels of selenium in different foodstuffs have indicated that they are lower in the foods made in Russia than in those made in foreign countries, which leads to its insufficient dietary intake in Russia's population, in poor ecological regions in particular. Experimental studies have revealed that organic selenium compounds exert a beneficial effect on the metabolism of priority food pollutants, such as mycotoxins and N-nitrosoamines.

Adolescent↗

Speciation of Cu, Se, Zn and Fe in blood serum of hemodialysed patients.

The speciation of trace elements in serum samples of hemodialysed patients was investigated using on-line connection of SEC and ICP-MS. The 0.02 mol/l TRIS-HCl buffer of pH 7.5 was used as mobile phase. The results of speciation as well as the total concentration data were compared with those of control group of healthy person. Alterations of total concentration were observed in case of selenium and zinc only. Iron was present in form of transferrin and ferritin, main amount of copper was bound to ceruloplasmin and selenium compounds were identified as selenoproteine P and glutathione peroxidase. The latter compound was detected in samples of control group only. The chromatograms of the other elements were similar and no substantial changes between both investigated groups were observed.

Copper↗

Utilization of selenium from different chemical entities for selenoprotein biosynthesis by mammalian cell lines.

Four different cell lines (Hep G2, THP-1, EL 4 6.1, and ECV 304) were grown in a selenium-deficient standard medium (5% fetal calf serum in RPMI 1640 resulting in 5.5 nM selenium of unknown bioavailability) and supplemented with increasing concentration of selenium in the form of sodium selenite, selenomethionine and serum-bound selenium. The activities of two types of glutathione peroxidases (cGPx and PHGPx) were measured to estimate the availability of selenium for selenoprotein synthesis. Only sodium selenite between 1 and 100 nM was found to consistently induce GPx activity in all cell lines, whereas selenomethionine in equal concentrations was practically ineffective. Only THP-1 cells were able to utilize selenium from serum as efficiently as sodium selenite. PHGPx activity similarly responded to selenium supplementation, but was not increased in EL 4 6.1 cells. Our data demonstrate that conventional tissue culture media require selenium supplementation to guarantee adequate selenoprotein biosynthesis in cultured cells. The chemical nature of the selenium compound used for such supplement is as critical for in vitro cultivated cells as for dietary intake.

Animals↗

Induction of caspase-mediated apoptosis and cell-cycle G1 arrest by selenium metabolite methylselenol.

Previous work based on mono-methyl selenium compounds that are putative precursors of methylselenol has strongly implicated this metabolite in the induction of caspase-mediated apoptosis of human prostate carcinoma and leukemia cells and G1 arrest in human vascular endothelial and cancer epithelial cells. To test the hypothesis that methylselenol itself is responsible for exerting these cellular effects, we examined the apoptotic action on DU145 human prostate cancer cells and the G1 arrest effect on the human umbilical vein endothelial cells (HUVECs) of methylselenol generated with seleno-L-methionine as a substrate for L-methionine-alpha-deamino-gamma-mercaptomethane lyase (EC4.4.1.11, also known as methioninase). Exposure of DU145 cells to methylselenol so generated in the sub-micromolar range led to caspase-mediated cleavage of poly(ADP-ribose) polymerase, nucleosomal DNA fragmentation, and morphologic apoptosis and resulted in a profile of biochemical effects similar to that of methylseleninic acid (MSeA) exposure as exemplified by the inhibition of phosphorylation of protein kinase AKT and extracellularly regulated kinases 1/2. In HUVEC, methylselenol exposure recapitulated the G1 arrest action of MSeA in mitogen-stimulated G1 progression during mid-G1 to late G1. This stage specificity was mimicked by inhibitors of phosphatidylinositol 3-kinase. The results support methylselenol as an active selenium metabolite for inducing caspase-mediated apoptosis and cell-cycle G1 arrest. This cell-free methylselenol-generation system is expected to have significant usefulness for studying the biochemical and molecular targeting mechanisms of this critical metabolite and may constitute the basis of a novel therapeutic approach for cancer, using seleno-L-methionine as a prodrug.

Apoptosis↗

Enrichment of selenium in allium vegetables for cancer prevention.

We previously reported that garlic cultivated with selenium fertilization is superior to regular garlic in mammary cancer prevention in the rat 7,12-dimethylbenz[a]anthracene (DMBA) model (Nutr. Cancer, 17, 279-286, 1992). A new crop of high-selenium garlic was harvested in 1992 and was used in a dose-response study to confirm the reproducibility of the product and the bioassay. Supplementation of 1 or 2 p.p.m. Se in the diet from the high-selenium garlic produced a 56% or 75% reduction respectively in the total tumor yield. Since both garlic and onion belong to the same allium family of vegetables, we were also interested in finding out whether our experience with garlic could be similarly applied to onion. A high-selenium onion crop was grown in the same season and location and with the same schedule of selenium fertilization. Two distinct differences were noted with the high-selenium onion regarding its capacity to accumulate selenium and its efficacy in cancer prevention. First, the selenium concentration in onion was considerably lower (28 p.p.m. Se dry wt) as compared to that found in garlic (110-150 p.p.m. Se). Second, given the same levels of selenium supplementation, the high-selenium onion was apparently not as powerful as the high-selenium garlic in mammary cancer inhibition. Thus different plants, even those of the same genus, may respond in their unique way to selenium fertilization and the biological benefits of selenium enrichment may vary depending on the species. Additional information from our study indicated that the high-selenium garlic/onion might provide an ideal system for delivering selenium-substituted analogs in a food form for cancer prevention: (i) they expressed a good range of anticancer activity and could be easily adapted for human consumption on a regular basis; (ii) their ingestion did not result in an excessive accumulation of tissue selenium, a concern that is associated with the standard selenium compounds such as selenite and selenomethionine; (iii) no perturbation in the maintenance of functional selenoenzymes were observed even at high levels of supplementation.

Allium↗

Selenium antagonizes the induction of human heme oxygenase by arsenite and cadmium ions.

Effects of selenium compounds on the induction of heme oxygenase in human cells exposed to sodium arsenite or cadmium chloride have been investigated by an immunoblotting technique. Exposure of HeLa cells to arsenite or cadmium ions caused a marked increase in the synthesis of heme oxygenase, and the presence of sodium selenite suppressed the induction. DL-Selenocystine was an effective suppressor, and sodium selenate was less effective. DL-Selenomethionine had no effect. Northern blot analysis showed that selenite abolished the induction of heme oxygenase mRNA in the cells exposed to arsenite or cadmium ions. These results indicated that selenium antagonizes the induction of heme oxygenase by heavy metals ions.

Arsenic↗

Activity of triphenylselenonium chloride in mammary cancer prevention.

The present study was designed to evaluate the tolerance and cancer chemopreventive activity of triphenylselenonium chloride in female Sprague-Dawley rats. No information is available in the literature on the anticarcinogenic efficacy of a lipophilic cationic selenium compound as exemplified by the triphenylselenonium ion. A short-term preliminary study indicated that it was well tolerated via the dietary route. Supplementation at levels up to 200 p.p.m. Se did not produce any apparent adverse effect in the animals. In the dimethylbenzanthracene mammary cancer model, a level of 30 p.p.m. Se in the diet reduced the total tumor yield by approximately 70% when treatment was applied during either the initiation phase or the post-initiation phase. In the MNU mammary cancer model, the inhibitory response was expressed only during the post-initiation phase. These findings suggest that the triphenylselenonium ion may have multiple modes of action in suppressing the development of neoplasia. Tissue analysis confirmed that there was minimal accumulation of total selenium until the level of supplementation reached 100 p.p.m. Se or above. Our study therefore convincingly demonstrates that triphenylselenonium chloride fits the criteria of an effective and desirable anticancer agent with a distinct separation between the chemopreventive dose range and the toxic dose range.

9,10-Dimethyl-1,2-benzanthracene↗

Characterization of selenocysteine lyase in human tissues and its relationship to tissue selenium concentrations.

The characterization of human selenocysteine lyase, an enzyme that specifically catalyzes the decomposition of L-selenocysteine to L-alanine and hydrogen selenide, is described. The enzyme is the first described that acts exclusively on a selenium compound. The enzyme from human tissues, analogous to that from pig tissues and bacteria, requires pyridoxal 5-phosphate as a cofactor. L-selenocysteine is the sole substrate with a Km = 0.50 mM. L-cysteine is a noncompetitive inhibitor of the enzyme with a Ki = 5.85 mM. The following amino acids and purines are inert: L-cysteine, selenocystamine, seleno-DL-methionine, 6-selenopurine, and 6-selenoguanosine. The enzyme was found in liver, kidney, heart, adrenal and muscle in decreasing order of specific activity. The enzyme activity in liver was found not to be related to tissue selenium concentration or glutathione peroxidase activity.

Glutathione Peroxidase↗