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Development of reflexes in neonatal mice prenatally exposed to methylmercury and selenite.

The development of reflexes in neonates exposed prenatally to methylmercury and selenite was investigated. Pregnant mice were assigned to one of 4 treatments; methylmercury (MeHg), selenite(Se), combination of 2 compounds (MeHg X Se) and saline control (NaCl). Mice were injected subcutaneously (s.c.) on day 9 of gestation. The dose of each compound was 30 mumol/kg. Mercury (Hg) concentrations in the neonatal brain and liver of the MeHg X Se group were slightly lower than in the MeHg group. The results of behavioral examination revealed that the MeHg X Se group showed significantly improved development compared with the MeHg group. These facts suggest the possibility that selenium compounds have protective effects against methylmercury neurotoxicity in fetuses and neonates.

Animals↗

Selenium and sulfur in antioxidant protective systems: relationships with vitamin E and malaria.

The metabolic relationships among the antioxidant nutrients selenium, sulfur, and vitamin E are particularly close. Selenium and vitamin E have long been known to spare one another in certain nutritional diseases of animals, and selenium has been considered to have a key antioxidant defense function as a component of glutathione peroxidase. However, the antioxidant role of glutathione peroxidase has been questioned and new proteins containing selenium have been identified: phospholipid hydroperoxide glutathione peroxidase, selenoprotein P, and iodothyronine deiodinase. Glutathione peroxidase activity independent of selenium resides in the glutathione S-transferases. Glutathione participates in both enzymatic and nonenzymatic antioxidant defense systems. Some low-molecular weight selenium compounds (e.g., ebselen) exhibit glutathione peroxidase-like action. Certain low molecular weight thiols decompose peroxides nonenzymatically (e.g., the ovothiols). Murine malaria appears to be a useful experimental model for investigating interrelationships of selenium and vitamin E. Vitamin E deficiency protects against the parasite, especially when the mice are concurrently fed peroxidizable fat such as fish or linseed oils. Selenium deficiency, on the other hand, has little or no protective effect against the parasite. Any practical utility of pro-oxidant diets in combating human malaria remains to be determined.

Antioxidants↗

The epidemiology of selenium and human cancer.

The relation between the trace element selenium and the etiology of cancer in humans remains elusive and intriguing, despite the number of epidemiologic studies published on the topic. We address some methodologic issues, such as misclassification of exposure, particularly to single selenium compounds, effect modification, confounding, and other sources of bias, which may explain the inconsistencies in the literature. We also review the results of cohort studies, which have yielded either inverse or null or direct associations between selenium exposure and subsequent cancer risk. To date, no beneficial effect on cancer incidence at major sites, including prostate cancer, has emerged from the Finnish program begun in 1984 to increase the average selenium intake in its population. Populations exposed to unusually high or low levels of environmental selenium might offer unique opportunities to investigate if selenium exposure is related to the etiology of human cancer.

Anticarcinogenic Agents↗

Influence of sodium selenite and selenomethionine on DNA/RNA synthesis and BaP binding to spleen lymphocytes in culture.

In the present study, an attempt was made to provide some information regarding the effects of organic and inorganic selenium compounds on DNA/RNA synthesis and benzo(a)pyrene uptake in cultured lymphocytes from mice spleen. It was clear from the results that there was a significant inhibition of DNA/RNA synthesis with increasing concentration of either form of selenium from 0.1 microM to 1 mM in culture medium. However, when used at the same level as selenite with respect to selenium content, selenomethionine exerted more DNA/RNA synthesis inhibitory effect than selenite. Benzo(a)pyrene uptake by proliferating lymphocytes was also significantly reduced with increasing selenium concentration (0.1 microM to 1 mM). However, both forms of selenium at the same selenium concentration showed almost the same inhibitory effect on the cellular uptake of benzo(a)pyrene, which indicated that some factor(s) other than the DNA synthesis are also involved in the interaction between benzo(a)pyrene and cells. Involvement of the changes in the carcinogen metabolism and glutathione level has been discussed. Present studies show that organic selenium as a source of selenium is a more potent chemopreventive compared to the inorganic one. This information may have a useful therapeutic potential.

Animals↗

Selenium biochemistry and cancer: a review of the literature.

In recent years, the role of selenium in the prevention of a number of degenerative conditions including cancer, inflammatory diseases, thyroid function, cardiovascular disease, neurological diseases, aging, infertility, and infections, has been established by laboratory experiments, clinical trials, and epidemiological data. Most of the effects in these conditions are related to the function of selenium in antioxidant enzyme systems. Replenishing selenium in deficiency conditions appears to have immune-stimulating effects, particularly in patients undergoing chemotherapy. However, increasing the levels of selenoprotein antioxidant enzymes (glutathione peroxidase, thioredoxin reductase, etc.) appears to be only one of many ways in which selenium-based metabolites contribute to normal cellular growth and function. Animal data, epidemiological data, and intervention trials have shown a clear role for selenium compounds in both prevention of specific cancers and antitumorigenic effects in post-initiation phases of cancer.

Animals↗

Application of nuclear analytical methods in the investigation and identification of new selenoproteins.

Nuclear methods have been applied in the investigation of selenium-containing proteins in rat tissues. Selenium was determined in tissues, cells, and cellular compartments by instrumental neutron activation analysis via 77mSe or 75Se. For tracer studies, the selenium compounds were labeled in vivo by administering 75Se with a high specific activity to rats. Quantitative determination of very small amounts of the element in protein fractions was achieved by measurement of the tracer after replenishment of selenium-depleted animals with the labeled element. The application of the nuclear methods in the detection, characterization, and identification of new selenium-containing proteins is shown with the help of some examples.

Animals↗

Selenium inhibition of chemical carcinogenesis in the upper aerodigestive tract of hamsters.

Evidence suggests that ingestion of selenium compounds may inhibit carcinogenesis. We studied this in hamsters in which squamous cell carcinoma of the tongue was induced with 0.5% dimethylbenzanthracene (DMBA). Forty-five hamsters, divided into three groups of 15 each, were fed a low-selenium diet and the left lateral border of the tongue was painted with DMBA three times a week. Control animals were given deionized water, while water for animals in groups 1 and 2 contained 3 and 6 ppm selenium, respectively. All sufficiently long-lived animals developed leukoplakia of the tongue and floor of the mouth that progressed to dysplasia and papillary or ulcerative carcinoma. Carcinomas were seen less frequently on the palate and in the pyriform sinuses. Carcinoma metastasized to neck lymph nodes in two hamsters. Data indicate a 2-week delay in leukoplakia incidence for the selenium groups; a higher survival rate was also noted, although this was not statistically significant. We conclude that this model is similar to tobacco-induced squamous cell carcinoma of the upper aerodigestive tract in humans and that ingestion of supplemental selenium produces a modest inhibitory effect on leukoplakia.

9,10-Dimethyl-1,2-benzanthracene↗

Assessment of requirements for selenium and adequacy of selenium status: a review.

OBJECTIVE: The intent of this review is to evaluate the scientific evidence for the assessment of adequacy of selenium status and of the requirements for selenium. From this evidence, attempts have been made to define levels of plasma selenium and dietary selenium intake, which could be used for the assessment of deficiency or adequacy of selenium status. METHOD: The first section briefly reviews the methods for assessment of selenium status. The second section outlines the requirements for selenium based on a number of criteria, and how these have been translated into recommended intakes of selenium. In the final section, levels of plasma selenium and dietary intake based on different criteria of adequacy have been proposed. RESULTS AND CONCLUSION: The minimum requirement for selenium is that which prevents the deficiency disease, Keshan disease. The recommended intakes of selenium have been calculated from the requirement for optimum plasma glutathione peroxidase (GPx) activity that must, because of the hierarchy of selenoproteins, also take account of the amounts needed for normal levels of other biologically necessary selenium compounds. Whether optimal health depends upon maximization of GPx or other selenoproteins, however, has yet to be resolved, and the consequences of less-than-maximal GPx activities or mRNA levels need investigation. Intakes, higher than recommended intakes, and plasma selenium concentrations that might be protective for cancer or result in other additional health benefits have been proposed. There is an urgent need for more large-scale trials to assess any such beneficial effects and to provide further data on which to base more reliable estimates for intakes and plasma selenium levels that are protective.

Glutathione Peroxidase↗

Exposure of man to environmental selenium - an exposure commitment assessment.

Selenium is an element which occurs naturally in varying concentrations in soil and is released from industrial sources, particularly from fossil fuel combustion. Harmful effects in animals and man may result from both deficient or excessive amounts of intake. Representative values of selenium concentrations in the background environment and in man are selected from available data and a pathway analysis is performed utilizing the exposure commitment method. Dietary intake of selenium is of the order of 70 micrograms d-1. With fractional absorption of 80% and retention in the body of 90% for an effective retention time of 140 days, the estimated mean body content of selenium is 7 mg. The contribution to the body burden from inhalation intake is much less significant. The exposure evaluation is performed for total selenium in the environment and in man. The parameters may be adjusted for specific selenium compounds, if data are available, and for more particular environmental and exposure conditions as required.

Absorption↗

Biochemical and morphological characteristics of selenite-induced apoptosis in human hepatoma Hep G2 cells.

Selenium is a cellular growth inhibitor in many mammary tumor cells. To comprehend the mechanism for the selenium-induced cell death, we examined the effects of sodium selenite, which has been one of the most extensively investigated selenium compounds, in human hepatoma Hep G2 cells.Cell viability gradually decreased after treatment with sodium selenite within the concentration range of 10-50 microM. Low (10 mM) selenite has shown a high-percentage laddering pattern compared to the high (25 microM) cytotoxic selenium concentration in agarose gel electrophoresis. G2/M-phase enrichment was also concentration dependent. The most consistent transmission electron microscopic finding was the existence of large lysosomes. Based on these data, we hypothesize that sodium selenite predominantly shows its apoptotic effect over hydrogen selenite accumulation.

Apoptosis↗

Diphenyl diselenide protects rat hippocampal slices submitted to oxygen-glucose deprivation and diminishes inducible nitric oxide synthase immunocontent.

Diphenyl diselenide (PhSe)2 is an organic selenium compound that has been little studied. In this study we investigated the effects of (PhSe)2 (0.1-3 microM) in a classical model of in vitro brain ischemia, which consists of exposing rat hippocampal slices to oxygen-glucose deprivation (OGD). Hippocampal slices were exposed for 60 min to OGD and the cellular viability (performed by MTT assay) as well as the immunocontent of nitric oxide synthase inducible (iNOS) were evaluated after 180 min of a recovery period. OGD decreased cellular viability by 50% and increased more than twice the immunocontent of iNOS of hippocampal slices. (PhSe)2 (1 and 3 microM) added during OGD and the recovery period abolished both effects. These results demonstrate for the first time the neuroprotective effects of (PhSe)2. Although the selenium analog--ebselen--has been widely used in ischemia models, our results suggest that other selenoorganic compounds could be investigated as pharmacological tools against brain disorders.

Animals↗

Effect of selenium in combination with Adriamycin or Taxol on several different cancer cells.

The anti-neoplastic properties of an Selenium compound were studied in vitro on several tumor cell lines: Breast (MCF-7, MCF-10, SKBR-3, BCAP37), Lung (RH2), Prostate (LNCap and PC-3), Colon (T84, Caco-2), Small Intestine (HCF8), and Liver (HepG2). We also examined additive or synergistic effect of Selenium in combination with standard anti-cancer drugs, Adriamycin (Doxorubicin) and Taxol. The effect of Selenium was assessed by apoptosis; DNA synthesis; growth rate by MTT assay; uptake of amino acid MeAIB by System A; and morphological changes. Our results demonstrate that MCF-7 and SKBR-3 showed increase in apoptosis as measured by DNA fragmentation and increase in "rounded" cells and membrane "blebbing", decrease in MeAIB uptake, and decrease in DNA synthesis. These changes were Selenium dose dependent with optimal inhibition at Selenium concentration between 4 and 40 ng/ml after 72 hrs of treatment. Similar observations were made with RH2, HCF8, Caco-2, and HepG2 cells. In contrast, LNCap, PC-3, and T-84 were not significantly affected by Selenium. However, addition of Adriamycin or Taxol in combination with Selenium caused small but significant inhibition of prostate cancer cells LNCap and PC-3. Addition of chemotherapeutic agents either Taxol or Doxorubicin with Selenium caused further inhibition of MCF-7, SKBR-3, RH2, HCF8, and HepG2 cells. In conclusion, Selenium has a significant anti-neoplastic effect on breast, lung, liver, and small intestinal tumor cells. Supplementation of Selenium enhanced chemotherapeutic effect of Taxol and Doxorubicin in these cells beyond that seen with the chemotherapeutic drugs used alone. These in vitro studies on several cancer cell lines suggest a potential benefit of Selenium-enhancement of anticancer effects other systems, and therefore offer further relevance to clinical trials efforts.

Amino Acids↗

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↗

Damage of zinc fingers in DNA repair proteins, a novel molecular mechanism in carcinogenesis.

Zinc finger motifs participate in protein-nucleic acid and protein-protein interactions in many groups of proteins, including those involved in DNA repair. The Zn(II) ion, bonded tetrahedrally to cysteine thiolates and/or histidine imidazole groups, maintains the three-dimensional structure, crucial for the function of the domain. Zinc fingers can thus be compromised by a substitution of Zn(II) with another metal ion or by a release of Zn(II), due to the oxidation of thiolate donors. The latter may result from an action of redox-active metals or other oxidative agents. Studies in cell cultures and ex vivo demonstrated that soluble compounds of definite carcinogenic metals and metalloids, such as arsenic, cadmium and nickel, and putative carcinogens, including cobalt and lead, inhibit zinc finger containing DNA repair proteins. Further experiments demonstrated that these metals, as well as endogeneous oxidative substances, including hydrogen peroxide, nitrosoglutathione, and reducible selenium compounds damage or distort zinc finger domains. This reactivity can therefore be regarded as a novel molecular mechanism in carcinogenesis.

Animals↗

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↗

Selenium's effects on MMP-2 and TIMP-1 secretion by human trabecular meshwork cells.

PURPOSE: Because of the observed increase in incidence of glaucoma among some individuals taking selenium as a dietary supplement, the present study was undertaken to investigate mechanisms of selenium-induced changes in homeostasis of human trabecular meshwork (HTM) cells. Specifically, the impact of selenium on matrix metalloproteinases (MMPs), their inhibitors (tissue inhibitors of metalloproteinases; TIMPs), and the second messengers that regulate MMP expression was investigated in an HTM cell culture model. METHODS: HTM cell cultures were treated with an organic selenium compound (methyl seleninic acid), and changes in secretion and activity of MMPs and TIMPs were analyzed by Western blot and zymography. Changes in extracellular-signal-related kinases 1 and 2 (ERK1/2) and phospho-ERK1/2 levels were monitored by Western blot analysis of whole-cell lysates prepared from selenium-treated cells. Photographs of cultures over time were used to document selenium-induced changes in cell morphology. RESULTS: Treatment of HTM cells with selenium for 24 hours at doses ranging from 1 to 10 micro M caused a dose-dependent decrease in the secretion of MMP-2 and TIMP-1. Treatment for 6 hours revealed a significant decrease in MMP-2 and TIMP-1 at the highest dose. MMP-1, -3, and -9 and TIMP-2 were either not detected or their secretion was not consistently influenced by selenium treatment. Selenium treatment caused a significant decrease in ERK1/2 phosphorylation, but no change in overall ERK protein levels. Selenium treatment resulted in dose-dependent, reversible changes in HTM cell-matrix associations. CONCLUSIONS: Selenium-induced changes in MMP-2/TIMP-1 secretion may alter the balance of extracellular matrix turnover in the conventional outflow pathway and cause an increase in intraocular pressure that eventually leads to glaucoma.

Blotting, Western↗