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Results for “Cadmium Poisoning”

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Effects of vitamin E on renal dysfunction in chronic cadmium-poisoned rats.

Cadmium is a highly toxic metal that can be ingested or inhaled from a variety of industrial and dietary sources. The purpose of this study was to investigate the effects of vitamin E on renal dysfunction and blood pressure changes in chronic cadmium-poisoned rats. Sprague-Dawley rats weighing 100 +/- 10 g were randomly assigned to one control group and three cadmium-poisoned groups. Cadmium groups were assigned to dietary groups according to levels of vitamin E supplementation: vitamin E-free diet (Cd-0E group), 40 mg of vitamin E/kg of diet (Cd-40E group), and 400 mg of vitamin E/kg of diet (Cd-400E group). The animals were raised for 20 weeks, and cadmium was supplied in the drinking water at 50 ppm Cd(2+). The morphological changes observed by both light and electron microscopy revealed mitochondria and tubule epithelial cell edema in the Cd-0E group, yet this was alleviated with the highest level of vitamin E supplementation (Cd-400E group). The urinary beta(2)-microglobulin levels indicated that glomerular injury was higher in the Cd-poisoned groups than in the control group, but were lowered by vitamin E supplementation. Although the glomerular filtration rate (GFR) of the Cd-0E group was significantly lower than that of the control group, the vitamin E-supplemented groups exhibited a similar GFR to the control group, suggesting that vitamin E protected the kidney from functional damage. Angiotensin converting enzyme activity, and blood pressure, and heart rate were all significantly higher in the Cd-poisoned group, but each remained nearly normal with vitamin E supplementation. Accordingly, these results indicate that vitamin E supplementation in chronic cadmium-poisoned rats normalized renal dysfunction and blood pressure regulation.

Animals↗

Chronic cadmium poisoning.

Chronic cadmium poisoning occurs after prolonged exposure to the dust or fumes of cadmium-containing compounds. This paper describes the case of a pigment worker exposed to cadmium carbonate dust who exhibited many of the characteristic features of chronic cadmium poisoning.

Cadmium Poisoning↗

Cadmium poisoning.

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Cadmium Poisoning↗

Ultrastructural studies on organs of cadmium-poisoned rats treated with oxygen-ozone mixture.

Rats poisoned with cadmium acetate during 12 weeks, at a dose of 50 mg/dm3 given in drinking water, were treated with oxygen-ozone mixture as intraperitoneal injection during the last 10 days of the experiment, at a daily dose of 1 cm3 and ozone concentration 40 micrograms/cm3. The mixture was made of medical oxygen with a Bioozon U type apparatus produced by B. Prochazka GmbH, Germany, Reutlingen. Control groups included animals treated with the above mixture with no cadmium, and rats poisoned with cadmium, with no oxygen-ozone treatment. Liver and cardiac muscle were examined in TEM Philips EM 301. Morphological traits of a protective of the mixture against cadmium-poisoning were observed in both those organs. This was expressed as weaker destructive changes within the endoplasmic reticulum, basal cytoplasm and lysosome of the hepatocytes, and additionally as a stabilization of contractile apparatus fibres in the heart myocytes.

Administration, Oral↗

A mechanism of cadmium poisoning: the cross effect of calcium and cadmium in the calmodulin-dependent system.

The effects of the intraventricular (IVT) administration of cadmium on the amount of dopamine (DA) in various regions of the mice brain were analyzed immunohistochemically using a microphotometry system. DA levels in the neostriatum and nucleus accumbens were increased by approximately 30% (p less than 0.01) by the IVT administration of CdCl2 (1 mumol/kg). This effect was abolished by the calmodulin antagonist, W-7 (4.2 micrograms/mouse, IVT). The effects of cadmium on DA levels in the brain were very similar to those seen with calcium. Combining these results with our previous finding that calmodulin does not have the ability to distinguish between calcium and cadmium, a mechanism of cadmium poisoning is suggested in which cadmium activates catecholamine synthesizing enzyme and numerous other enzymes through calmodulin-dependent systems, thereby disturbing many functions in the organism.

Animals↗

Low dose cadmium poisoning results in sustained ERK phosphorylation and caspase activation.

Cadmium poisoning has been known to result in a wide variety of cellular responses, including oxidative stress and kinase activation. It has been reported that ERK is activated following acute cadmium exposure, and this response is commonly seen as a classical ERK survival mechanism. Here, we analyzed different cell types for their responses to low concentrations of cadmium poisoning. We found that there is an association between cell susceptibility to cadmium toxicity and ERK activation. This activation is atypical, since it consists of a sustained ERK phosphorylation, that lasts up to 6 days post stimulation. This activation is associated with the appearance of cleaved caspases 8 and 3, processed PARP, and irreversible damage. Pharmacological inhibition of ERK phosphorylation results in the ability of cells to resist cadmium poisoning. Our data indicate that low cadmium concentrations result in an unconventional ERK sustained phosphorylation, which in turn leads to death signaling.

Animals↗

Partial characterization of molecular species of retinol-binding protein found in tubular proteinuria due to chronic cadmium poisoning in the rabbit.

A study was conducted to characterize the molecular species of retinol-binding protein (RBP) isolated from the urine of rabbits chronically poisoned with cadmium. The RBP species, identical with regard to both molecular size (approximately 20,000) and immunoreactivity, were separated into four fractions by means of polyacrylamide gel electrophoresis (PAGE), which yielded two holo-RBP (H2 and H1) and two apo-RBP (A2 and A1) species. The urinary excretion ratio of these fractions (H2 : H1 : A2 : A1) was found to be about 70 : 6 : 21 : 3. No distinct difference of amino acid composition between holo- and apo-RBP was observed. An additional species of apo-RBP (designated An) was also isolated from theaged holo-RBP (H2) by isoelectric focusing in gel. Using the separated molecular species of rabbit RBP as well as of human RBP, their interactions with human prealbumin (PA) were examined both by human PA-Sepharose affinity chromatography, and by gel filtration on Sephadex G-100 after in vitro incubation of the RBP with human PA. Purified rabbit holo-RBP exhibited almost the same binding ability to human PA as did human RBP. Retinol within RBP molecule enhanced the affinity to PA, resumably through the change of tertiary structure, although the presence of retinol was not essential for the protein-protein interaction.

Amino Acids↗

[Changes in trace elements contents of renal cells in cadmium poisoning].

OBJECTIVE: To understand the possible role of trace elements in renal damage caused by cadmium poisoning and its mechanism. METHODS: An experimental animal model with renal damage caused by cadmium poisoning was prepared, and trace elements contents in subcellular components in renal cells, lipid peroxidation reaction, renal function and its ultrastructural changes were determined. RESULTS: Uptake of cadmium could cause transfer of copper, zinc and manganese mainly distributed in the mitochondrion to cell nuclei and cytoplasm, and content of selenium and activity of glutathione-peroxidase (GSH-px) in cytosol declined and content of propandiolal increased. CONCLUSION: It suggests that changes in trace elements contents, especially in selenium content, during renal damage caused by cadmium poisoning, could correlate with the increase of lipid peroxidation, and abnormal subcellular distribution of trace elements was one of the important roles in renal damage caused by cadmium poisoning.

Animals↗

Effect of green tea catechin on arachidonic acid cascade in chronic cadmium-poisoned rats.

The purpose of this study was to investigate the effect of green tea catechin on the cyclooxygenase and lipoxygenase pathways in chronic cadmium-poisoned rats. Sprague-Dawley male rats weighing 100 +/- 10 g were randomly assigned to one normal and three cadmium-poisoned groups. The cadmium groups were classified as catechin-free diet group (Cd-0C), 0.25% catechin diet group (Cd-0.25C) and 0.5% catechin diet group (Cd-0.5C), in accordance with the level of catechin supplement. The phospholipase A2 activity was remarkably increased 117% in the Cd-0C group and 60% in the Cd-0.25C group compared with the normal group, and the level in the Cd-0.5C group was the same as the normal group. Activity of platelet cyclooxygenase increased 284% in the Cd-0C group, 147% in the Cd-0.25C group and 193% in the Cd-0.5C group. The synthesis of platelet thromboxane A2 (TXA2) increased 157% in the Cd-0C group and 105% in the Cd-0.25C group, compared with the normal group. The Cd-0.5C group showed the same level as the normal group. Prostacyclin (PGI2) formation in the aorta decreased 24% in the Cd-0C group and 18% in the Cd-0.25C group. The ratio of PGI2/TXA2, the thrombocyte synthesis index, decreased 70% in the Cd-0C group and 59% in the Cd-0.25C group. The activity of 5'-lipoxygenase in the polymorphonuclear leukocyte was increased 40% in the Cd-0C group as compared with the normal group. Catechin-supplemented Cd-0.25C and Cd-0.5C groups showed the level of the normal group. In this study, the observed content of leukotriene B4, which induces the inflammatory process, increased 54% in the Cd-0C group, and in catechin-supplemented groups, showed the same level as in the normal group. The serum peroxide value increased 60% in the Cd-0C group compared with the normal group; but in the Cd-0.5C group, it showed the level of the normal group. These results indicate that chronic cadmium poisoning in rats accelerates arachidonic acid metabolism. Inhibition of arachidonic acid metabolism due to catechin supplementation, however, decreases platelet aggregation and inflammatory action. In conclusion, it would appear that green tea catechin supplementation in chronic cadmium-poisoned rats inhibits the arachidonic acid cascade by regulating the activity of phospholipase A2.

Animals↗