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[Disturbances in the status of trace elements in cattle from the point of view of herd supervision. 2: New trace elements].

In this bipartite article the current knowledge about trace elements in cattle is reviewed. The second part contains the new trace elements. This group includes the essential elements arsenic, lead, nickel, vanadium, tin, silicon and the accidental elements. Of the last aluminum, boron, cadmium, mercury and thallium have an importance for cattle due to their toxic potential and the risk of contamination of the food originating from the animal.

Aluminum↗

[Changes in trace-element concentrations after intravenous injection of an essential trace-element preparation for parenteral use in rats].

This experiment was carried out to investigate the effects of intravenous injection of an essential trace-element preparation (TE-5) on iron, zinc, copper and manganese concentrations, and blood biochemical and hematological parameters in rats. The rats were treated by intravenous injection of TE-5 for 7 days and the following results were obtained: 1) Neither a 0.04 nor a 0.4 ml/kg/day injection of TE-5 affected the iron, zinc, copper and manganese concentrations in tissues. 2) At a higher dose (1.2 ml/kg/day), iron concentrations in liver and spleen, zinc concentrations in liver, kidney, tibia and plasma, copper concentrations in heart, kidney and whole blood, and manganese concentrations in brain, heart, spleen, kidney, femoral muscle, tibia and whole blood increased. 3) At the highest does (4 ml/kg/day), all rats died and iron, zinc, copper and manganese concentrations in tissues increased remarkably. 4) With injections of TE-5 (0.04-1.2 ml/kg/day), hemoglobin, hematocrit, alkaline phosphatase activity and blood urea nitrogen decreased slightly. These results suggest that iron, zinc, copper and manganese concentrations, and blood biochemical and hematological parameters are maintained at doses up to 0.4 ml/kg/day of TE-5, but that doses higher than that destroy homeostasis.

Animals↗

Trace element reference values in tissues from inhabitants of the European Community. III. The control of preanalytical factors in the biomonitoring of trace elements in biological fluids.

In the context of a programme concerning the determination of trace elements in body fluids and tissues to establish trace element reference values, research has been undertaken on the control of preanalytical factors in order to develop sufficiently accurate and precise guidelines to be applied in routine work by using techniques such as graphite furnace atomic absorption spectroscopy (GFAAS). Aspects investigated are related to the risk of contamination during blood collection and the use of anticoagulants; the risk of losses during storage and freeze-drying as well as the possible risk of contamination arising from trace elements in airborne particulates of the laboratory environment. For the analysis of Al, Ba, Cd, Co, Cr, Mn, Mo, Ni, Sb, W, V and Zn in blood, Teflon cannula is the method of choice. The anticoagulants do not introduce disturbing contaminations of Rb, Se, Zn, while contaminations were observed for Co, Cr, Mn. Radiotracers in 'metabolized form' (radiolabelled rat or rabbit tissues from animals administered with radioisotopes) show that samples stored for 1 month at -20 degrees C have no significant trace metal losses. Strict ambient air quality standard has to be respected (continuous monitoring) due to the possibility of element contaminations inside the laboratory. The use of matrix modifiers could represent a toxicological risk to the operators. Critical factors should be considered ('metal sheets') for each element in each matrix. For instance 27 factors for Cr in serum have been suggested.

Air Pollutants, Occupational↗

Trace element reference values in tissues from inhabitants of the European Community. II. Examples of strategy adopted and trace element analysis of blood, lymph nodes and cerebrospinal fluid of Italian subjects.

The EURO TERVIHT (Trace Element Reference Values in Human Tissues), recently initiated, aims to establish and compare trace metal reference values in inhabitants from the different EC countries. The project anticipates international cooperation of specialized chemical and toxicological laboratories in Western Europe. In order to overcome the well known and intolerable high fluctuation in published trace metal concentrations in body fluids and tissues, which are mostly due to poor analysis, this paper gives recommendations and strategies for approaching 'background' values measurement practised in the EURO TERVIHT. The focus of the paper is more on quality rather than on quantity of data with particular aspects: (i) well-described protocol for the selection/composition of reference groups (extended epidemiological data plus clinical status); (ii) numerous pre-analytical factors, among which are of paramount importance are ultraclean laboratory air, container material, storage conditions at -20 degrees C; (iii) statistical treatment of the data and the expression of the analytical results (use of refined statistical analysis such as the Lilliefors test to define the type of distribution, normal or log-normal). Results reported here concern the determination of trace elements in whole blood of more than 350 Italian subjects which allowed the proposal of 'reference values' for 12 elements. In lymph nodes and cerebrospinal (CSF) the degree of information acquired is only sufficient to suggest 'indicative' of 'informative' values.

Computers↗

[Behavior of trace elements copper, zinc and manganese in bovine rumen. 2. Passage rate and course of trace element concentration in rumen as influenced by copper sulfate administration].

In experiments on the distribution of copper, zinc and manganese in fractions of rumen liquor (Wetzel and Menke, 1977 (1)) changes in PEG and in trace element concentration during day-time (between 8 a.m. and 6 p.m.) were measured at 2-hour intervals. Rumen volume was 61 l and passage rate 108 and 128 l/day in the two animals used. Average daily passage was calculated to be 40 mg copper, 98 mg zinc and 371 mg manganese. These values were found to be 11% higher than copper intake and 44 and 68% lower than zinc and manganese intakes, respectively. The differences indicate a remarkable endogenous secretion of copper, and a high absorption of zinc and manganese within the rumen. Concentration (mcg/g dry matter) of copper, zinc and manganese in the bacterial fraction and in total rumen liquor decreased slowly in the first hours after feeding, reaching a minimum after 4 to 6 hours and showed a slight increase thereafter. After addition of copper sulphate the curves mostly became linear. The conclusion is drawn that 1.8 ppm copper in inorganic binding does not lead to changes in trace element concentration to an extent that might be harmful to bacterial fermentation.

Animals↗

[Supplementation of essential trace elements during total parenteral nutrition--effects on trace element-deficient rats].

Thirty-one male SD rats, six weeks old, were fed a trace element-deficient diet for two weeks and then divided into three groups and maintained for 1 week as follows: group A with total parenteral nutrition (TPN) without supplementation of trace elements, group B with TPN supplemented with the following 5 trace elements ... iron, zinc, copper, manganese and iodine, and group C with a diet free of the above five trace elements. Another group of eight rats was fed a diet supplemented with the above five trace elements for three weeks as a control (group D). Feeding or TPN without supplementation of trace elements evoked microcytic hypochromic anemia and significant decreases in iron concentrations in plasma and tissues (groups A and C). Supplementation of trace elements in the TPN solution showed a tendency to cure anemia and a significant increase in the iron concentration in tibia (group B). Decreases in the zinc or copper concentrations in plasma and tissues during TPN without trace elements were prevented by supplementation of trace elements in the TPN solution (group B). The plasma zinc and copper concentrations correlated well with their levels in liver, kidney and tibia. Manganese deficiency was not recognized in this investigation (groups A and C), though supplementation of trace elements in the TPN solution increased tissue manganese concentration (group B). Feeding or TPN without supplementation of trace elements induced decreases in plasma triiodothyronine and thyroxine (groups A and C). Supplementation of trace elements in the TPN solution showed a tendency to increase plasma thyroxine (group B).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Genetically epilepsy-prone rats are characterized by altered tissue trace element concentrations.

Since trace element abnormalities have been found in the human epileptic population, trace element concentrations were determined in blood and tissues of genetically epilepsy-prone rats both exposed to an unexposed to seizure-inducing stimuli and in genetically related epilepsy-resistant rats. Half of the epilepsy-prone group were exposed to seizure-inducing sound twice daily for 3 weeks. Food intake and weight gain were monitored for each animal. Genetically epilepsy prone rats with induced seizures consumed significantly less food and gained less weight than did the epilepsy resistant group. Seizure prone rats without seizures consumed the same amount of food as the resistant rats but gained less weight than the resistant strain but more than the seizure-induced animals. Epilepsy-prone animals had significantly altered trace element concentrations in tissues as compared with the resistant animals independent of seizure induction. Brain and liver iron, liver copper, and brain and heart manganese levels were all significantly lower in the seizure-prone rats as compared with the seizure-resistant rats. In the seizure-prone rats, induction of seizures resulted in an increase in brain and heart zinc levels and a decrease in whole blood manganese levels. These results demonstrate that both genetic factors relevant to susceptibility to seizures and the seizures themselves are associated with changes in trace element concentrations.

Acoustic Stimulation↗

[Is there a correlation between severity of trauma and serum trace element levels?].

OBJECTIVES: Trace elements zinc and copper are effective in wound and fracture healing. In this prospective study, correlations between mangled extremity severity score (MESS) and mangled extremity syndrome index (MESI) and serum zinc and copper levels were investigated in trauma patients. METHODS: Seventeen trauma patients (11 females, 6 males; mean age 41.6 years; range 11 to 73 years) were evaluated with respect to MESS and MESI scores. On the seventh day of trauma, serum samples were obtained to determine zinc and copper levels by atomic absorption spectrophotometry. RESULTS: Serum levels of zinc and copper showed significant negative correlations with both MESS (r=-0.65 and r=-0.76, respectively) and MESI (r=-0.83 and r=-0.77, respectively) scores (p<0.05). CONCLUSION: The severity of trauma is associated with significant decreases in serum levels of trace elements. Thus, trace element supplementation may be an important aspect of treatment in trauma patients.

Adolescent↗

Validation of inductively coupled plasma atomic emission spectrometry technique (ICP-AES) for multi-element analysis of trace elements in human serum.

The use of inductively coupled plasma atomic emission spectrometry (ICP-AES) for the simultaneous determination of Al, B, Ba, Be, Cd, Co, Cr, Cu, Fe, Li, Mn, Ni, Pb, Se, Sr and Zn in human serum in a clinical laboratory was validated. Samples were digested and then analysed using yttrium as an internal standard and a serum-matched calibration standard. The criteria used to assess the analytical performance of the ICP-AES were detection and quantification limits, linearity, sensitivity, recovery, interference from alkali and acid, trueness and precision. Detection limits were 0.002-0.003 micromol/L for Mn, Sr, Ba, and Cd; 0.014-0.07 micromol/L for Co, Zn, Fe, Be, Li, Pb, Cu, Ni, and Cr; and 0.2-0.9 micromol/L for B, Se, and Al. Trueness, as controlled by analysis of bovine serum certified reference material, was acceptable for Co, Cu, Se and Zn, while Fe was 5.1% and Mn 6.2% below the lowest limit of the certified material interval. We conclude that ICP-AES can be used for multi-element analysis of B, Ba, Cu, Fe, Li, Se, Sr and Zn in serum. Serum levels of Al, Be and Co were below the detection limits while serum levels of Cd, Cr, Ni and Pb were below the quantification limits of the ICP-AES. These trace metals cannot be analysed as routine by the ICP-AES. However, in cases of intoxication with elevated serum concentrations mean recovery of 100+/-10% was obtained at an addition of 2.22 micromol/L for Al, 0.11 micromol/L for Be, 0.03 micromol/L for Co, 0.39 micromol/L for Cr, 0.14 micromol/L for Ni, and 0.12 micromol/L for Pb.

Calibration↗

[Quantity and trace elements in callus in secondary fracture healing; animal experiment study].

The quantitative analysis of quantity elements and trace elements in the callus tissue of tibial fractures was carried out in 120 adult rabbits during the secondary bone fracture healing. The processing of the callus and the analysis methods of the inorganic elements were demonstrated. The trace elements copper and zinc are available much more compared with the quantity elements in the callus tissue during the acidotic early phase of the fracture healing. Copper and zinc are necessary for synthesis of the bone substance and the enzymes. The phosphorus concentration increased in a three-phasic way in the callus during the fracture healing. Phosphorus is prematurely enriched in the callus quantitatively stronger than calcium.

Animals↗

The status of trace elements in staple foods from the former Federal Republic of Germany. I. Contents of 11 trace elements.

In representative samples of bread cereals and cereal products from the former Federal Republic of Germany (FRG) the status of 11 trace elements was analysed in 1989. It is demonstrated that the results are quite representative for the former FRG as compared with results published in the previous 15 years. The sampling technique for staple foods is explained. A number of certified standard reference materials were used to validate the analytical methods employed.

Animals↗

Impact of river overflowing on trace element contamination of volcanic soils in south Italy: part I. Trace element speciation in relation to soil properties.

Volcanic soils affected by different numbers of polluted river flooding events were investigated. Chromium and Cu were the major soil contaminants. Nickel, Fe, Zn and Mn total content never exceeded the Italian mandatory limits. The distribution of Cr and Cu total contents among studied soils indicated that only Cr contamination was related to overflowing events. In polluted soils, sequential chemical extractions revealed a preferential association of Cr and Cu with organic forms. A progressive Cr insolubilization with ageing was observed. Significant amounts of Cr and Cu were extracted by NH(4)-oxalate, suggesting metals association with short-range-order aluminosilicates and organo-mineral complexes. Possible methodological drawbacks in the use of the EU-BCR chemical speciation protocol on volcanic soils are discussed. Micromorphology and SEM/WDS analyses revealed Cr and Cu enriched silt and clay coatings in surface and subsurface soil horizons, suggesting a transfer of metal-rich sediments along the soil pore network with water movement.

Chromium↗

Trace elements in chemical evolution. II: Synthesis of amino acids under simulated primitive earth conditions in the presence of trace elements.

Electric discharge experiments have been performed in a plausible primitive earth atmosphere consisting of methane, nitrogen, and water over an aqueous phase of an ammonia-ammonium buffer solution. In some experiments, ions of metal elements, calcium, magnesium, zinc, iron and molybdenum were introduced. Gas phase products and amino acids in the liquid phase were analyzed by gas chromatography. With trace metal ions, less organic compounds in the gas phase and larger amounts of amino acids were obtained than without them. The results have shown the possible importance of trace elements in chemical evolution and the origin of life on the earth.

Amino Acids↗