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Simultaneous differential pulse polarographic determination of cadmium, lead, and copper in milk and dairy products.

The contents of potentially toxic elements lead and cadmium and the essential element copper in various milk and dairy products consumed in Turkey were determined by differential pulse polarography (DPP), primarily to assess whether the intakes comply with recommended desired concentrations for essential and permissible levels for toxic elements. A simple and rapid DPP method has been developed for the simultaneous determination of cadmium, lead, and copper in samples. Using the differential pulse mode, half-wave peak potentials as E(1/2) were -0.58, -0.40, and -0.07 V for cadmium (Cd), lead (Pb), and copper (Cu), respectively. Marketed formulations of dairy products have been analyzed by calibration and standard addition methods. Recovery experiments were found to be quantitative. The linear domain ranges were 0.00-674.28 microg/L for Cd (R2 = 0.9999), 0.19-2.94 mg/L (p < 0.01) for Pb (R2 = 0.9997), and 0.41-133.46 microg/L for Cu (p < 0.01) (R2 = 0.9999). The studies have shown that the method is a rapid, reproducible, and accurate determination of these elements in milk and dairy products and can be used in the analysis of marketed formulations in the milk and dairy industry.

Animals↗

Daily intake of heavy metals by infants through milk and milk products.

Concentrations of the essential elements Zn and Cu and potentially toxic elements Pb and Cd in different milk samples and baby food materials were measured, primarily to assess whether the intakes comply with recommended desired levels for essential and permissible levels for toxic elements. The geometric mean concentrations of Pb, Cd, Cu and Zn in different types of milk were found to vary from 1.70 to 3.35, 0.07 to 0.10, 43.2 to 195 and 1772 to 4230 micrograms/l, while the same in different baby foods had values from 39.5 to 77.7, 0.45 to 17.7, 1106.3 to 3157.3 and 9367 to 34,592 micrograms/kg, respectively. The concentration of Cd was found to be very low (0.1 microgram/l) and fairly constant in all types of milk. The lead content in cow milk was observed to be lowest even in comparison with breast milk. Concentrations of all these metals are approximately one order of magnitude higher in baby food products than those observed in different types of milk owing to higher fat content. The infant baby food Amul Spray contains low concentrations of toxic (Pb and Cd) and high concentrations of essential (Cu and Zn) elements. The daily intakes of Pb, Cd, Cu and Zn by infants through milk and baby foods marketed in Mumbai city have also been estimated. The daily intakes of Pb (1.1 micrograms/kg) and Cd (0.01 microgram/kg) for infants through baby foods are well below the recommended tolerable levels of 3.57 micrograms/kg and 0.8-1.0 microgram/kg, respectively. Similarly the daily intake levels of essential elements are also significantly lower than the recommended desirable levels of 3-5 mg and 0.5-1.0 mg for Zn and Cu, respectively. Milk from an Indian mother also does not provide adequate levels of essential elements to the infants and children.

Animals↗

Instrumental neutron activation analysis of essential and toxic elements in child and adolescent diets in the Chernobyl disaster territories of the Kaluga Region.

The main etiologic factor of various diseases, syndromes and pathologic conditions is an excess, deficiency or imbalance of trace element intake into the human body. Children seem to be the most sensitive to each change of trace element homeostasis. An inadequate essential trace element intake may result in an undesirable consequence that can apparently multiply against a background of additional unfavourable environmental influence such as high levels of radiation, organic and inorganic toxins, etc. Thus, the quality control of children's diets assumes urgent importance within the regions covered by the Chernobyl disaster. Instrumental neutron activation analysis was used to estimate contents of Ag, Br, Ca, Cl, Co, Cr, Cs, Fe, Hg, K, Mg, Mn, Na, Rb, Sb, Sc, Se, Sr, and Zn in the diets of children and adolescents. Diets were chosen from day care centre, boarding school and technical college cafeterias situated within the south and south west territories of the Kaluga Region, where radionuclide contamination ranges up to 15 Ci/km2. Ca and Zn deficiencies were found in the diets of children and adolescents aged 7-18. The Ca intake is only 212 mg/day, 5 times lower than that in developed countries. The Zn intake is 6.8 mg/day, 2 times lower than the level recommended by the WHO.

Adolescent↗

The interrelationship between silicon and aluminium in the biological effects of aluminium.

It is well established that aluminium is toxic at the cellular level and that pathological symptoms follow its entry into organisms (plants, fish, humans) when the normal exclusion mechanisms fail or are bypassed, as for example in renal dialysis. The present debate concerns the availability of environmental aluminium and the possible impact of its slow and insidious absorption and accumulation in vulnerable individuals. Silicon is considered as essential element but the mechanisms underlying its essentiality remain unknown and binding of the element (through oxygen) with biomolecules has not been demonstrated. There is, however, a unique affinity between aluminium and silicon, not only in solid state chemistry ([AlO4]5- and [SiO4]4- are isostructural), but also in aqueous solution chemistry as illustrated by the synthesis of zeolite from aluminate and silicate anions at high pH and under hydrothermal conditions. This affinity exists also in very dilute solution (< 10(-5) M) at near-neutral pH when hydroxyalumino-silicate species form. These species mediate the bioavailability and cellular toxicity of aluminium. The observed effects of silicon deficiency can be attributed to consequential aluminium availability. There are important implications for the epidemiology and biochemistry of aluminium-induced disorders and any consideration of one element must include the other.

Aluminum↗

DNA replication and the cell cycle.

The replication of DNA in the eukaryotic cell cycle is one of the most highly regulated events in cell growth and division. Biochemical studies on the replication of the genome of the small DNA virus simian virus 40 (SV40) have resulted in the identification of a number of DNA replication proteins from human cells. One of these, Replication Protein A (RPA), was phosphorylated in a cell cycle-dependent manner, beginning at the onset of DNA replication. RPA was phosphorylated in vitro by the cell cycle-regulated cdc2 protein kinase. This kinase also stimulated the unwinding of the SV40 origin of DNA replication during initiation of DNA replication in vitro, suggesting a mechanism by which cdc2 kinase may regulate DNA replication. Functional homologues of the DNA replication factors have been identified in extracts from the yeast Saccharomyces cerevisiae, enabling a genetic characterization of the role of these proteins in the replication of cellular DNA. A cellular origin binding protein had not been characterized. To identify proteins that function like T antigen at cellular origins of DNA replication, we examined the structure of a yeast origin of DNA replication in detail. This origin consists of four separate functional elements, one of which is essential. A multiprotein complex that binds to the essential element has been identified and purified. This protein complex binds to all known cellular origins from S. cerevisiae and may function as an origin recognition complex.

Animals↗

Resident education in primary care: how residents learn.

The process of resident education in an internal medicine practice was examined through interviews with 14 residents, who discussed their educational experience while caring for 10 patients. These retrospective evaluations provided insights about how the residents learned when caring for their patients. The study results suggest that resident education in this setting depends upon feedback provided through residents' use of educational resources or through their participation in elements of patient care. These essential elements of resident education were identified: treating and following patients, having cases reviewed by consultants and supervisors, encountering and recognizing diseases, and reading about problems. The study results provide a conceptual model of resident education upon which to base future research projects that should focus on patient selection and organizational aspects of the residents' practice.

Education, Medical, Graduate↗

Pip, a novel IRF family member, is a lymphoid-specific, PU.1-dependent transcriptional activator.

The immunoglobulin light-chain gene enhancers E kappa 3', E lambda 2-4, and E lambda 3-1 contain a conserved cell type-specific composite element essential for their activities. This element binds a B cell-specific heterodimeric protein complex that consists of the Ets family member PU.1 and a second factor (NF-EM5), whose participation in the formation of the complex is dependent on the presence of DNA-bound PU.1. In this report we describe the cloning and characterization of Pip (PU.1 interaction partner), a lymphoid-specific protein that is most likely NF-EM5. As expected, the Pip protein binds the composite element only in the presence of PU.1; furthermore, the formation of this ternary complex is critically dependent on phosphorylation of PU.1 at serine-148. The Pip gene is expressed specifically in lymphoid tissues in both B- and T-cell lines. When coexpressed in NIH-3T3 cells, Pip and PU.1 function as mutually dependent transcription activators of the composite element. The amino-terminal DNA-binding domain of Pip exhibits a high degree of homology to the DNA-binding domains of members of the interferon regulatory factor (IRF) family, which includes IRF-1, IRF-2, ICSBP, and ISGF3 gamma.

Amino Acid Sequence↗

[Functional study of the anorectal region in hemorrhagic rectocolitis].

Because the rectum is always severely affected by haemorrhagic procto-colitis, the functional investigation of the ano-rectal region is an essential element in the pathophysiological approach and the objective evaluation of functional disorders (urgency of stools, number of stools per 24 hours, incontinence) described by patients. In fact, the rectum is a compliant organ which behaves like a reservoir between the propulsive colinic element and the resistant anal element and it plays an essential role in the continence of faeces. The work of Farthing et al. and Denis et al. in cases of non-operated haemorrhagic procto-colitis have demonstrated: an abnormal sensitivity of the rectum to disension, a significant reduction in the rectal capacity and a decrease in the distensibility of the rectal wall. The abnormalities appear to be related to inflammation of the rectal mucosa. The studies reported by Denis et al. and by Zielinski et al. suggest that there is a functional adaptation of the rectal wall after ileo-rectal anastomosis for heamorrhagic procto-colitis, even in endoscopically severe forms.

Adaptation, Physiological↗

[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↗

Overlapping TATA-dependent and TATA-independent early promoter activities in the baculovirus gp64 envelope fusion protein gene.

In previous studies to characterize basal and activated transcription from the early promoter of the gp64 envelope fusion protein (efp) gene of the Orgyia pseudotsugata multicapsid nuclear polyhedrosis virus, the TATA box was identified as a functional element, essential for basal transcription from a minimal promoter construct. In the current study, we used discrete deletions and multiple point mutations that removed the functional TATA box from larger promoter constructs of the gp64 efp gene to reveal an overlapping TATA-independent transcriptional activity. TATA-independent transcriptional activity was inhibited in vitro by alpha-amanitin but not by tagetitoxin, demonstrating that like the TATA-dependent activity, the TATA-independent activity is mediated by RNA polymerase II. Using constructs in which the TATA box (TATATAA) was destroyed by substitution mutations, we identified four elements that are required for the TATA-independent activity. Two of the required elements, GATA (at -114) and CACGTG (at -104), were previously shown to specifically bind host transcription factors and activate transcription from the TATA-dependent wild-type gp64 efp promoter. The role of the early start site consensus CAGT sequence in TATA-independent transcription was also examined. Single-nucleotide substitution mutations in the CAGT sequence indicated that certain nucleotides within the CAGT start site were essential. In addition to the start site sequence and two upstream elements, a fourth essential element was identified in the 5' untranslated leader region (5'UTR). While the 5'UTR was not necessary for TATA-dependent transcription, deletion of a 10-bp 5'UTR sequence resulted in the loss of TATA-independent transcriptional activity. Although necessary, neither the GATA, CACGTG, start site region, nor 5'UTR element was alone sufficient for accurately initiated TATA-independent transcription from the consensus CAGT start site. Thus, the gp64 efp early promoter contains overlapping TATA-dependent and TATA-independent transcriptional activities. A number of common sequence elements (GATA, CACGTG, and start site CAGT) are involved in both of these activities, while one element (in the 5'UTR) is required only in the TATA-independent context.

Base Sequence↗

Zinc, copper, manganese and gold content of the hair of infants.

In the hair of 41 normal newborn children the amounts of the trace elements zinc, copper, manganese and gold were followed up longitudinally by neutron activation analysis, the samples being taken on the 1st day of life, between the 63th and 109th days, the 200th and 240 th as well as between the 368th and 478th days of life. In the newborn children no correlations among their hair trace elements themselves and with the duration of normal pregnancy, birth weight, weight percentiles according to Lubchenko et al. [21] and birth length were found. The zinc content of 212 +/- 63 ppm, the copper content of 8.1 +/- 2.3 ppm and the manganese content of 0.211 +/- 0.366 ppm agreed well with values in the literature from different parts of the world. The hair gold content was found to be 0.086 +/- 0.006 ppm. In early childhood the trace element contents do not exhibit any dependence on sex. The investigation of trace elements in the hair of babies resulted in the remarkable observation that in the first three months of life zinc, copper and gold contents shows a considerable increase to multiple levels of the birth values, followed by a decrease. This is important for the interpretation of hair trace element analyses in infants. There are significant positive correlations among zinc, copper and gold contents in hair. It must be emphasized that gold, although classified as a non-essential element, behaves in the hair of infants just like the physiologically important essential trace elements zinc and copper.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Interactions between essential and toxic elements in lead exposed children in Katowice, Poland.

OBJECTIVES: To determine the influence of the essential element status on blood concentrations of lead and other toxic metals. DESIGN AND METHODS: A group of 157 children from Katowice, an industrial area in Poland, was investigated for concentrations of lead and cadmium in whole blood, and mercury, selenium, zinc, copper, and magnesium in whole blood and serum. Relations between these elements, serum ferritin, hematological parameters, as well as serum selenoprotein P and glutathione peroxidase (GSH-px) were examined. Conversion factors for element concentrations (mumol to microgram): lead 207.19, cadmium 112.41, mercury 200.59, selenium 78.96, magnesium 24.31, copper 63.55, and zinc 65. RESULTS: Blood lead was negatively associated with concentrations of selenium in whole blood and serum as well as selenoprotein P and glutathione peroxidase in serum. The association was mainly apparent at low blood lead concentrations, which may indicate an influence of selenium on the kinetics of lead, rather than an effect of lead on the selenium status. Children with low serum ferritin levels had statistically higher blood cadmium levels and a tendency for higher blood lead levels, indicating increased gastrointestinal absorption of these metals at reduced iron stores. Blood lead was negatively correlated with mean corpuscular hemoglobin concentration, which may reflect the effect of lead on hemoglobin synthesis. There was an association between blood mercury and selenium, indicating a common source of intake through fish consumption. CONCLUSIONS: The results indicate that selenium and iron status may influence the kinetics of lead.

Adolescent↗

Accumulation of U14 small nuclear RNA in Saccharomyces cerevisiae requires box C, box D, and a 5', 3' terminal stem.

U14 is one of several nucleolar small nuclear RNAs required for normal processing of rRNA. Functional mapping of U14 from Saccharomyces cerevisiae has yielded a number of mutants defective in U14 accumulation or function. In this study, we have further defined three structural elements required for U14 accumulation. The essential elements include the U14-conserved box C and box D sequences and a 5', 3' terminal stem. The box elements are coconserved among several nucleolar small nuclear RNAs and have been implicated in binding of the protein fibrillarin. New mutational results show that the first GA bases of the box C sequence UGAUGA are essential, and two vital bases in box D have also been identified. An intragenic suppressor of a lethal box C mutant has been isolated and shown to contain a new box C-like PyGAUG sequence two bases upstream of normal box C. The importance of the terminal stem was confirmed from new compensatory base changes and the finding that accumulation defects in the box elements can be complemented by extending the terminal stem. The results suggest that the observed defects in accumulation reflect U14 instability and that protein binding to one or more of these elements is required for metabolic stability.

Base Composition↗

A Kaposi's sarcoma virus RNA element that increases the nuclear abundance of intronless transcripts.

The Kaposi's sarcoma-associated herpesvirus produces a 1077 nucleotide noncoding, polyadenylated, exclusively nuclear RNA called PAN that is highly expressed in lytically infected cells. We report that PAN contains a novel post-transcriptional element essential for its abundant accumulation. The element, PAN-ENE (PAN RNA expression and nuclear retention element), increases the efficiency of 3'-end formation in vivo and is sufficient to enhance RNA abundance from an otherwise inefficiently expressed intronless beta-globin construct. The PAN-ENE does not concomitantly increase the production of encoded protein. Rather, it retains the unspliced beta-globin mRNA in the nucleus. Tethering of export factors can override the nuclear retention of the PAN-ENE, supporting a mechanism whereby the PAN-ENE blocks assembly of an export-competent mRNP. The activities of the PAN-ENE are specific to intronless constructs, since inserting the PAN-ENE into a spliced beta-globin construct has no effect on mRNA abundance and does not affect localization. This is the first characterization of a cis-acting element that increases RNA abundance of intronless transcripts but inhibits assembly of an export-competent mRNP.

Base Sequence↗

Bhasmas: unique ayurvedic metallic-herbal preparations, chemical characterization.

Bhasmas are unique Ayurvedic metallic preparations with herbal juices/fruits, known in the Indian subcontinent since the seventh century BC and widely recommended for treatment of a variety of chronic ailments. Twenty bhasmas based on calcium, iron, zinc, mercury, silver, potassium, arsenic, copper, tin, and gemstones were analyzed for up to 18 elements by instrumental neutron activation analysis, including their C, H, N, and S contents. In addition to the major constituent element found at % level, several other essential elements such as Na, K, Ca, Mg, V, Mn, Fe, Cu, and Zn have also been found in microg/g amounts and ultratrace (ng/g) amounts of Au and Co. These seem to remain chelated with organic ligands derived from medicinal herbs. The bhasmas are biologically produced nanoparticles and are taken along with milk, butter, honey, or ghee (a preparation from milk); thus, this makes these elements easily assimilable, eliminating their harmful effects and enhancing their biocompatibility. Siddha Makaradhwaja, a mercury preparation is found to be stoichiometrically HgS without any traces of any other element. Similarly, Swet Parpati is stoichiometrically KNO3 but is found to have Mn, Cu, Zn, Na, P, and Cl as well. An attempt has been made to correlate the metallic contents with their medicinal importance. Na and K, the two electrolytic elements, seem to be well correlated, although K/Na varies in a wide range from 0.06 to 95, with specifically low values for Ca-, Fe-, and Zn-based bhasmas. K/P also varies in a wide range from 0.23 to 12, although for most bhasmas (n = 12), it is 2.3 +/- 1.2. Further, Fe/Mn is linearly correlated (r = 0.96) with Fe in nine noniron bhasmas.

Calcium↗

Involvement of the Oct-1 regulatory element of the gadd45 promoter in the p53-independent response to ultraviolet irradiation.

The gadd45 gene, a growth arrest and DNA damage (gadd)-induced gene, is transcriptionally activated by UV irradiation through two distinct pathways. One requires the sequence-specific binding of the p53 tumor suppressor protein to a responsive element within the third intron of the gadd45 gene, and the other is p53-independent activation of the gadd45 promoter region, although the UV-response element that mediates this has yet to be defined. To investigate the sequences involved in induction of gadd45 by UV irradiation in a p53-independent pathway, we performed mutation analyses of the human gadd45 promoter fused to the luciferase reporter gene in cell lines in which p53 was inactivated. We found that the UV-responsive element was involved in the Oct-1 binding site at -99 bp relative to the transcription start site. Electrophoretic mobility shift assays showed that Oct-1, a transcription factor, bound this element on the gadd45 gene, although the intensity and mobility pattern of the retarded bands were not altered by UV irradiation. These results suggest that the Oct-1 regulatory element might be one of the essential elements involved in the activation of the gadd45 promoter by UV irradiation in a p53-independent pathway.

Cell Division↗

Positive and negative gene regulation in muscle.

By the analysis of cis and trans-acting element involved in transcriptional regulation of chicken myosin alkali light chain genes, we have identified the MLC box, muscle specific enhancer element and negative regulatory element. The MLC box is an essential element for the expression of MLC genes located at approximately 100 bp upstream from mRNA start sites. The core sequence of MLC box is similar to the consensus of actin gene CArG box and SRE of c-fos oncogene. In vitro DNA-protein binding assay has revealed that the MLC box, CArG box and SRE might bind to a common or a similar protein complex. CMD1, cMyogenin, and cMRF4 transactivate the promorter with an intact MLC box, but not the promoter lacking MLC box, indicating that the MLC box itself is transactivated by the myogenic regulatory factors. This transactivation must have been due to the indirect effect of the myogenic regulatory factors, because chicken myogenic factors do not bind to the MLC box. A cis element identified at about 150 bp upstream from the cap site of cardiac MLC gene suppresses the cardiac MLC gene expression in skeletal muscle cells but not in cardiac muscle cells. The protein(s) bound to NRE might be identical with one of proteins bound to SRE. NRE may block the function of MLC box and resultantly inhibits the expression of cardiac MLC1 gene in skeletal muscle cells. Skeletal muscle enhancer at -2 kb of skeletal MLC1f gene is composed of two subelements P and D, cooperative action between them is required for sufficient enhancer activity. CMD1 and myogenin bind to the enhancer sequences of skeletal MLC1 gene and MCK gene and transactivate these genes preferentially in skeletal muscle cells. In addition to the CMD1 responsible enhancer, another cis-element is required for transactivation of the MLC1f gene by cMyogenin. An E-box adjacent to MLC box may co-work with the enhancer to increase the expression of MLC1f gene. Muscle specific and developmentally regulated expression of MLC gene family is regulated by the combination of these cis and trans-acting elements.

Animals↗

Effect of magnesium and zinc on antimicrobial activities of some antibiotics.

Mg and Zn are essential elements in biological system. They are essential for enzymatic activity, maintaining three-dimensional structure of proteins, for the synthesis of nucleic acids and proteins etc. Deficiency of Mg and Zn causes different life threatening diseases. That is why the optimum level of Mg and Zn must be maintained for all biological systems. The experiment was aimed to evaluate the effect of magnesium and zinc on the efficacy of antibiotic agents against different microorganisms. It has been observed that the antibiotic activity of an antibiotic agent increased significantly with concomitant use of Mg salt at a concentration ranging from 3-9 microg per antibiotic disc. Similarly, Zn salt increased the activity of an antibiotic at a concentration ranging from 9-15 microg per antibiotic disc. The experiment revealed that concomitant administration of antibiotic with Mg or Zn salt not only will supplement the deficiency of these electrolytes but also will increase the activity of antibiotics against different bacterial strains.

Anti-Bacterial Agents↗