Food Additives & Contaminants · 2006 · 14 citations · 22 references
Calcium SupplementsNutritionEnvironmental ChemistryDietary ExposureFood AdditiveMedicineGraphite FurnaceLead IdentificationToxicologyAnalytical ChemistryClinical ChemistryEnvironmental ToxicologyPublic HealthPharmacologyCitric AcidMineral MetabolismLead ContentLead Poisoning
The lead and calcium content of calcium supplements available in Brazil were determined by graphite furnace and flame atomic absorption spectrometry, respectively. Samples were microwave-digested in concentrated HNO(3). Citric acid was used as a chemical modifier in the lead analysis. Supplements were classified into six categories: oyster industrialized (OI, n=4), oyster prepared in pharmacy (OP, n=3), refined industrialized (RI, n=6), refined prepared in pharmacy (RP, n=3), bone meal (B, n=3), and dolomite (D, n=4). Lead levels (microg g(-1) of measured calcium) were higher in D products (2.33), followed by OI, RP, OP, and RI products (1.46, 1.32, 1.29, 0.75), while B products had levels lower than the limit of quantification (0.02 microg g(-1) unit weight). Daily lead intake of eight supplements exceeded the limit of California, USA (1.5 microg g(-1) calcium), but none exceeded the federal limit of USA (7.5 microg g(-1) calcium) or the provisional tolerable lead intake by FAO/WHO (25 microg kg(-1) per week).
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M. Kujawa · Food / Nahrung · 1994 · 436 citations
Lead-calcium interactions in cellular lead toxicity.
PubMed · 1993 · 244 citations
Environmental Health Criteria 165—Inorganic Lead
John Coakley · Pathology · 1997 · 216 citations
Environmental Chemistry, Environmental Health, Toxicology +5