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Bulletin of environmental contamination and toxicology1981; 27(6); 810-815; doi: 10.1007/BF01611100

An extraction procedure may not be feasible for cadmiun analysis of tissues, such as horse kidney cortex, having a very high cadmium content.

Abstract: No abstract available
Publication Date: 1981-12-01 PubMed ID: 7337853DOI: 10.1007/BF01611100Google Scholar: Lookup
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Cite This Article

APA
Elinder CG, Lind B, Piscator M, Sundstedt K, Akerberg S. (1981). An extraction procedure may not be feasible for cadmiun analysis of tissues, such as horse kidney cortex, having a very high cadmium content. Bull Environ Contam Toxicol, 27(6), 810-815. https://doi.org/10.1007/BF01611100

Publication

ISSN: 0007-4861
NlmUniqueID: 0046021
Country: United States
Language: English
Volume: 27
Issue: 6
Pages: 810-815

Researcher Affiliations

Elinder, C G
    Lind, B
      Piscator, M
        Sundstedt, K
          Akerberg, S

            MeSH Terms

            • Animals
            • Cadmium / analysis
            • Horses
            • Kidney Cortex / analysis
            • Methods

            References

            This article includes 9 references
            1. KAGI JH, VALEE BL. Metallothionein: a cadmium- and zinc-containing protein from equine renal cortex.. J Biol Chem 1960 Dec;235:3460-5.
              pubmed: 13750713
            2. Korkeala H, Stabel-Taucher R, Pekkanen TJ. The problem of testing horse kidneys for the presence of antibiotics at meat inspection: how to avoid a false positive reaction.. Nord Vet Med 1976 Jul-Aug;28(7-8):377-80.
              pubmed: 822397
            3. Penumarthy L, Oehme FW, Hayes RH. Lead, cadmium, and mercury tissue residues in healthy swine, cattle, dogs, and horses from the midwestern United States.. Arch Environ Contam Toxicol 1980;9(2):193-206.
              pubmed: 7387187doi: 10.1007/BF01055374google scholar: lookup
            4. Elinder CG, Lind B, Kjellström T, Linnman L, Friberg L. Cadmium in kidney cortex, liver, and pancreas from Swedish autopsies. Estimation of biological half time in kidney cortex, considering calorie intake and smoking habits.. Arch Environ Health 1976 Nov-Dec;31(6):292-302.
              pubmed: 999342doi: 10.1080/00039896.1976.10667239google scholar: lookup
            5. Pekkanen TJ, Seuna ER, Stabel-Taucher R. The interdependence between high cadmium content of horse kidney cortex and the false positive kidney test for the detection of antibiotic residues at meat inspection.. Acta Vet Scand 1974;15(3):436-8.
              pubmed: 4416331doi: 10.1186/BF03547469google scholar: lookup
            6. Nordberg M, Elinder CG, Rahnster B. Cadmium, zinc and copper in horse kidney metallothionein.. Environ Res 1979 Dec;20(2):341-50.
              pubmed: 546643doi: 10.1016/0013-9351(79)90010-0google scholar: lookup
            7. Yeager DW, Cholak J, Meiners BG. The determination of cadmium in biological and related material by atomic absorption.. Am Ind Hyg Assoc J 1973 Oct;34(10):450-4.
              pubmed: 4766100doi: 10.1080/0002889738506878google scholar: lookup
            8. Sass B, Hatziolos BC, Hayes JE. Cadmium poisoning in a group of ponies.. Vet Med Small Anim Clin 1972 Jul;67(7):745-6.
              pubmed: 4483115
            9. Goodman GT, Roberts TM. Plants and soils as indicators of metals in the air.. Nature 1971 Jun 4;231(5301):287-92.
              pubmed: 4930976doi: 10.1038/231287a0google scholar: lookup

            Citations

            This article has been cited 1 times.
            1. Piscator M. Dietary exposure to cadmium and health effects: impact of environmental changes.. Environ Health Perspect 1985 Nov;63:127-32.
              doi: 10.1289/ehp.8563127pubmed: 4076079google scholar: lookup