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Original Articles

δ-Aminolevulinic Acid Dehydratase Test for Lead Exposure

Pages 274-281 | Received 12 Mar 1974, Accepted 28 May 1974, Published online: 29 Apr 2013

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Read on this site (4)

Gilberto Molina-Ballesteros, Miguel Angel Zuñiga-Charles, Francisco Javier Sanchez-Anzaldo & J. Diego Gonzalez-Ramirez. (1978) Urinary δ-Aminolevulinic Acid as a Biological Indicator throughout Penicillamine Therapy in Lead Intoxication. Archives of Environmental Health: An International Journal 33:6, pages 308-313.
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MackT. Finley, MichaelP. Dieter & LouisN. Locke. (1976) Sublethal effects of chronic lead ingestion in mallard ducks. Journal of Toxicology and Environmental Health 1:6, pages 929-937.
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Katsumaro Tomokuni, Ikuko Osaka & Masana Ogata. (1975) Erythrocyte Protoporphyrin Test for Occupational Lead Exposure. Archives of Environmental Health: An International Journal 30:12, pages 588-590.
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Katsumaro Tomokuni. (1975) Different Behaviors of Erythrocyte δ-Aminolevulinic Acid Dehydratase. Archives of Environmental Health: An International Journal 30:3, pages 148-152.
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Articles from other publishers (38)

K.‐H. Schaller. 2002. The MAK‐Collection for Occupational Health and Safety. The MAK‐Collection for Occupational Health and Safety 1 8 .
Yolanda Alcaraz-Contreras, Lourdes Garza-Ocañas, Katya Carcaño-Díaz & Xóchitl Sofía Ramírez-Gómez. (2011) Effect of Glycine on Lead Mobilization, Lead-Induced Oxidative Stress, and Hepatic Toxicity in Rats. Journal of Toxicology 2011, pages 1-7.
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Sin-Eng Chia, Zhou Huijun, Tham Mei Theng & Eric Yap. (2007) Possibilities of newer ALAD polymorphism influencing human susceptibility to effects of inorganic lead on the neurobehavioral functions. NeuroToxicology 28:2, pages 312-317.
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Sin-Eng Chia, Eric Yap & Kee-Seng Chia. (2004) δ-Aminolevulinic Acid Dehydratase (ALAD) Polymorphism and Susceptibility of Workers Exposed to Inorganic Lead and Its Effects on Neurobehavioral Functions. NeuroToxicology 25:6, pages 1041-1047.
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Ingvar A. Bergdahl, Anders Grubb, Andrejs Schütz, Robert J. Desnick, James G. Wetmur, Shigeru Sassa & Staffan Skerfving. (2009) Lead Binding to δ‐Aminolevulinic Acid Dehydratase (ALAD) in Human Erythrocytes. Pharmacology & Toxicology 81:4, pages 153-158.
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Iman A. S. Al‐Saleh. (2006) The biochemical and clinical consequences of lead poisoning. Medicinal Research Reviews 14:4, pages 415-486.
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Jadwiga Chmielnicka, Marenna Nasiadek & El?bieta Lewandowska-Zyndul. (1994) The effect of aluminum chloride on some steps of heme biosynthesis in rats after oral exposure. Biological Trace Element Research 40:2, pages 127-136.
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Jadwiga Chmielnicka, Grażyna Zarȩba & Urszula Grabowska. (1992) Protective effect of zinc on heme biosynthesis disturbances in rabbits after administration per os of tin. Ecotoxicology and Environmental Safety 24:3, pages 266-274.
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Grazyna Zareba & Jadwiga Chmielnicka. (1992) Disturbances in heme biosynthesis in rabbits after administrationper os of low doses of tin or lead. Biological Trace Element Research 34:2, pages 115-122.
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A. M. Scheuhammer & L. K. Wilson. (2010) Effects of lead and pesticides on δ‐aminolevulinic acid dehydratase of ring doves (Streptopelia risoria) . Environmental Toxicology and Chemistry 9:11, pages 1379-1386.
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Katsumaro Tomokuni, Masayoshi Ichibal, Yukoi Hirai, Tohru Hasegawa & Kanji Sugimoto. (1988) Relationship between inhibition of erythrocyte pyrimidine 5?-nucleotidase activity and biological response for porphyrin metabolism in workers occupationally exposed to lead. International Archives of Occupational and Environmental Health 60:6, pages 431-436.
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A.M. Scheuhammer. (1987) Erythrocyte δ-aminolevulinic acid dehydratase in birds. I. the effects of lead and other metals in vitro. Toxicology 45:2, pages 155-163.
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O. Hayashi, M. Chiba & M. Kikuchi. (1987) The effects of the light-dark cycle and its inversion on the susceptibility of mice to lead acetate. International Journal of Biometeorology 31:2, pages 95-107.
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A.M. Scheuhammer. (1987) The chronic toxicity of aluminium, cadmium, mercury, and lead in birds: A review. Environmental Pollution 46:4, pages 263-295.
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Donald C. Wigfield, Sandra C. Wright, Chuni L. Chakrabarti & Regina Karwowska. (2006) Evaluation of the relationship between chemical and biological monitoring of low‐level lead poisoning. Journal of Applied Toxicology 6:4, pages 231-235.
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G. Zarȩba, J. Chmielnicka & G. Kustra. (1986) Interaction of tin and zinc in some processes of heme biosynthesis in rabbits. Ecotoxicology and Environmental Safety 11:2, pages 144-152.
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Grȧzyna Zarȩba & Jadwiga Chmielnicka. (1985) Aminolevulinic acid dehydratase activity in the blood of rats exposed to tin and zinc. Ecotoxicology and Environmental Safety 9:1, pages 40-46.
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G. Zareba & J. Chmielnicka. 1985. Receptors and Other Targets for Toxic Substances. Receptors and Other Targets for Toxic Substances 330 331 .
Cl. Boudene, Nicole Despaux-Pages, E. Comoy & Cl. Bohuon. (1984) Immunological and enzymatic studies of erythrocytic ?-aminolevulinate dehydratase. International Archives of Occupational and Environmental Health 55:1, pages 87-96.
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J P Farant & D C Wigfield. (1984) Comparison of the in vivo and in vitro effects of lead on the pH-activity relationship of human erythrocytic delta-aminolaevulinic acid dehydratase.. Occupational and Environmental Medicine 41:3, pages 406-411.
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M. Hutton. (1983) The effects of environmental lead exposure and in vitro zinc on tissue δ-aminolevulinic acid dehydratase in urban pigeons. Comparative Biochemistry and Physiology Part C: Comparative Pharmacology 74:2, pages 441-446.
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M. Kajimoto, M. Kondo, M. Niwa, T. Suzuki, H. Kimura, A. Sasaki & G. Urata. (1983) Increase of ?-Aminolevulinic Acid Dehydratase (ALAD) in rat erythrocytes in lead poisoning. Archives of Toxicology 52:1, pages 1-11.
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J. -P. Farant & D. C. Wigfield. (1982) Biomonitoring lead exposure with ?-aminolevulinate dehydratase (ALA-D) activity ratios. International Archives of Occupational and Environmental Health 51:1, pages 15-24.
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D. C. Wigfield & J.‐P. Farant. (2006) Erythrocytic δ‐aminolevulinate dehydratase activity as a function of pH. A study of activity ratios as biologic indicators of lead intoxication. Journal of Applied Toxicology 2:3, pages 139-144.
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J Chmielnicka, E Komsta-Szumska & J A Szymanska. (1981) Arginase and kallikrein activities as biochemical indices of occupational exposure to lead.. Occupational and Environmental Medicine 38:2, pages 175-178.
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Newton C. Gordon, Steve Brown, Ved M. Khosla & Louis S. Hansen. (1979) Lead poisoning. Oral Surgery, Oral Medicine, Oral Pathology 47:6, pages 500-512.
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Jadwiga Chmielnicka & Jadwiga A. Szymańska. (1979) Evaluation of Methods for the Estimation of 5-Aminolevulinate Dehydratase for a Broad Range of Lead Concentrations in the Blood of Exposed Workers. Clinical Chemistry and Laboratory Medicine 17:6.
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Lila M. Roots. (1979) Tests available for assessing recent exposure to inorganic lead compounds and their use for screening purposes. Science of The Total Environment 11:1, pages 59-68.
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J.J. Tomaszewski, K. Wozniak & H. Donica. (1979) Evaluation of laboratory tests for lead poisoning in populations with environmental exposure. Chemosphere 8:3, pages 129-133.
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Christine E. Rolton, B. J. Horton & D. A. Pass. (2008) EVALUATION OF TESTS FOR THE DIAGNOSIS OF LEAD EXPOSURE IN SHEEP. Australian Veterinary Journal 54:8, pages 393-397.
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C.L. Stone, M.R.S. Fox, A.L. Jones & K.R. Mahaffey. (1977) δ-Aminolevulinic Acid Dehydratase—A Sensitive Indicator of Lead Exposure in Japanese Quail. Poultry Science 56:1, pages 174-181.
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W. Kisser. (1977) Biochemische Methoden zum Nachweis der BleivergiftungBiochemical methods for the detection of lead poisoning. Archives of Toxicology 37:3, pages 173-193.
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S.C. Rastogi, J. Clausen & K.C. Srivastava. (1976) Selenium and lead: Mutual detoxifying effects. Toxicology 6:3, pages 377-388.
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K. Tomokuni. (1976) Stability of erythrocyte aminolaevulinate dehydratase under several conditions of storage of the hemolysate from human blood. Clinica Chimica Acta 69:3, pages 547-549.
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Albert M. Cheh & J. B. Neilands. 1976. Biochemistry. Biochemistry 123 169 .
Katsumaro Tomokuni & Masana Ogata. (1976) Relationship between lead concentration in blood and biological response for porphyrin metabolism in workers occupationally exposed to lead. Archives of Toxicology 35:4, pages 239-246.
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R. L. Zielhuis. (1975) Dose-response relationships for inorganic lead. International Archives of Occupational and Environmental Health 35:1, pages 1-18.
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Katsumaro Tomokuni & Toshio Kawanishi. (1975) Relationship between activation of delta-aminolevulinic acid dehydratase by heating and blood lead level. Archives of Toxicology 34:3, pages 253-258.
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