Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers

Background: Although lead poisoning has aroused public concern, its toxicokinetics and mechanism of toxicity are still unclear. Vitamin D regulates calcium homeostasis via vitamin D receptor (VDR) and its polymorphisms cause variability of body calcium and bone density. VDR polymorphisms may correla...

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Main Authors: Winai Wananukul, Tanyachai Sura, Krongtong Yoovathaworn, Nirada Kasiwut, Boonsong Ongphiphadhanakul
Other Authors: Mahidol University
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Published: 2018
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/13807
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spelling th-mahidol.138072018-06-11T12:17:05Z Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers Winai Wananukul Tanyachai Sura Krongtong Yoovathaworn Nirada Kasiwut Boonsong Ongphiphadhanakul Mahidol University Biochemistry, Genetics and Molecular Biology Medicine Background: Although lead poisoning has aroused public concern, its toxicokinetics and mechanism of toxicity are still unclear. Vitamin D regulates calcium homeostasis via vitamin D receptor (VDR) and its polymorphisms cause variability of body calcium and bone density. VDR polymorphisms may correlate with the variability of body burden of lead. Objective: Determine if vitamin D receptor polymorphisms is associated with blood lead in Thai workers exposed to lead. Subjects and methods: Four hundred fifteen lead exposure workers were recruited in the study. Blood lead level was determined as a biomarker of lead. Five VDR polymorphisms (FokI, BsmI, Apa, TagI, and Cdx2) were studied. Results: The allele frequencies of F/f, B/b, A/a, T/t, and A/G for FokI, BsamI, ApaI, TagI and Cdx-2 polymorphisms were 059/0.41, 0.07/0.93, 0.32/0.68, 0.94/0.06 and 0.4/0.6, respectively. Gender, smoking status, lead exposure status, BsmI, and TaqI polymorphisms were associated with blood lead level. The BB genotype of BsmI and the tt genotype of TaqI have significantly lower blood lead levels than other genotypes of their polymorphisms. Conclusion: The BsmI and TaqI polymorphisms of the vitamin D receptor gene had impact on the blood lead level. This association was similar to their effects on calcium. Lead might share the same toxicokinetics with calcium. 2018-06-11T04:39:26Z 2018-06-11T04:39:26Z 2012-02-01 Article Asian Biomedicine. Vol.6, No.1 (2012), 43-50 10.5372/1905-7415.0601.119 1875855X 19057415 2-s2.0-84871648339 https://repository.li.mahidol.ac.th/handle/123456789/13807 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84871648339&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Biochemistry, Genetics and Molecular Biology
Medicine
spellingShingle Biochemistry, Genetics and Molecular Biology
Medicine
Winai Wananukul
Tanyachai Sura
Krongtong Yoovathaworn
Nirada Kasiwut
Boonsong Ongphiphadhanakul
Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers
description Background: Although lead poisoning has aroused public concern, its toxicokinetics and mechanism of toxicity are still unclear. Vitamin D regulates calcium homeostasis via vitamin D receptor (VDR) and its polymorphisms cause variability of body calcium and bone density. VDR polymorphisms may correlate with the variability of body burden of lead. Objective: Determine if vitamin D receptor polymorphisms is associated with blood lead in Thai workers exposed to lead. Subjects and methods: Four hundred fifteen lead exposure workers were recruited in the study. Blood lead level was determined as a biomarker of lead. Five VDR polymorphisms (FokI, BsmI, Apa, TagI, and Cdx2) were studied. Results: The allele frequencies of F/f, B/b, A/a, T/t, and A/G for FokI, BsamI, ApaI, TagI and Cdx-2 polymorphisms were 059/0.41, 0.07/0.93, 0.32/0.68, 0.94/0.06 and 0.4/0.6, respectively. Gender, smoking status, lead exposure status, BsmI, and TaqI polymorphisms were associated with blood lead level. The BB genotype of BsmI and the tt genotype of TaqI have significantly lower blood lead levels than other genotypes of their polymorphisms. Conclusion: The BsmI and TaqI polymorphisms of the vitamin D receptor gene had impact on the blood lead level. This association was similar to their effects on calcium. Lead might share the same toxicokinetics with calcium.
author2 Mahidol University
author_facet Mahidol University
Winai Wananukul
Tanyachai Sura
Krongtong Yoovathaworn
Nirada Kasiwut
Boonsong Ongphiphadhanakul
format Article
author Winai Wananukul
Tanyachai Sura
Krongtong Yoovathaworn
Nirada Kasiwut
Boonsong Ongphiphadhanakul
author_sort Winai Wananukul
title Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers
title_short Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers
title_full Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers
title_fullStr Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers
title_full_unstemmed Impact of vitamin D receptor gene polymorphisms on blood lead levels in Thai lead exposed workers
title_sort impact of vitamin d receptor gene polymorphisms on blood lead levels in thai lead exposed workers
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/13807
_version_ 1763494671415246848