Literature DB >> 21783456

Effects of dietary folate intake and folate binding protein-2 (Folbp2) on urinary speciation of sodium arsenate in mice.

Ofer Spiegelstein1, Xiufen Lu, X Chris Le, Aron Troen, Jacob Selhub, Stepan Melnyk, S Jill James, Richard H Finnell.   

Abstract

Folate binding protein-2 (Folbp2(-/-)) knockout mice have been previously shown to be highly susceptible to the teratogenic effects of arsenic. Arsenic biotransformation is achieved primarily by biomethylation. Given the potential close relationship between folate biochemistry and arsenic biotransformation, the aims of our study were to: (1) test whether Folbp2(-/-) mice have altered arsenic biotransformation which would suggest a potential mechanism for their enhanced susceptibility; (2) examine whether dietary folate deficiency alters arsenic biotransformation. Folbp2(-/-) mice were found to have slightly lower plasma folate levels than wildtype mice. No genotype-specific effects were observed in arsenic speciation thereby negating altered biotransformation of arsenic as the mechanism of the enhanced teratogenicity seen in Folbp2(-/-) mice. Reduction in excretion of organic arsenicals was observed during folate deficiency, suggesting an important role for folic acid homeostasis in arsenic biotransformation.

Entities:  

Year:  2005        PMID: 21783456     DOI: 10.1016/j.etap.2004.01.007

Source DB:  PubMed          Journal:  Environ Toxicol Pharmacol        ISSN: 1382-6689            Impact factor:   4.860


  8 in total

1.  Folate and arsenic metabolism: a double-blind, placebo-controlled folic acid-supplementation trial in Bangladesh.

Authors:  Mary V Gamble; Xinhua Liu; Habibul Ahsan; J Richard Pilsner; Vesna Ilievski; Vesna Slavkovich; Faruque Parvez; Yu Chen; Diane Levy; Pam Factor-Litvak; Joseph H Graziano
Journal:  Am J Clin Nutr       Date:  2006-11       Impact factor: 7.045

Review 2.  Dead or Alive? A Review of Perinatal Factors That Determine Canine Neonatal Viability.

Authors:  Oliwia Uchańska; Małgorzata Ochota; Maria Eberhardt; Wojciech Niżański
Journal:  Animals (Basel)       Date:  2022-05-30       Impact factor: 3.231

3.  Gut microbiome disruption altered the biotransformation and liver toxicity of arsenic in mice.

Authors:  Liang Chi; Jingchuan Xue; Pengcheng Tu; Yunjia Lai; Hongyu Ru; Kun Lu
Journal:  Arch Toxicol       Date:  2018-10-24       Impact factor: 5.153

4.  Nutritional manipulation of one-carbon metabolism: effects on arsenic methylation and toxicity.

Authors:  Megan N Hall; Mary V Gamble
Journal:  J Toxicol       Date:  2012-03-14

Review 5.  Nutrition, one-carbon metabolism and arsenic methylation.

Authors:  Ahlam Abuawad; Anne K Bozack; Roheeni Saxena; Mary V Gamble
Journal:  Toxicology       Date:  2021-04-24       Impact factor: 4.571

6.  Folate, homocysteine, and arsenic metabolism in arsenic-exposed individuals in Bangladesh.

Authors:  Mary V Gamble; Xinhua Liu; Habibul Ahsan; Richard Pilsner; Vesna Ilievski; Vesna Slavkovich; Faruque Parvez; Diane Levy; Pam Factor-Litvak; Joseph H Graziano
Journal:  Environ Health Perspect       Date:  2005-12       Impact factor: 9.031

7.  Metabolic Phenotype of Wild-Type and As3mt-Knockout C57BL/6J Mice Exposed to Inorganic Arsenic: The Role of Dietary Fat and Folate Intake.

Authors:  Madelyn C Huang; Christelle Douillet; Ellen N Dover; Chongben Zhang; Rowan Beck; Ahmad Tejan-Sie; Sergey A Krupenko; Miroslav Stýblo
Journal:  Environ Health Perspect       Date:  2018-12       Impact factor: 9.031

8.  Nutritional status has marginal influence on the metabolism of inorganic arsenic in pregnant Bangladeshi women.

Authors:  Li Li; Eva-Charlotte Ekström; Walter Goessler; Bo Lönnerdal; Barbro Nermell; Mohammad Yunus; Anisur Rahman; Shams El Arifeen; Lars Ake Persson; Marie Vahter
Journal:  Environ Health Perspect       Date:  2008-03       Impact factor: 9.031

  8 in total

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