Metabolomic changes associated with chronic arsenic exposure in a Bangladeshi population.
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Megan M. Niedzwiecki | B. Pierce | Haotian Wu | A. Navas-Acien | M. Kioumourtzoglou | D. Walker | M. Gamble | Dean P. Jones | Jeff Goldsmith | V. Kalia | V. Ilievski
[1] Didong Lou,et al. LC/MS/MS-Based Liver Metabolomics to Identify Chronic Liver Injury Biomarkers Following Exposure to Arsenic in Rats , 2022, Biological Trace Element Research.
[2] Lianxian Guo,et al. Changes in metabolomics and lipidomics in brain tissue and their correlations with the gut microbiome after chronic food-derived arsenic exposure in mice. , 2021, Ecotoxicology and environmental safety.
[3] H. Kono,et al. Uric Acid in Inflammation and the Pathogenesis of Atherosclerosis , 2021, International journal of molecular sciences.
[4] J. Xia,et al. MetaboAnalyst 5.0: narrowing the gap between raw spectra and functional insights , 2021, Nucleic Acids Res..
[5] Haitao Wang,et al. Metallothionein Attenuated Arsenic-Induced Cytotoxicity: The Underlying Mechanism Reflected by Metabolomics and Lipidomics. , 2021, Journal of agricultural and food chemistry.
[6] F. Parvez,et al. Association between body mass index and arsenic methylation in three studies of Bangladeshi adults and adolescents. , 2021, Environment international.
[7] L. Hay,et al. Assessing the Impact of Drought on Arsenic Exposure from Private Domestic Wells in the Conterminous United States. , 2021, Environmental science & technology.
[8] W. Frishman,et al. Association Between Arsenic Exposure and Cardiovascular Disease , 2020, Cardiology in review.
[9] L. Cimmino,et al. B Vitamins and One-Carbon Metabolism: Implications in Human Health and Disease , 2020, Nutrients.
[10] K. Sung,et al. Uric acid and cardiometabolic diseases , 2020, Clinical Hypertension.
[11] Dean P. Jones,et al. Reference Standardization for Quantification and Harmonization of Large-Scale Metabolomics. , 2020, Analytical chemistry.
[12] Naama Kanarek,et al. NADH Ties One-Carbon Metabolism to Cellular Respiration. , 2020, Cell metabolism.
[13] Y. Kim,et al. Uric acid and inflammation in kidney disease. , 2020, American journal of physiology. Renal physiology.
[14] E. White,et al. Serine Catabolism Feeds NADH when Respiration Is Impaired. , 2020, Cell metabolism.
[15] A. Navas-Acien,et al. Early-Life Arsenic Exposure, Nutritional Status, and Adult Diabetes Risk , 2019, Current Diabetes Reports.
[16] M. Gonsebatt,et al. Arsenic-induced neurotoxicity: a mechanistic appraisal , 2019, JBIC Journal of Biological Inorganic Chemistry.
[17] Irma E. Gonzalez-Curiel,et al. Lipid Metabolism Alterations in a Rat Model of Chronic and Intergenerational Exposure to Arsenic , 2019, BioMed research international.
[18] T. Farkhondeh,et al. The role of arsenic in obesity and diabetes , 2019, Journal of cellular physiology.
[19] W. Wąsowicz,et al. A urinary metabolomics study of a Polish subpopulation environmentally exposed to arsenic. , 2019, Journal of trace elements in medicine and biology : organ of the Society for Minerals and Trace Elements.
[20] H. Mochizuki. Arsenic Neurotoxicity in Humans , 2019, International journal of molecular sciences.
[21] Shuhui Wei,et al. A review of arsenic exposure and lung cancer. , 2019, Toxicology research.
[22] F. Parveen,et al. An Updated Review of Lysophosphatidylcholine Metabolism in Human Diseases , 2019, International journal of molecular sciences.
[23] F. Parvez,et al. Folic acid supplementation enhances arsenic methylation: results from a folic acid and creatine supplementation randomized controlled trial in Bangladesh. , 2018, The American journal of clinical nutrition.
[24] G. Ndrepepa. Uric acid and cardiovascular disease. , 2018, Clinica chimica acta; international journal of clinical chemistry.
[25] M. N. Uddin,et al. A cross-sectional study of water arsenic exposure and intellectual function in adolescence in Araihazar, Bangladesh. , 2018, Environment international.
[26] Peer Bork,et al. iPath3.0: interactive pathways explorer v3 , 2018, Nucleic Acids Res..
[27] N. Khanjani,et al. Arsenic and breast cancer: a systematic review of epidemiologic studies , 2017, Reviews on environmental health.
[28] D. Vance,et al. The critical role of phosphatidylcholine and phosphatidylethanolamine metabolism in health and disease. , 2017, Biochimica et biophysica acta. Biomembranes.
[29] M. Cebrián,et al. Arsenic metabolism and cancer risk: A meta‐analysis , 2017, Environmental research.
[30] Joshua D Rabinowitz,et al. One-Carbon Metabolism in Health and Disease. , 2017, Cell metabolism.
[31] Z. Cai,et al. Urinary metabolomics revealed arsenic exposure related to metabolic alterations in general Chinese pregnant women. , 2017, Journal of chromatography. A.
[32] Karan Uppal,et al. xMSannotator: An R Package for Network-Based Annotation of High-Resolution Metabolomics Data. , 2017, Analytical chemistry.
[33] X. Le,et al. Comparative cytotoxicity of fourteen trivalent and pentavalent arsenic species determined using real-time cell sensing. , 2016, Journal of environmental sciences.
[34] N. Longo,et al. Carnitine transport and fatty acid oxidation. , 2016, Biochimica et biophysica acta.
[35] O. Ilkayeva,et al. From the Cover: Arsenite Uncouples Mitochondrial Respiration and Induces a Warburg-like Effect in Caenorhabditis elegans. , 2016, Toxicological sciences : an official journal of the Society of Toxicology.
[36] C. Prakash,et al. Mitochondrial oxidative stress and dysfunction in arsenic neurotoxicity: A review , 2016, Journal of applied toxicology : JAT.
[37] M. Brosnan,et al. Division of labour: how does folate metabolism partition between one-carbon metabolism and amino acid oxidation? , 2015, The Biochemical journal.
[38] R. Deberardinis,et al. Oxidative stress inhibits distant metastasis by human melanoma cells , 2015, Nature.
[39] F. Parvez,et al. Folic Acid and Creatine as Therapeutic Approaches to Lower Blood Arsenic: A Randomized Controlled Trial , 2015, Environmental health perspectives.
[40] M. Mendez,et al. Metabolomic characteristics of arsenic-associated diabetes in a prospective cohort in Chihuahua, Mexico. , 2015, Toxicological sciences : an official journal of the Society of Toxicology.
[41] E. Guallar,et al. Arsenic exposure, hyperuricemia, and gout in US adults. , 2015, Environment international.
[42] A. Zepeda,et al. Neurological effects of inorganic arsenic exposure: altered cysteine/glutamate transport, NMDA expression and spatial memory impairment , 2015, Front. Cell. Neurosci..
[43] Abdullah Al Mamun,et al. Elevated levels of plasma uric acid and its relation to hypertension in arsenic-endemic human individuals in Bangladesh. , 2014, Toxicology and applied pharmacology.
[44] Tianwei Yu,et al. Improving peak detection in high-resolution LC/MS metabolomics data using preexisting knowledge and machine learning approach , 2014, Bioinform..
[45] Heqing Shen,et al. Urinary Metabolomics Revealed Arsenic Internal Dose-Related Metabolic Alterations: A Proof-of-Concept Study in a Chinese Male Cohort , 2014, Environmental science & technology.
[46] P. Landrigan,et al. The developmental neurotoxicity of arsenic: cognitive and behavioral consequences of early life exposure. , 2014, Annals of global health.
[47] T. Shlomi,et al. Quantitative flux analysis reveals folate-dependent NADPH production , 2014, Nature.
[48] M. Hulver,et al. The pivotal role of pyruvate dehydrogenase kinases in metabolic flexibility , 2014, Nutrition & Metabolism.
[49] Shuzhao Li,et al. Predicting Network Activity from High Throughput Metabolomics , 2013, PLoS Comput. Biol..
[50] Dean P. Jones,et al. Hybrid feature detection and information accumulation using high-resolution LC-MS metabolomics data. , 2013, Journal of proteome research.
[51] Dean P. Jones,et al. High-performance metabolic profiling with dual chromatography-Fourier-transform mass spectrometry (DC-FTMS) for study of the exposome , 2013, Metabolomics.
[52] Tianwei Yu,et al. xMSanalyzer: automated pipeline for improved feature detection and downstream analysis of large-scale, non-targeted metabolomics data , 2013, BMC Bioinformatics.
[53] B. D. Beck,et al. Arsenic exposure and toxicology: a historical perspective. , 2011, Toxicological sciences : an official journal of the Society of Toxicology.
[54] E. Tokar,et al. Arsenic, stem cells, and the developmental basis of adult cancer. , 2011, Toxicological sciences : an official journal of the Society of Toxicology.
[55] M. Valko,et al. Arsenic: toxicity, oxidative stress and human disease , 2011, Journal of applied toxicology : JAT.
[56] Tianwei Yu,et al. A practical approach to detect unique metabolic patterns for personalized medicine. , 2010, The Analyst.
[57] Dean P. Jones,et al. apLCMS - adaptive processing of high-resolution LC/MS data , 2009, Bioinform..
[58] S. Bagchi. Arsenic threat reaching global dimensions , 2007, Canadian Medical Association Journal.
[59] F. Parvez,et al. Folic acid supplementation lowers blood arsenic. , 2007, The American journal of clinical nutrition.
[60] F. Parvez,et al. Health Effects of Arsenic Longitudinal Study (HEALS): Description of a multidisciplinary epidemiologic investigation , 2006, Journal of Exposure Science and Environmental Epidemiology.
[61] D. E. Carter,et al. Monomethylarsonous acid (MMA(III)) is more toxic than arsenite in Chang human hepatocytes. , 2000, Toxicology and applied pharmacology.
[62] C. Ríos,et al. Effects of lead-arsenic combined exposure on central monoaminergic systems. , 1997, Neurotoxicology and teratology.
[63] B. Fowler,et al. Effects of arsenic on pyruvate dehydrogenase activation. , 1977, Environmental health perspectives.
[64] M. Lanaspa,et al. Uric Acid as a Cause of the Metabolic Syndrome. , 2018, Contributions to nephrology.
[65] K. R. Stewart,et al. Arsenic extraction and speciation in carrots using accelerated solvent extraction, liquid chromatography and plasma mass spectrometry. , 2001, The Analyst.
[66] A. Smith,et al. Contamination of drinking-water by arsenic in Bangladesh: a public health emergency. , 2000, Bulletin of the World Health Organization.
[67] T. Nagaraja,et al. Regional alterations in the levels of brain biogenic amines, glutamate, GABA, and GAD activity due to chronic consumption of inorganic arsenic in developing and adult rats , 1993, Bulletin of environmental contamination and toxicology.
[68] H. Roels,et al. Comparison of the urinary excretion of arsenic metabolites after a single oral dose of sodium arsenite, monomethylarsonate, or dimethylarsinate in man , 1981, International archives of occupational and environmental health.
[69] Shuzhao Li,et al. Computational Metabolomics: A Framework for the Million Metabolome , 2022 .