Min Feng, Jill E. Schrlau, Raymond Snyder, George H. Snyder, Ming Chen, John L. Cisar et Yong Ca, Arsenic Transport and Transformation Associated with MSMA Application on a Golf Course Green [PDF], J. Agric. Food Chem., 2005, 53 (9), p. 3556–3562, DOI10.1021/jf047908j (Résumé).
actu-environnement.com
: métaux et métalloïde des recherches de la cohorte Elfe ; décembre 2016 ; SANTÉ PUBLIQUE France / Imprégnation des femmes enceintes par les polluants de l’environnement en France en 2011. Volet périnatal du programme national de biosurveillance|PDF, 224p|Aussi disponible à partir de l’URL : www.santepubliquefrance.fr
Rochette, E.A. 1998. Stability of arsenate minerals in soil under biotically generated reducing conditions. Soil Sci. Soc. Am. J. (Home » Publications » Soil Science Society of America Journal) 62:1530–1537 (Résumé).
(en) Robert Jacobus Forbes, Studies in Ancient Technology : Metallurgy in Antiquity : Copper and Bronze, Tin, Arsenic, Antimony and Iron (Vol 9), Leiden, Brill Academic Pub, , 321 p. (ISBN978-90-04-03487-7, BNF37673394)
books.google.com
(en) Suzanne Bell, Barry A. J. Fisher et Robert C. Shaler, Encyclopedia of Forensic Science, Infobase Publishing, (lire en ligne), p. 219
« Arsenic » dans la base de données de produits chimiques Reptox de la CSST (organisme québécois responsable de la sécurité et de la santé au travail), consulté le 25 avril 2009
Voir les fiches toxicologiques sur les sites de l’INRS et sur le site de REPTOX(Québec).
dguv.de
gestis.dguv.de
Entrée « Arsenic » dans la base de données de produits chimiques GESTIS de la IFA (organisme allemand responsable de la sécurité et de la santé au travail) (allemand, anglais), accès le 22 août 2018 (JavaScript nécessaire)
(en) Beatriz Cordero, Verónica Gómez, Ana E. Platero-Prats, Marc Revés, Jorge Echeverría, Eduard Cremades, Flavia Barragán et Santiago Alvarez, « Covalent radii revisited », Dalton Transactions, , p. 2832 - 2838 (DOI10.1039/b801115j)
(en) N. A. Gokcen, « The As (arsenic) system », Bulletin of Alloy Phase Diagrams, vol. 10, , p. 11–22 (DOI10.1007/BF02882166, lire en ligne [PDF]).
Hugues de Thé, « Differentiation Therapy Revisited », Nature Reviews Cancer, 18, no 2 (1er décembre 2017), 117‑27, DOI10.1038/nrc.2017.103.
(en) Heather Lechtman, « Arsenic Bronze : Dirty Copper or Chosen Alloy ? A View from the Americas », Journal of Field Archaeology, vol. 23, no 4, , p. 477 (DOI10.2307/530550)
Andrew A. Meharg, Jeanette Hartley-Whitaker (2002), Arsenic uptake and metabolism in arsenic resistant and nonresistant plant species ; en ligne le 4 avril 2002, DOI10.1046/j.1469-8137.2002.00363.x, Issue New Phytologist, vol. 154, no 1, p. 29-43, avril 2002 (résumé).
(en) Amini, M. ; Mueller, K. ; Abbaspour, K.C. ; Rosenberg, T. ; Afyuni, M. ; Møller, M. ; Sarr, M. et Johnson, C.A., « Statistical modeling of global geogenic fluoride contamination in groundwaters », Environmental Science and Technology, 42(10), 3662-3668, (DOI10.1021/es071958y).
(en) Amini, M. ; Abbaspour, K.C. ; Berg, M. ; Winkel, L. ; Hug, S.J. ; Hoehn, E. ; Yang, H. et Johnson, C.A., « Statistical modeling of global geogenic arsenic contamination in groundwater », Environmental Science and Technology 42 (10), 3669-3675, (DOI10.1021/es702859e).
(en) Winkel, L. ; Berg, M. ; Amini, M. ; Hug, S.J. et Johnson, C.A., « Predicting groundwater arsenic contamination in Southeast Asia from surface parameters », Nature Geoscience, 1, 536–542 (2008), (DOI10.1038/ngeo254)
(en) Rodríguez-Lado, L. ; Sun, G. ; Berg, M. ; Zhang, Q. ; Xue, H. ; Zheng, Q. et Johnson, C.A., « Groundwater arsenic contamination throughout China », Science, 341(6148), 866-868, (DOI10.1126/science.1237484)
Min Feng, Jill E. Schrlau, Raymond Snyder, George H. Snyder, Ming Chen, John L. Cisar et Yong Ca, Arsenic Transport and Transformation Associated with MSMA Application on a Golf Course Green [PDF], J. Agric. Food Chem., 2005, 53 (9), p. 3556–3562, DOI10.1021/jf047908j (Résumé).
Junru Wang, Fang-Jie Zhao, Andrew A. Meharg, Andrea Raab, Joerg Feldmann et Steve P. McGrath, Mechanisms of Arsenic Hyperaccumulation in Pteris vittata. Uptake Kinetics, Interactions with Phosphate, and Arsenic Speciation ; Plant Physiology, novembre 2002, vol. 130, no 3, 1552-1561, en ligne, octobre 2002, DOI10.1104/pp.008185 ((en) Résumé).
Castillo-Michel H, Hernandez-Viezcas J, Dokken KM, Marcus MA, Peralta-Videa JR, Gardea-Torresdey JL (2011), Localization and speciation of arsenic in soil and desert plant Parkinsonia florida using μXRF and μXANES ; Environ Sci Technol. 2011 Sep 15;45(18):7848-54. DOI10.1021/es200632s. Epub 2011 Aug 26. (résumé).
Marin, A.R. (1992), The influence of chemical form and concentration of arsenic on rice growth and tissue arsenic concentration, Plant Soil, 139:175–183, DOI10.1007/BF00009308.
Carbonell-Barrachina, A.A. (1997), The influence of arsenite concentration on arsenic accumulation in tomato and bean plants, Sci. Hortic., 71, 167–176, DOI10.1016/S0304-4238(97)00114-3.
C. Leyval, K. Turnau et K. Haselwandter (1997) Effect of heavy metal pollution on mycorrhizal colonization and function: physiological, ecological and applied aspects ; Biomedical and Life Sciences Mycorrhiza Volume 7, Number 3, 139-153, DOI10.1007/s005720050174 (Résumé).
Y. Liu, Y. G. Zhu, B. D. Chen, P. Christie et X. L. Li (2005), Original Paper Influence of the arbuscular mycorrhizal fungus Glomus mosseae on uptake of arsenate by the As hyperaccumulator fern Pteris vittata L., Biomedical and Life Sciences Mycorrhiza, vol. 15, no 3, 187-192, DOI10.1007/s00572-004-0320-7 (Résumé).
Vishnu Priya Gadepalle, Sabeha K. Ouki, René Van Herwijnen et Tony Hutchings ; Effects of amended compost on mobility and uptake of arsenic by rye grass in contaminated soil ; Chemosphere ; Volume 72, no 7, July 2008, p. 1056-1061, DOI10.1016/j.chemosphere.2008.03.048 ((en) résumé).
G. W. Yeates, V. A. Orchard, T. W. Speir, J. L. Hunt and M. C. C. Hermans, Impact of pasture contamination by copper, chromium, arsenic timber preservative on soil biological activity ; Biology and Fertility of Soils, vol. 18, no 3, 200-208, 1984, DOI10.1007/BF00647667 (Résumé).
Kawalek J.C. et al., Final Report on Study 275.30. Provide Data on Various Arsenic Species Present in Broilers Treated with Roxarsone: Comparison with Untreated Birds, Laurel, Rockville, and College Park, MD:Center for Veterinary Medicine/Office of Regulatory Science, U.S. Food and Drug Administration, 10 février 2011, lire en ligne (consulté le 7 juin 2012).
Sheppard, S.C. (1992), Summary of phytotoxic levels of soil, Water Air Soil Pollut., vol. 64, no 3-4, p. 539-550 ; septembre 1992 (ISSN0049-6979) (Résumé, sur Web of science).
gateway.isiknowledge.com
Jiang, Q.Q. 1994. Effect of different forms and sources of arsenic on crop yield and arsenic concentration. Water Air Soil Pollut. 74:321–343. (Résumé).
issn.org
portal.issn.org
Sheppard, S.C. (1992), Summary of phytotoxic levels of soil, Water Air Soil Pollut., vol. 64, no 3-4, p. 539-550 ; septembre 1992 (ISSN0049-6979) (Résumé, sur Web of science).
Salnikow K. et Cohen M.D. (2002), Backing into cancer: effects of arsenic on cell differentiation, Toxicol. Sci., fév 2002, 65(2):161-3 (résumé).
Yu HS, Liao WT, Chai CY (2006), Arsenic carcinogenesis in the skin ; J Biomed Sci. sept 2006 ; 13(5):657-66. Epub 2006 Jun 29 (résumé).
Davey J.C., Bodwell J.E., Gosse J.A. et Hamilton J.W., Arsenic as an endocrine disruptor: effects of arsenic on estrogen receptor-mediated gene expression in vivo and in cell culture, Toxicol. Sci., juillet 2007, 98(1):75-86. Epub 2007-02-05 (résumé).
Davey JC, Nomikos AP, Wungjiranirun M, Sherman JR, Ingram L, Batki C, Lariviere JP et Hamilton JW, Arsenic as an endocrine disruptor: arsenic disrupts retinoic acid receptor-and thyroid hormone receptor-mediated gene regulation and thyroid hormone-mediated amphibian tail metamorphosis, Environ. Health Perspect., février 2008, 116(2):165-72 (résumé).
Bodwell JE, Kingsley LA, Hamilton JW (2004), Arsenic at very low concentrations alters glucocorticoid receptor (GR)-mediated gene activation but not GR-mediated gene repression: complex dose-response effects are closely correlated with levels of activated GR and require a functional GR DNA binding domain. ; Chem Res Toxicol. aout 2004 ; 17(8):1064-76 (résumé).
Cheng H., Hu Y., Luo J., Xu B., Zhao J. J. Hazard Mater (2009), Geochemical processes controlling fate and transport of arsenic in acid mine drainage (AMD) and natural systems ; 15 juin 2009, 165(1-3):13-26. Epub 25 octobre 2008 (résumé).
Larios R., Fernández-Martínez R., Lehecho I. et Rucandio I. (2012), A methodological approach to evaluate arsenic speciation and bioaccumulation in different plant species from two highly polluted mining areas, Sci. Total Environ., 1er janvier 2012, 414:600-7, Epub 10 décembre 2011 (résumé).
Larios R, Fernández-Martínez R, Silva V, Loredo J, Rucandio I (2012), Arsenic contamination and speciation in surrounding waters of three old cinnabar mines. J Environ Monit. 2012 Feb; 14(2):531-42. Epub 2011 Dec 5 (résumé).
Castillo-Michel H, Hernandez-Viezcas J, Dokken KM, Marcus MA, Peralta-Videa JR, Gardea-Torresdey JL (2011), Localization and speciation of arsenic in soil and desert plant Parkinsonia florida using μXRF and μXANES ; Environ Sci Technol. 2011 Sep 15;45(18):7848-54. DOI10.1021/es200632s. Epub 2011 Aug 26. (résumé).
toxnet.nlm.nih.gov
« Arsenic, elemental », sur Hazardous Substances Data Bank (consulté le ).
Pfizer. Communiqué intitulé Pfizer to Suspend Sale of 3-Nitro (Roxarsone) in the United States, Madison, NJ:Pfizer Inc., 8 juin 2011, lire en ligne (consulté le 2012-06-07).
plantphysiol.org
Junru Wang, Fang-Jie Zhao, Andrew A. Meharg, Andrea Raab, Joerg Feldmann et Steve P. McGrath, Mechanisms of Arsenic Hyperaccumulation in Pteris vittata. Uptake Kinetics, Interactions with Phosphate, and Arsenic Speciation ; Plant Physiology, novembre 2002, vol. 130, no 3, 1552-1561, en ligne, octobre 2002, DOI10.1104/pp.008185 ((en) Résumé).
Drobna Z, Jaspers I, Thomas DJ, Styblo M (2003), Differential activation of AP-1 in human bladder epithelial cells by inorganic and methylated arsenicals, The FASEB Journal, 17: 67–69. Lire en ligne.
pseudo-sciences.org
Extraits du décret du 14 septembre 1916 : Journal officiel du 20 septembre 1916, repris sur Pseudo-sciences.org.
sciencedirect.com
M. Ruokolainen, M. Pantsar-Kallio, A. Haapa et T. Kairesalo, Leaching, runoff and speciation of arsenic in a laboratory mesocosm, Science of The Total Environment, vol. 258, no 3, 4 septembre 2000, p. 139-147 (Résumé).
Van Herreweghe, S., Swennen, R., Vandecasteele, C. et Cappuyns, V. (2003), Solid phase speciation of arsenic by sequential extraction in standard reference materials and industrially contaminated soil samples, Environ. Pollut., 122 (3), 323–342. (Résumé).
Aquino A.M. et al. (2019), Arsenic exposure during prepuberty alters prostate maturation in pubescent rats. Reproductive Toxicology, 89, 136-144 (résumé).
Porter, E.K. 1977. Arsenic tolerance in grasses growing on mine waste. Environ. Pollut., 14:255–265 (Résumé).
Vishnu Priya Gadepalle, Sabeha K. Ouki, René Van Herwijnen et Tony Hutchings ; Effects of amended compost on mobility and uptake of arsenic by rye grass in contaminated soil ; Chemosphere ; Volume 72, no 7, July 2008, p. 1056-1061, DOI10.1016/j.chemosphere.2008.03.048 ((en) résumé).
Hayashi, A., Sato, F., Imai, T. et Yoshinaga, J. (2019), Daily intake of total and inorganic arsenic, lead, and aluminum of the Japanese: Duplicate diet study, Journal of Food Composition and Analysis, 77, 77-83 (résumé).
C. Leyval, K. Turnau et K. Haselwandter (1997) Effect of heavy metal pollution on mycorrhizal colonization and function: physiological, ecological and applied aspects ; Biomedical and Life Sciences Mycorrhiza Volume 7, Number 3, 139-153, DOI10.1007/s005720050174 (Résumé).
Y. Liu, Y. G. Zhu, B. D. Chen, P. Christie et X. L. Li (2005), Original Paper Influence of the arbuscular mycorrhizal fungus Glomus mosseae on uptake of arsenate by the As hyperaccumulator fern Pteris vittata L., Biomedical and Life Sciences Mycorrhiza, vol. 15, no 3, 187-192, DOI10.1007/s00572-004-0320-7 (Résumé).
G. W. Yeates, V. A. Orchard, T. W. Speir, J. L. Hunt and M. C. C. Hermans, Impact of pasture contamination by copper, chromium, arsenic timber preservative on soil biological activity ; Biology and Fertility of Soils, vol. 18, no 3, 200-208, 1984, DOI10.1007/BF00647667 (Résumé).
Fisher D.J. et al. (2011), The Environmental Concerns of Arsenic Additives in Poultry Litter: Literature Review. Queenstown, MD:Wye Research and Education Center, , lire en ligne (consulté le 7 juin 2012).
Turpeinen R, Pantsar-Kallio M, Haggblom M, Kairesalo T. 1999. Influence of microbes on the mobilization, toxicity and biomethylation of arsenic in soil. Science of the Total Environment 236: 173–180. (Résumé).
Smith AH, Hopenhayn-Rich C, Bates MN, Goeden HM, Hertz-Picciotto I, Duggan HM, Wood R, Kosnett MJ, Smith MT. 1992. Cancer risk from arsenic in drinking water. Environmental Health Perspectives 103: 13–15. (Résumé).
Ghosh M, Shen J, Rosen BP. 1999. Pathways of As (III) detoxification in Sachharomyces cerevisiae. Proceedings of the National Academy of Sciences, États-Unis 96: 5001–5006 (Résumé).
Clemens S. 2001. Molecular mechanisms of plant metal tolerance and homeostasis, Planta, 212, 475–486 (Résumé)).
Cobbett C.S. (2000), Phytochelatin biosynthesis and function in heavy-metal detoxification, Current Opinion in Plant Biology, 3, 211–216 (Résumé).
Woolson EA, Axley JH, Kearney PC. (1971), The chemistry and phytotoxicity of arsenic in soils. I. Contaminated field soils, Soil Science Society of America Proceedings, 35: 938–943. (Résumé).
Murphy E.A. et Aucott M. (1998), An assessment of the amounts of arsenical pesticides used historically in a geographical area, Science of the Total Environment, 218, 89-101 (Résumé).
Cullen W.R. et Reimer K.J. (1989), Arsenic speciation in the environment, Chemical Review, 89, 713-764 (Résumé).
Andrew A. Meharg, Jeanette Hartley-Whitaker (2002), Arsenic uptake and metabolism in arsenic resistant and nonresistant plant species ; en ligne le 4 avril 2002, DOI10.1046/j.1469-8137.2002.00363.x, Issue New Phytologist, vol. 154, no 1, p. 29-43, avril 2002 (résumé).
De Koe T, Jacques NMM. 1993. Arsenate tolerance in Agrostis castellana and Agrostis delicatula. Plant and Soil 151: 185–191. (Résumé).
Edmonds JS. 2000. Diastereoisomers of an ‘arsenomethionine’-based structure from Sargassum lacerifolium: The formation of the arsenic-carbon bond in arsenic-containing natural products. Bioorganic and Medicinal Chemistry Letters 10: 1105–1108 (Résumé).
Helgesen H. et Larsen E.H. (1998), Bioavailability and speciation of arsenic in carrots grown in contaminated soil, Analyst, 123: 791–796 (Résumé).
C. Gonzalez-Chavez, P. J. Harris, J. Dodd, A. A. Meharg (2002), Arbuscular mycorrhizal fungi confer enhanced arsenate resistance on Holcus lanatus ; New Phytologist ; vol. 155, no 1, p. 163–171, juillet 2002 (Résumé).
Gilmour J, Wells B. 1980. Residual effects of MSMA on sterility in rice cultivars. Agronomy Journal 72: 1066–1067 (Résumé).
Christen K. (2001), The arsenic threat worsens, Environmental Science and Technology, 35: 286A–291A (Résumé).
Berg M, Tran HC, Nguyen TC, Pham HV, Schertenleib R, Giger W. 2001. Arsenic contamination of groundwater and drinking water in Viêt Nam: a human health threat. Environmental Science and Technology 35: 2621–2626 (Résumé).
Christen K. 2001. The arsenic threat worsens. Environmental Science and Technology 35: 286A–291A. (Résumé).