Acide hypochloreux (French Wikipedia)

Analysis of information sources in references of the Wikipedia article "Acide hypochloreux" in French language version.

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1,735th place
168th place

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  • (en) PC Unangst, "Hypochlorous Acid" in Encyclopedia of Reagents for Organic Synthesis, New York, (L. Paquette), J. Wiley & Sons, (DOI 10.1002/047084289).
  • (en) JM Albrich, CA McCarthy et JK Hurst, « Biological reactivity of hypochlorous acid: implications for microbicidal mechanisms of leukocyte myeloperoxidase. », Proceedings of the National Academy of Sciences, vol. 78, no 1,‎ , p. 210-214 (PMID 6264434, PMCID 319021, DOI 10.1073/pnas.78.1.210.).
  • (en) WA Prütz, « Interactions of hypochlorous acid with pyrimidine nucleotides, and secondary reactions of chlorinated pyrimidines with GSH, NADH, and other substrates. », Archives of biochemistry and biophysics, vol. 349, no 1,‎ , p. 183-191 (PMID 9439597, DOI 10.1006/abbi.1997.0440.).
  • J Arnhold, OM Panasenko, J Schiller, YuA Vladimirov et K Arnold, « The action of hypochlorous acid on phosphatidylcholine liposomes in dependence on the content of double bonds. Stoichiometry and NMR analysis. », Chemistry and physics of lipids, vol. 78, no 1,‎ , p. 55–64 (PMID 8521532, DOI 10.1016/0009-3084(95)02484-Z).
  • (en) CC Winterbourn, « Comparative reactivities of various biological compounds with myeloperoxidase-hydrogen peroxide-chloride, and similarity of the oxidant to hypochlorite. », Biochimica et Biophysica Acta, vol. 840, no 2,‎ , p. 204–210 (PMID 2986713, DOI 10.1016/0304-4165(85)90120-5).
  • (en) WC Barrette Jr, DM Hannum, WD Wheeler et JK Hurst, « General mechanism for the bacterial toxicity of hypochlorous acid : abolition of ATP production. », Biochemistry, vol. 28, no 23,‎ , p. 9172–9178 (PMID 2557918, DOI 10.1021/bi00449a032).
  • (en) J Jacangelo, V Olivieri et K Kawata, « Oxidation of sulfhydryl groups by monochloramine. », Water Research, vol. 21, no 11,‎ , p. 1339 (DOI 10.1016/0043-1354(87)90007-8).
  • (en) SL Hazen, A d'Avignon, MM Anderson, FF Hsu et JW Heinecke, « Human neutrophils employ the myeloperoxidase-hydrogen peroxide-chloride system to oxidize alpha-amino acids to a family of reactive aldehydes. Mechanistic studies identifying labile intermediates along the reaction pathway. », Journal of Biological Chemistry, vol. 273, no 9,‎ (PMID 9478947, DOI 10.1074/jbc.273.9.4997).
  • (en) WA Prütz, « Hypochlorous acid interactions with thiols, nucleotides, DNA, and other biological substrates », Archives of biochemistry and biophysics, vol. 332, no 1,‎ , p. 110–120 (PMID 8806715, DOI 10.1006/abbi.1996.0322).
  • (en) RM Rakita, BR Michel et H Rosen, « Differential inactivation of Escherichia coli membrane dehydrogenases by a myeloperoxidase-mediated antimicrobial system. », Biochemistry, vol. 29, no 4,‎ , p. 1075–1080 (PMID 1692736, DOI 10.1021/bi00456a033).
  • (en) RM Rakita, BR Michel et H Rosen, « Myeloperoxidase-mediated inhibition of microbial respiration: damage to Escherichia coli ubiquinol oxidase. », Biochemistry, vol. 28, no 7,‎ , p. 3031–6 (PMID 2545243, DOI 10.1021/bi00433a044).
  • (en) JC Morris, « The acid ionization constant of HClO from 5 to 35° », Journal of Physical Chemistry, vol. 70, no 12,‎ , p. 3798–3805 (DOI 10.1021/j100884a007).
  • (en) GA McFeters et AK Camper, « Enumeration of indicator bacteria exposed to chlorine », Advances in applied microbiology, vol. 29,‎ , p. 177–193 (ISBN 978-0-12-002629-6, PMID 6650262, DOI 10.1016/S0065-2164(08)70357-5).
  • (en) C Venkobachar, L Iyengar et A Prabhakararao, « Mechanism of disinfection. », Water Research, vol. 9, no 1,‎ , p. 119-124 (DOI 10.1016/0043-1354(75)90160-8).
  • (en) JK Hurst, WC Barrette Jr, BR Michel et H Rosen, « Hypochlorous acid and myeloperoxidase-catalyzed oxidation of iron-sulfur clusters in bacterial respiratory dehydrogenases. », European journal of biochemistry / FEBS, vol. 202, no 3,‎ , p. 1275–1282 (PMID 1662610, DOI 10.1111/j.1432-1033.1991.tb16500.x).
  • (en) H Rosen, J Orman, RM Rakita, BR Michel et DR Vandevanter, « Loss of DNA-membrane interactions and cessation of DNA synthesis in myeloperoxidase-treated Escherichia coli. », Proceedings of the National Academy of Sciences of the United States of America, vol. 87, no 24,‎ , p. 10048–10052 (PMID 2175901, PMCID 55312, DOI 10.1073/pnas.87.24.10048).
  • (en) J Winter, M Ilbert, PCF Graf, D Özcelik et U Jakob, « Bleach Activates a Redox-Regulated Chaperone by Oxidative Protein Unfolding. », Cell, vol. 135, no 4,‎ , p. 691–701 (PMID 19013278, PMCID 2606091, DOI 10.1016/j.cell.2008.09.024).

nih.gov

ncbi.nlm.nih.gov

  • (en) JE Harrison et J Schultz, « Studies on the chlorinating activity of myeloperoxidase. », The Journal of Biological Chemistry, vol. 251, no 5,‎ , p. 1371-1374 (PMID 176150).
  • (en) EL Thomas, « Myeloperoxidase, hydrogen peroxide, chloride antimicrobial system: nitrogen-chlorine derivatives of bacterial components in bactericidal action against Escherichia coli. », Infection and Immunity, vol. 23, no 2,‎ , p. 522-531 (PMID 217834, PMCID 414195).
  • (en) JM Albrich, CA McCarthy et JK Hurst, « Biological reactivity of hypochlorous acid: implications for microbicidal mechanisms of leukocyte myeloperoxidase. », Proceedings of the National Academy of Sciences, vol. 78, no 1,‎ , p. 210-214 (PMID 6264434, PMCID 319021, DOI 10.1073/pnas.78.1.210.).
  • (en) WA Prütz, « Interactions of hypochlorous acid with pyrimidine nucleotides, and secondary reactions of chlorinated pyrimidines with GSH, NADH, and other substrates. », Archives of biochemistry and biophysics, vol. 349, no 1,‎ , p. 183-191 (PMID 9439597, DOI 10.1006/abbi.1997.0440.).
  • (en) LJ Hazell, JVD Berg et R Stocker, « Oxidation of low density lipoprotein by hypochlorite causes aggregation that is mediated by modification of lysine residues rather than lipid oxidation. », Biochemistry Journal, vol. 302,‎ , p. 297-304 (PMID 8068018, PMCID 1137223).
  • J Arnhold, OM Panasenko, J Schiller, YuA Vladimirov et K Arnold, « The action of hypochlorous acid on phosphatidylcholine liposomes in dependence on the content of double bonds. Stoichiometry and NMR analysis. », Chemistry and physics of lipids, vol. 78, no 1,‎ , p. 55–64 (PMID 8521532, DOI 10.1016/0009-3084(95)02484-Z).
  • (en) WE Knox, PK Stumpf, DE Green et VH Auerbach, « The Inhibition of Sulfhydryl Enzymes as the Basis of the Bactericidal Action of Chlorine. », Journal of bacteriology, vol. 55, no 4,‎ , p. 451-458 (PMID 16561477, PMCID 518466).
  • (en) CC Winterbourn, « Comparative reactivities of various biological compounds with myeloperoxidase-hydrogen peroxide-chloride, and similarity of the oxidant to hypochlorite. », Biochimica et Biophysica Acta, vol. 840, no 2,‎ , p. 204–210 (PMID 2986713, DOI 10.1016/0304-4165(85)90120-5).
  • (en) WC Barrette Jr, DM Hannum, WD Wheeler et JK Hurst, « General mechanism for the bacterial toxicity of hypochlorous acid : abolition of ATP production. », Biochemistry, vol. 28, no 23,‎ , p. 9172–9178 (PMID 2557918, DOI 10.1021/bi00449a032).
  • (en) SM McKenna et KJ Davies, « The inhibition of bacterial growth by hypochlorous acid. Possible role in the bactericidal activity of phagocytes. », The Biochemical journal, vol. 254, no 3,‎ , p. 685–692 (PMID 2848494, PMCID 1135139).
  • (en) SL Hazen, A d'Avignon, MM Anderson, FF Hsu et JW Heinecke, « Human neutrophils employ the myeloperoxidase-hydrogen peroxide-chloride system to oxidize alpha-amino acids to a family of reactive aldehydes. Mechanistic studies identifying labile intermediates along the reaction pathway. », Journal of Biological Chemistry, vol. 273, no 9,‎ (PMID 9478947, DOI 10.1074/jbc.273.9.4997).
  • (en) WA Prütz, « Hypochlorous acid interactions with thiols, nucleotides, DNA, and other biological substrates », Archives of biochemistry and biophysics, vol. 332, no 1,‎ , p. 110–120 (PMID 8806715, DOI 10.1006/abbi.1996.0322).
  • (en) RM Rakita, BR Michel et H Rosen, « Differential inactivation of Escherichia coli membrane dehydrogenases by a myeloperoxidase-mediated antimicrobial system. », Biochemistry, vol. 29, no 4,‎ , p. 1075–1080 (PMID 1692736, DOI 10.1021/bi00456a033).
  • (en) RM Rakita, BR Michel et H Rosen, « Myeloperoxidase-mediated inhibition of microbial respiration: damage to Escherichia coli ubiquinol oxidase. », Biochemistry, vol. 28, no 7,‎ , p. 3031–6 (PMID 2545243, DOI 10.1021/bi00433a044).
  • (en) H Rosen et SJ Klebanoff, « Oxidation of microbial iron-sulfur centers by the myeloperoxidase-H2O2-halide antimicrobial system. », Infection and Immunity, vol. 47, no 3,‎ , p. 613–618 (PMID 2982737, PMCID 261335).
  • (en) H Rosen, RM Rakita, AM Waltersdorph et SJ Klebanoff, « Myeloperoxidase-mediated damage to the succinate oxidase system of Escherichia coli. Evidence for selective inactivation of the dehydrogenase component. », Journal of Biological Chemistry, vol. 262, no 31,‎ , p. 15004–15010 (PMID 2822709).
  • JA Chesney, JW Eaton et JR Mahoney Jr, « Bacterial glutathione: a sacrificial defense against chlorine compounds », Journal of bacteriology, vol. 178, no 7,‎ , p. 2131–2135 (PMID 8606194, PMCID 177915).
  • (en) GA McFeters et AK Camper, « Enumeration of indicator bacteria exposed to chlorine », Advances in applied microbiology, vol. 29,‎ , p. 177–193 (ISBN 978-0-12-002629-6, PMID 6650262, DOI 10.1016/S0065-2164(08)70357-5).
  • (en) WC Barrette Jr, JM Albrich et JK Hurst, « Hypochlorous acid-promoted loss of metabolic energy in Escherichia coli », Infection and immunity, vol. 55, no 10,‎ , p. 2518–2525 (PMID 2820883, PMCID 260739).
  • AK Camper et GA McFeters, « Chlorine injury and the enumeration of waterborne coliform bacteria. », Applied and environmental microbiology, vol. 37, no 3,‎ , p. 633–641 (PMID 378130, PMCID 243267).
  • (en) JK Hurst, WC Barrette Jr, BR Michel et H Rosen, « Hypochlorous acid and myeloperoxidase-catalyzed oxidation of iron-sulfur clusters in bacterial respiratory dehydrogenases. », European journal of biochemistry / FEBS, vol. 202, no 3,‎ , p. 1275–1282 (PMID 1662610, DOI 10.1111/j.1432-1033.1991.tb16500.x).
  • (en) H Rosen, J Orman, RM Rakita, BR Michel et DR Vandevanter, « Loss of DNA-membrane interactions and cessation of DNA synthesis in myeloperoxidase-treated Escherichia coli. », Proceedings of the National Academy of Sciences of the United States of America, vol. 87, no 24,‎ , p. 10048–10052 (PMID 2175901, PMCID 55312, DOI 10.1073/pnas.87.24.10048).
  • (en) H Rosen, BR Michel, DR Vandevanter et JP Hughes, « Differential effects of myeloperoxidase-derived oxidants on Escherichia coli DNA replication. », Infection and immunity, vol. 66, no 6,‎ , p. 2655–2659 (PMID 9596730, PMCID 108252).
  • (en) J Winter, M Ilbert, PCF Graf, D Özcelik et U Jakob, « Bleach Activates a Redox-Regulated Chaperone by Oxidative Protein Unfolding. », Cell, vol. 135, no 4,‎ , p. 691–701 (PMID 19013278, PMCID 2606091, DOI 10.1016/j.cell.2008.09.024).

qmul.ac.uk

chem.qmul.ac.uk