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36143 Fluka

Malathion

PESTANAL®, analytical standard

  • CAS Number 121-75-5

  • Empirical Formula (Hill Notation) C10H19O6PS2

  • Molecular Weight 330.36

  •  Beilstein Registry Number 1804525

  •  EC Number 204-497-7

  •  MDL number MFCD00036233

  •  PubChem Substance ID 24862222

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References

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Distribution, transport, and fate of the insecticides malathion and parathion in the environment. Mulla MS, Mian LS, and Kawecki JA Residue Rev. 81, 1-172, (1981)

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Biological and environmental impacts of the insecticides malathion and parathion on nontarget biota in aquatic ecosystems. Mulla MS and Mian LS Residue Rev. 78, 100-35, (1981)

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Intense nocturnal itching should raise suspicion of scabies. Tidman AS and Tidman MJ Practitioner 257(1761), 23-7, 2, (2013)

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Digestive enzyme as benchmark for insecticide resistance development in Culex pipiens larvae to chemical and bacteriologic insecticides. Kamel NH, Bahgat IM, and El Kady GA J. Egypt. Soc. Parasitol. 43(1), 245-58, (2013)

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[Studying kinetics of oxime-induced reactivation of malathion-inhibited cholinesterase]. Iudin MA, Lantukhov DV, and Vengerovich NG Eksp. Klin. Farmakol. 76(1), 21-4, (2013)

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[Protective effects of metaprot and ethomerzol in carbophos intoxications]. Vorob'eva VV, Zarubina IV, and Shabanov PD Eksp. Klin. Farmakol. 75(8), 25-30, (2012)

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Pyrethroid, DDT and malathion resistance in the malaria vector Anopheles gambiae from the Democratic Republic of Congo. Basilua Kanza JP, El Fahime E, Alaoui S, et al. Trans. R. Soc. Trop. Med. Hyg. 107(1), 8-14, (2013)

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Spectrophotometric determination of drugs with iodine. Karuna T, et al. J. Sci. Ind. Res. 65(10), 808, (2006)

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Potential uses of biomonitoring data: a case study using the organophosphorus pesticides chlorpyrifos and malathion. Barr DB and Angerer J Environ. Health Perspect. 114(11), 1763-9, (2006)

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Acetylcholinesterase based biosensor for monitoring of Malathion and Acephate in food samples: a voltammetric study. Raghu P, Madhusudana Reddy T, Reddaiah K, et al. Food Chem. 142, 188-96, (2014)

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Cheminformatics analysis of assertions mined from literature that describe drug-induced liver injury in different species. Denis Fourches et al Chem. Res. Toxicol. 23, 171-83, (2010)

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Microbial degradation of an organophosphate pesticide, malathion. Singh B, Kaur J, and Singh K Crit. Rev. Microbiol 40(2), 146-54, (2014)

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Intermediate syndrome after malathion ingestion despite continuous infusion of pralidoxime. Sudakin DL, Mullins ME, Horowitz BZ, et al. J. Toxicol. Clin. Toxicol. 38(1), 47-50, (2000)

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Biochemical and molecular characterisation of acetylcholinesterase in four field populations of Bactrocera dorsalis (Hendel) (Diptera: Tephritidae). Shen GM, Wang XN, Dou W, et al. Pest Manag. Sci. 68(12), 1553-63, (2012)

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Lethal and sublethal effects of three insecticides on two developmental stages of Xenopus laevis and comparison with other amphibians. Yu S, Wages MR, Cai Q, et al. Environ. Toxicol. Chem. 32(9), 2056-64, (2013)

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Assay of picogram level isocarbophos residue on tangerines and oranges with luminol-albumin chemiluminescence system. Chen D, Song Z, and Lv H Food Chem. 135(4), 2549-53, (2012)

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Genetic toxicity of malathion: a review. Flessel P, Quintana PJ, and Hooper K Environ. Mol. Mutagen. 22(1), 7-17, (1993)

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Enantioselective behavior of malathion enantiomers in toxicity to beneficial organisms and their dissipation in vegetables and crops. Sun M, Liu D, Dang Z, et al. J. Hazard. Mater. 237-238, 140-6, (2012)

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Larval exposure to predator cues alters immune function and response to a fungal pathogen in post-metamorphic wood frogs. Groner ML, Buck JC, Gervasi S, et al. Ecol. Appl. 23(6), 1443-54, (2013)

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Acetylcholinesterase immobilized on magnetic beads for pesticides detection: application to olive oil analysis. Ben Oujji N, Bakas I, Istamboulié G, et al. Sensors (Basel.) 12(6), 7893-904, (2012)

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Extensive Ace2 duplication and multiple mutations on Ace1 and Ace2 are related with high level of organophosphates resistance in Aphis gossypii. Shang Q, Pan Y, Fang K, et al. Environ. Toxicol. 29(5), 526-33, (2014)

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Enantioselective analysis and degradation studies of isocarbophos in soils by chiral liquid chromatography-tandem mass spectrometry. Zhang H, Wang X, Zhuang S, et al. J. Agric. Food Chem. 60(41), 10188-95, (2012)

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Neurological deficits induced by malathion, DEET, and permethrin, alone or in combination in adult rats. Abdel-Rahman A, Dechkovskaia AM, Goldstein LB, et al. J. Toxicol. Environ. Health A 67(4), 331-56, (2004)

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Resistance to malathion and deltamethrin in Aedes aegypti (Diptera: Culicidae) from western Venezuela. Alvarez LC, Ponce G, Oviedo M, et al. J. Med. Entomol. 50(5), 1031-9, (2013)

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Cross-tolerance in amphibians: wood frog mortality when exposed to three insecticides with a common mode of action. Hua J, Cothran R, Stoler A, et al. Environ. Toxicol. Chem. 32(4), 932-6, (2013)

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Maternal exposure to the mixture of organophosphorus pesticides induces reproductive dysfunction in the offspring. Yu Y, Yang A, Zhang J, et al. Environ. Toxicol. 28(9), 507-15, (2013)

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Evaluation of DNA damage and cytotoxicity induced by three commonly used organophosphate pesticides individually and in mixture, in rat tissues. Ojha A, Yaduvanshi SK, Pant SC, et al. Environ. Toxicol. 28(10), 543-52, (2013)

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Malathion-induced changes in the haematological profile, the immune response, and the oxidative/antioxidant status of Cyprinus carpio carpio: protective role of propolis. Yonar SM, Ural MŞ, Silici S, et al. Ecotoxicol. Environ. Saf. 102, 202-9, (2014)

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Gene expression analysis in gonads and brain of catfish Clarias batrachus after the exposure of malathion. Prathibha Y, Murugananthkumar R, Rajakumar A, et al. Ecotoxicol. Environ. Saf. 102, 210-9, (2014)

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Probing the chiral separation mechanism and the absolute configuration of malathion, malaoxon and isomalathion enantiomers by chiral high performance liquid chromatography coupled with chiral detector-binding energy computations. Zhang A, Lai W, Sun J, et al. J. Chromatogr. A 1281, 26-31, (2013)

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Establishment and characterization of permanent cell line from gill tissue of Labeo rohita (Hamilton) and its application in gene expression and toxicology. Abdul Majeed S, Nambi KS, Taju G, et al. Cell Biol. Toxicol. 29(1), 59-73, (2013)

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Environmentally relevant concentrations of a common insecticide increase predation risk in a freshwater gastropod. Salice CJ and Kimberly DA Ecotoxicology 22(1), 42-9, (2013)

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Evaluation of in vitro absorption, decontamination and desorption of organophosphorous compounds from skin and synthetic membranes. Mircioiu C, Voicu VA, Ionescu M, et al. Toxicol. Lett. 219(2), 99-106, (2013)

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Absorption and excretion of organophosphorous insecticide biomarkers of malathion in the rat: implications for overestimation bias and exposure misclassification from environmental biomonitoring. Chen L, Zhao T, Pan C, et al. Regul Toxicol Pharmacol 65(3), 287-93, (2013)

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New insights into parental effects and toxicity: mate availability and diet in the parental environment affect offspring responses to contaminants. Plautz SC, Funkhouser MA, and Salice CJ Environ. Pollut. 180, 41-7, (2013)

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Strain specific differences in intraspecific competition in Aedes albopictus (Diptera: Culicidae). Kesavaraju B, Afify A, and Gaugler R J. Med. Entomol. 49(5), 988-92, (2012)

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Lack of direct effects of agrochemicals on zoonotic pathogens and fecal indicator bacteria. Staley ZR, Senkbeil JK, Rohr JR, et al. Appl. Environ. Microbiol. 78(22), 8146-50, (2012)

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Mitigation of malathion's acute toxicity by four submersed macrophyte species. Brogan WR and Relyea RA Environ. Toxicol. Chem. 32(7), 1535-43, (2013)

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Effects of individual and binary-combined commercial insecticides endosulfan, temephos, malathion and pirimiphos-methyl on biomarker responses in earthworm Eisenia andrei. Stepić S, Hackenberger BK, Velki M, et al. Environ. Toxicol. Pharmacol. 36(2), 715-23, (2013)

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Malathion exposure induces the endocrine disruption and growth retardation in the catfish, Clarias batrachus (Linn.). Lal B, Sarang MK, and Kumar P Gen. Comp. Endocrinol. 181, 139-45, (2013)

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Sublethal contaminant exposure alters behavior in a common insect: important implications for trophic transfer. Neuman-Lee LA, Hopkins GR, Brodie ED, et al. J. Environ. Sci. Health B 48(6), 442-8, (2013)

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Oxidative stress in freshwater fish, Labeo rohita as a biomarker of malathion exposure. Patil VK and David M Environ. Monit. Assess. 185(12), 10191-9, (2013)

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Effects of sulforophane and curcumin on oxidative stress created by acute malathion toxicity in rats. Alp H, Aytekin I, Hatipoglu NK, et al. Eur. Rev. Med. Pharmacol. Sci. 16 Suppl 3, 144-8, (2012)

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Toxic effects of malathion in carp, Cyprinus carpio carpio: protective role of lycopene. Yonar SM Ecotoxicol. Environ. Saf. 97, 223-9, (2013)

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Oxidative stress and cholinesterase inhibition in plasma, erythrocyte and brain of rats' pups following lactational exposure to malathion. Selmi S, El-Fazaa S, and Gharbi N Environ. Toxicol. Pharmacol. 34(3), 753-60, (2012)

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Determination of water sources contamination to diazinon and malathion and spatial pollution patterns in Qazvin, Iran. Karyab H, Mahvi AH, Nazmara S, et al. Bull. Environ. Contam. Toxicol. 90(1), 126-31, (2013)

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Investigations of kinetic interactions between lipid emulsions, hydroxyethyl starch or dextran and organophosphorus compounds. Von Der Wellen J, Worek F, Thiermann H, et al. Clin. Toxicol. (Phila.) 51(10), 918-22, (2013)

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Droplet size characterization of three aerial malathion spray programs. Younglove T and McCool PM Bull. Environ. Contam. Toxicol. 53(4), 493-500, (1994)

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Malathion for head lice and scabies: treatment and safety considerations. Idriss S and Levitt J Journal. of. Drugs in. Dermatology. 8(8), 715-20, (2009)

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Toxicity hazard of organophosphate insecticide malathion identified by in vitro methods. Jira D, Janousek S, Pikula J, et al. Neuro Endocrinol. Lett. 33 Suppl 3, 53-9, (2012)

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Efficacy of three insecticides against Anopheles dirus and Anopheles minimus, the major malaria vectors, in Kanchanaburi Province, Thailand. Pemo D, Komalamisra N, Sungvornyothin S, et al. Southeast Asian J. Trop. Med. Public Health 43(6), 1339-45, (2012)

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