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Developmental study of mercury effects on the fruit fly (Drosophila melanogaster) Cover

Developmental study of mercury effects on the fruit fly (Drosophila melanogaster)

Open Access
|Jul 2013

References

  1. Agnes L, Bundgaard J. (2000). Controlled variation of body size by larval crowding in Drosophila melanogaster.: 171-174.
  2. Alattia JR, Kuraishi T , Dimitrov M, Chang I, Lemaitre B, Fraering PC. (2011). Mercury is a direct and potent γ-secretase inhibitor affecting Notch processing and development in Drosophila.: 2287-2295.
  3. Alexander J, Guojon AA, Benford D, Cockburn A, Cravedi J, Dogliotti E. (2008). Mercury as undesirable substance in animal feed scientific opinion of the panel on contaminants in the food chain.: 1-76.
  4. Al-Momani FA, Massadeh AM. (2005). Effect of different heavy-metal concentrations on Drosophila melanogaster larval growth and development.: 271-277.
  5. Anderson D. (2003). Introduction to heavy metal monitoring., pp. 1-9.
  6. Badre, NH, Martin ME, Cooper RL. (2005). The physiological and behavioral effects of carbon dioxide on Drosophila melanogaster larvae.: 363-376.
  7. Baffet A, Benoit B, Gourhand B, Heichette C, Chretien D, Guichet A. (2009). Mercury (Drosophila Tubulin Binding Cofactor B) controls cell polarity through the stabilisation of the microtubule network.: 144-150.
  8. Balamurugan K, Hua H, Georgiev O, Schaffner W. (2009). Mercury and cadmium trigger expression of the copper importer Ctr1B, which enables Drosophila to thrive on heavy metal-loaded food.:109-113.
  9. Bamise C, Oginni AO, Adedigba MA, Olagundoye O. (2012). Perception of patients with amalgam fillings about toxicity of mercury in dental amalgam.: 289-293.
  10. Bornias-Vardiabasis N, Buzin C, Flores J. (1990). Differential expression of heat shock proteins in Drosophila embryonic cells following metal ion exposures.: 177-182.
  11. Burger J. (2002). Food chain differences affect heavy metals in bird eggs in Barnegat Bay, New Jersey.: 33-39.
  12. Carpi A. (2001). The toxicology of mercury. National Science, Foundation - Vision Learning, New York.
  13. Chan TY. (2011). Inorganic mercury poisoning associated with skin-lightening cosmetic products.: 886-891.
  14. Clarkson TW, Magos L. (2006). The toxicology of mercury and its chemical compounds.: 609-662.
  15. Day DM, Wallman JF. (2006). Width as an alternative measurement to length for postmortem interval estimations using Calliphora augur (Diptera: Calliphoridae) larvae.: 158-167.
  16. Ding L, Wang Y. (2006). Effect of copper on the development of protein and esterase isozymes of Drosophila melanogaster.: 73-77.
  17. Engel GL, Delwig A, Rand MD. (2012). The effects of methylmercury on Notch signaling during embryonic neural development in Drosophila melanogaster.: 485-492.
  18. Flora SJS, Mittal M, Mehta A. (2008). Heavy metal induced oxidative stress & its possible reversal by chelation therapy.: 501-523.
  19. Frasco MF, Colletier JP, Weik M, Carvalho F, Guilhermino L, Stojan J, Fournier D. (2007). Mechanisms of cholinesterase inhibition by inorganic mercury.: 1849-1861.
  20. Guru Prasad BR, Hegde SN. (2010). Use of Drosophila as a model organism in medicine.: 589-593.
  21. Hazelhoff MH, Bulacio RP, Torres AM. (2012). Gender related differences in kidney injury induced by mercury.: 10523-10536.
  22. Hu Y, Cheng H. (2012). Mercury risk from fluorescent lamps in China: current status and future perspective.: 141-150.
  23. Johnson GL, Lapadat R. (2002). Mitogen-activated protein kinase pathways mediated by ERK, JNK, and p38 protein kinases.: 1911-1912.
  24. Jolley DF, O’ Brien G, Morrison J. (2000). Evolution of chemical contaminant and toxicology studies, part 1 - an overview.: 1-5.
  25. National Toxicology Program. (1993). Toxicology and carcinogenesis studies of mercuric chloride (CAS No. 7487-94-7) in F344 rats and B6C3F1 mice (Gavage Studies).: 1-260.
  26. Osburn WO, Kensler TW. (2008). Nrf2 signaling: An adaptive response pathway for protection against environmental toxic insults.: 31-39.
  27. Paula MT, Zemolin AP, Vargas AP, Golombieski RM, Loreto EL, Saidelles AP, Picoloto RS, Flores EM, Pereira AB, Rocha JB, Merritt TJ, Franco JL, Posser T. (2012). Effects of Hg (II) exposure on MAPK phosphorylation and antioxidant system in D. melanogaster.[Epub ahead of print].
  28. Pereira AM, Tudor C, Kanger JS, Subramaniam V, Martin-Blanco E. (2011). Integrin- dependent activation of the JNK signaling pathway by mechanical stress.: e26182.
  29. Posser T, Franco JL, Bobrovskaya L, Leal RB, Dickson PW, Dunkley PR .(2009). Manganese induces sustained Ser40 phosphorylation and activation of tyrosine hydroxylase in PC12 cells.: 848-856.
  30. Rand MD, Dao JC, Clason TA. (2009). Methylmercury disruption of embryonic neural development in Drosophila.: 794-802.
  31. Sackton KL, Buehner NA, Wolfner MF. (2007). Modulation of MAPK activities during egg activation in Drosophila.: 222-227.
  32. Sharma DN, Bhattacharya L. (2010). Role of some antioxidants on mercury chloride induced spermatogenesis in Swiss albino mice during prepubertal phase of life.: 19-25.
  33. Tchounwou PB, Yedjou CG, Patlolla AK, Sutton DJ. (2012). Heavy metal toxicity and the environment.: 133-164.
  34. Williams CM, Beecher HK. (1944). Sensitivity of Drosophila to poisoning by oxygen.: 566-573.
  35. Yaghmaie B, Jazayeri SB, Shahlaee A. (2012). Mercury ingestion from a broken thermometer.: 852.
DOI: https://doi.org/10.2478/intox-2013-0007 | Journal eISSN: 1337-9569 | Journal ISSN: 1337-6853
Language: English
Page range: 34 - 40
Published on: Jul 30, 2013
Published by: Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
In partnership with: Paradigm Publishing Services

© 2013 Hamideh Abnoos, Masoud Fereidoni, Naser Mahdavi-Shahri, Farhang Haddad, Razieh Jalal, published by Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
This work is licensed under the Creative Commons License.