71
Views
4
CrossRef citations to date
0
Altmetric
Research Articles

Effect of alloxan on the third instar larvae of transgenic Drosophila melanogaster (hsp70-lacZ)Bg9

, , &
Pages 41-51 | Received 29 Mar 2018, Accepted 29 Apr 2018, Published online: 16 May 2018

References

  • Adams, M.D., et al., 2000. The genome sequence of Drosophila melanogaster. Science, 287, 2185–2195.
  • Benson, W. H. and Di Giulio, R. T., 1992. Biomarkers in hazard assessments of contaminated sediments. In: Sediment Toxicity Assessment. Boca Raton, Florida: Lewis Publishers, 241–265.
  • Bilić, N., 1975. The mechanism of alloxan toxicity: an indication for alloxan complexes in tissues and alloxan inhibition of 4-acetamido-4′-isothiocyanato-stilbene-2,2′-disulphonic acid (SITS) binding for the liver cell membrane. Diabetologia, 11, 39–43.
  • Brogiolo, W., et al., 2001. An evolutionarily conserved function of the Drosophila insulin receptor and insulin-like peptides in growth control. Current biology, 11, 213–221.
  • Celotto, A.M. and Palladino, M.J., 2005. Drosophila: a “model” system to study neurodegeneration. Molecular interventions, 5, 292–303.
  • Chan, H.Y.E. and Bonini, N.M., 2000. Drosophila models of human neurodegenerative disease. Cell death and differentiation, 7, 1075–1080.
  • Chowdhuri, D.K., Saxena, D.K., and Viswanathan, P.N., 1999. Effect of hexachlorocyclohexane (HCH), its isomers, and metabolites on hsp70 expression in transgenic Drosophila melanogaster. Pesticide biochemistry and physiology, 63, 15–25.
  • Dalle-Donne, I., et al., 2003. Protein carbonyl groups as biomarkers of oxidative stress. Clinica chimica acta, 329, 23–38.
  • Danish, M., et al., 2015. Evaluation of the toxic potential of calcium carbide in the third instar larvae of transgenic Drosophila melanogaster (hsp70-lacZ)Bg9. Chemosphere, 139, 469–478.
  • Dhanesha, N., et al., 2012. Exendin-4 reduces glycemia by increasing liver glucokinase activity: an insulin independent effect. Pharmacological reports : Pr, 64, 140–149.
  • Dunkov, B.C., et al., 1997. The Drosophila cytochrome P450 gene Cyp6a2: structure, localization, heterologous expression, and induction by phenobarbital. DNA and cell biology, 16, 1345–1356.
  • Dutta, M., et al., 2017. Toxicity assessment of sodium fluoride in Drosophila melanogaster after chronic sub-lethal exposure. Chemosphere, 166, 255–266.
  • Elsner, M., Gurgul-Convey, E., and Lenzen, S., 2006. Relative importance of cellular uptake and reactive oxygen species for the toxicity of alloxan and dialuric acid to insulin-producing cells. Free radical biology & medicine, 41, 825–834.
  • Esterbauer, H. and Cheeseman, K.H., 1990. Determination of aldehydic lipid peroxidation products: malonaldehyde and 4-hydroxynonenal. Methods in enzymology, 186, 407–421.
  • Fatima, A., et al., 2017. Effect of tangeritin against cyclophosphamide-induced toxicity in the larvae of transgenic Drosophila melanogaster (hsp70-lac Z)Bg9. Journal of dietary supplements. [Epub ahead of print]. doi: 10.1080/19390211.2017.1406425
  • Géminard, C., et al., 2006. Control of metabolism and growth through insulin-like peptides in Drosophila. American diabetes association, 55, S5–S8.
  • Guven, K., et al., 1999. The toxicity of dithiocarbamate fungicides to soil nematodes, assessed using a stress-inducible transgenic strain of Caenorhabditis elegans. Journal of biochemical and molecular toxicology, 13, 324–333.
  • Habig, W.H., et al., 1974. The identity of glutathione S-transferase B with ligandin, a major binding protein of liver. Proceedings of the National Academy of Sciences of the United States of America, 71, 3879–3882.
  • Hartmann, A., et al., 2004. Use of the alkaline in vivo Comet assay for mechanistic genotoxicity investigations. Mutagenesis, 19, 51–59.
  • Hawkins, C.L., Morgan, P.E., and Davies, M.J., 2009. Quantification of protein modification by oxidants. Free radical biology & medicine, 46, 965–988.
  • Hoi, K.K., et al., 2014. Dissecting the insect metabolic machinery using twin ion mass spectrometry: a single P450 enzyme metabolizing the insecticide imidacloprid in vivo. Analytical chemistry, 86, 3525–3532.
  • Jeng, J.H., et al., 1999. Arecoline cytotoxicity on human oral mucosal fibroblasts related to cellular thiol and esterase activities. Food and chemical toxicology, 37, 751–756.
  • Jollow, D.J., et al., 1974. Bromobenzene-induced liver necrosis. Protective role of glutathione and evidence for 3,4-bromobenzene oxide as the hepatotoxic metabolite. Pharmacology, 11, 151–169.
  • Jorns, A., et al., 1997. Comparative toxicity of alloxan, N-alkylalloxans and ninhydrin to isolated pancreatic islets in vitro. Journal of endocrinology, 155, 283–293.
  • Jouben, N., et al., 2008. Metabolism of imidaclopridand DDT by P450CYP6G1 expressed in cell cultures of Nicotiana tabacum suggests detoxification of these insecticides in Cyp6g1-over expressing strains of Drosophila melanogaster, leading to resistance. Pest management science, 73, 65–73.
  • Khan, S., et al., 2012. Effect of L-ascorbic acid on the climbing ability and protein levels in the brain of Drosophila model of Parkinson’s disease. International journal of neuroscience, 122, 704–709.
  • Krebs, R.A. and Feder, M.E., 1997. Tissue-specific variation in Hsp70 expression and thermal damage in Drosophila melanogaster larvae. Journal of experimental biology, 200, 2007–2015.
  • Kumar, S. and Doumanis, J., 2000. The fly caspases. Cell death and differentiation, 7, 1039–1044.
  • Lenzen, S., 2008. The mechanisms of alloxan- and streptozotocin-induced diabetes. Diabetologia, 51, 216–226.
  • Lindquist, S., 1993. Autoregulation of the heat-shock response. In: Translational regulation of gene expression. New York: Plenum Press, 279–320.
  • Lis, J.T., Simon, J.A., and Sutton, C.A., 1983. New heat shock puffs and beta-galactosidase activity resulting from transformation of Drosophila with an hsp70-lacZ hybrid gene. Cell, 35, 403–410.
  • Malaisse, W.J., et al., 1982. Determinants of the selective toxicity of alloxan to the pancreatic B cell. Proceedings of the National Academy of Sciences of the United States of America, 79, 927–930.
  • Mishra, M., et al., 2011. Tracing the tracks of genotoxicity by trivalent and hexavalent chromium in Drosophila melanogaster. Mutation research, 722, 44–51.
  • Mrozikiewicz, P.M., Drakoulis, N., and Roots, I., 1994. Polymorphic arylamine N‐acetyltransferase (NAT2) genes in children with insulin‐dependent diabetes mellitus. Clinical pharmacology and therapeutics, 56, 626–634.
  • Mukhopadhyay, I., et al., 2004. Evaluation of in vivo genotoxicity of cypermethrin in Drosophila melanogaster using the alkaline Comet assay. Mutagenesis, 19, 85–90.
  • Mukhopadhyay, I., Saxena, D.K., and Chowdhuri, D.K., 2003. Hazardous effects of effluent from the chrome plating industry: 70 kDa heat shock protein expression as a marker of cellular damage in transgenic Drosophila melanogaster (hsp70-lacZ). Environmental health perspectives, 111, 1926–1932.
  • Nässel, D.R., et al., 2013. Factors that regulate insulin producing cells and their output in Drosophila. Frontiers in physiology, 4, 1–36.
  • Nazir, A., et al., 2003. Evaluation of toxic potential of captan: induction of hsp70 and tissue damage in transgenic Drosophila melanogaster (hsp70-lacZ) Bg9. Journal of biochemical and molecular toxicology, 17, 98–107.
  • Ohkawa, H., Ohishi, N., and Yagi, K., 1978. Reaction of linoleic acid hydroperoxide with thiobarbituric acid. Journal of lipid research, 19, 1053–1057.
  • O’Kane, C.J., and Gehring, W.J., 1987. Detection in situ of genomic regulatory elements in Drosophila. Proceedings of the National Academy of Sciences of the United States of America, 84, 9123–9127.
  • Pandey, A., et al., 2013. Cellular internalization and stress response of ingested amorphous silica nanoparticles in the midgut of Drosophila melanogaster. Biochimica et biophysica acta, 1830, 2256–2266.
  • Renvuize, C., et al., 1998. Apoptosis: identification of dying cells. Cell biology and toxicology, 14, 111–120.
  • Ryter, S.W., et al., 2007. Mechanisms of cell death in oxidative stress. Antioxidants & redox signaling, 9, 49–89.
  • Shakila Banu, M. and Sasikala, P., 2012. Alloxan in refined flour: a diabetic concern. International journal of advanced and innovative research, 2278-7844, 204–209.
  • Sharma, A., et al., 2011. Validation and application of Drosophila melanogaster as an in vivo model for the detection of double strand breaks by neutral Comet assay. Mutation research, 721, 142–146.
  • Siddique, Y.H., et al., 2010. Assessment of cell viability, lipid peroxidation and quantification of DNA fragmentation after the treatment of anticancerous drug mitomycin C and curcumin in cultured human blood lymphocytes. Experimental and toxicologic pathology , 62, 503–508.
  • Siddique, Y.H., et al., 2013. Evaluation of the toxic potential of graphene copper nanocomposite (GCNC) in the third instar larvae of transgenic Drosophila melanogaster (hsp70-lacZ) Bg9. PLoS One, 8, e80944.
  • Siddique, Y.H. and Jyoti, S., 2017. Alteration in biochemical parameters in the brain of transgenic Drosophila melanogaster model of Parkinson's disease exposed to apigenin. Integrative medicine research, 6, 245–253.
  • Siddique, Y.H., Naz, F., and Jyoti, S., 2014. Effect of curcumin on lifespan, activity pattern, oxidative stress, and apoptosis in the brains of transgenic Drosophila model of Parkinson’s disease. BioMed research international, 2014, 1–6.
  • Singh, P. and Chowdhuri, D.K., 2016. Environmental presence of hexavalent but not trivalent chromium causes neurotoxicity in exposed Drosophila melanogaster. Molecular neurobiology, 54, 3368–3387.
  • Skudelski, T., 2001. The mechanism of alloxan and streptozotocin activity in B cells of the rats pancreas. Physiological research, 50, 537–546.
  • Stringham, E.G. and Candido, E.P.M., 1994. Transgenic hsp 16‐Lacz strains of the soil nematode Caenorhabditis elegans as biological monitors of environmental stress. Environmental toxicology and chemistry, 13, 1211–1220.
  • Szkudelski, T., Kandulska, K., and Okulicz, M., 1998. Alloxan in vivo does not only exert deleterious effects on pancreatic B cells. Physiological research, 47, 343–346.
  • Vaca, C.E., Wilhelm, J., and Harms-Ringdahl, M., 1988. Interaction of lipid peroxidation products with DNA. A review. Mutation research, 195, 137–149.
  • Yasar, S., et al., 2007. Effect of alloxan on some of biochemistry parameters in serum rats. Asian journal of chemistry, 19, 2399–2402.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.