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Original Articles

Disposition of methylmercury over time in a 75% nephrectomized rat model

, , & ORCID Icon
Pages 349-360 | Received 06 Dec 2017, Accepted 19 Feb 2018, Published online: 02 Mar 2018

References

  • Afrifa, J., S. Essien-Baidoo, R. K. D. Ephraim, D. Nkrumah, and D. O. Dankyira. 2017. Reduced egfr, elevated urine protein and low level of personal protective equipment compliance among artisanal small scale gold miners at Bibiani-Ghana: A cross-sectional study. BMC Public Health 17:601. doi:10.1186/s12889-017-4517-z.
  • Aschner, M., and T. W. Clarkson. 1989. Methyl mercury uptake across bovine brain capillary endothelial cells in vitro: The role of amino acids. Pharmacology & Toxicology 64:293–97. doi:10.1111/j.1600-0773.1989.tb00650.x.
  • Aschner, M., N. B. Eberle, S. Goderie, and H. K. Kimelberg. 1990. Methylmercury uptake in rat primary astrocyte cultures: The role of the neutral amino acid transport system. Brain Research 521:221–28. doi:10.1016/0006-8993(90)91546-S.
  • Ballatori, N. 2002. Transport of toxic metals by molecular mimicry. Environment Health Perspectives 110 (Suppl 5):689–94. doi:10.1289/ehp.02110s5689.
  • Barregard, L., G. Bergstrom, and B. Fagerberg. 2014. Cadmium, type 2 diabetes, and kidney damage in a cohort of middle-aged women. Environmental Research 135:311–16. doi:10.1016/j.envres.2014.09.017.
  • Belanger, M., A. Westin, and D. W. Barfuss. 2001. Some health physics aspects of working with 203Hg in university research. Health Physics 80:S28–S30.
  • Branco, V., S. Caito, M. Farina, J. Teixeira Da Rocha, M. Aschner, and C. Carvalho. 2017. Biomarkers of mercury toxicity: Past, present and future trends. Journal Toxicogical Environment Health B 20:119–54. doi:10.1080/10937404.2017.1289834.
  • Brewster, U. C. 2006. Chronic kidney disease from environmental and occupational toxins. Connecticut Medicine 70:229–37.
  • Brewster, U. C., and M. A. Perazella. 2004. A review of chronic lead intoxication: An unrecognized cause of chronic kidney disease. The American Journal of the Medical Sciences 327:341–47. doi:10.1097/00000441-200406000-00008.
  • Bridges, C. C., D. W. Barfuss, L. Joshee, and R. K. Zalups. 2016. Compensatory renal hypertrophy and the uptake of cysteine S-conjugates of Hg2+ in isolated S2 proximal tubular segments. Toxicological Sciences : An Official Journal of the Society of Toxicology 154:278–88. doi:10.1093/toxsci/kfw160.
  • Bridges, C. C., C. Bauch, F. Verrey, and R. K. Zalups. 2004. Mercuric conjugates of cysteine are transported by the amino acid transporter system b(0,+): Implications of molecular mimicry. Journal of the American Society of Nephrology : JASN 15:663–73. doi:10.1097/01.ASN.0000113553.62380.F5.
  • Bridges, C. C., L. Joshee, and R. K. Zalups. 2009. Effect of DMPS and DMSA on the placental and fetal disposition of methylmercury. Placenta 30:800–05. doi:10.1016/j.placenta.2009.06.005.
  • Bridges, C. C., L. Joshee, and R. K. Zalups. 2014. Aging and the disposition and toxicity of mercury in rats. Experimental Gerontology 53:31–39. doi:10.1016/j.exger.2014.02.006.
  • Bridges, C. C., and R. K. Zalups. 2005. Molecular and ionic mimicry and the transport of toxic metals. Toxicology and Applied Pharmacology 204:274–308. doi:10.1016/j.taap.2004.09.007.
  • Bridges, C. C., and R. K. Zalups. 2017. The aging kidney and the nephrotoxic effects of mercury. Journal Toxicogical Environment Health B 20:55–80. doi:10.1080/10937404.2016.1243501.
  • Buser, M. C., S. Z. Ingber, N. Raines, D. A. Fowler, and F. Scinicariello. 2016. Urinary and blood cadmium and lead and kidney function: NHANES 2007-2012. International Journal of Hygiene and Environmental Health 219:261–67. doi:10.1016/j.ijheh.2016.01.005.
  • Carneiro, M. F. H., D. Grotto, and F. Barbosa, Jr. 2014. Inorganic and methylmercury levels in plasma are differentially associated with age, gender, and oxidative stress markers in a population exposed to mercury through fish consumption. Journal Toxicogical Environment Health A: 77:69–79. doi:10.1080/15287394.2014.865584.
  • CDC, Centers for Disease Control and Prevention, edited by. 2017. Chronic kidney disease fact sheet. Atlanta, GA: Department of Health and Human Services, National Center for Health Statistics.
  • FDA. 2017. Eating fish: What pregnant women and parents should know 2017 [cited 11- 29-17 2017]. Available from https://www.fda.gov/Food/ResourcesForYou/Consumers/ucm393070.htm.
  • Fine, L. G., J. T. Norman, D. A. Kujubu, and A. Knecht. 1992. Renal hypertrophy. In The Kidney: physiology and pathophysiology, edited by D. W. Seldin and G. Giebisch, 3113–33. New York: Raven Press.
  • Global Burden of Disease (GBD). 2016. Causes of death collaborators. 2017. Global, regional, and national age-sex specific mortality for 264 causes of death, 1980-2016: A systematic analysis for the global burden of disease study 2016. Lancet 390:1151–210.
  • Kim, Y., and B. K. Lee. 2012. Associations of blood lead, cadmium, and mercury with estimated glomerular filtration rate in the Korean general population: Analysis of 2008-2010 Korean national health and nutrition examination survey data. Environmental Research 118:124–29. doi:10.1016/j.envres.2012.06.003.
  • Lash, L. H., S. E. Hueni, D. A. Putt, and R. K. Zalups. 2005. Role of organic anion and amino acid carriers in transport of inorganic mercury in rat renal basolateral membrane vesicles: Influence of compensatory renal growth. Toxicological Sciences : An Official Journal of the Society of Toxicology 88:630–44. doi:10.1093/toxsci/kfi328.
  • Lash, L. H., D. A. Putt, and R. K. Zalups. 1999. Influence of exogenous thiols on inorganic mercury-induced injury in renal proximal and distal tubular cells from normal and uninephrectomized rats. The Journal of Pharmacology and Experimental Therapeutics 291:492–502.
  • Lee, H. B., and M. D. Blaufox. 1985. Blood volume in the rat. Journal of Nuclear Medicine : Official Publication, Society of Nuclear Medicine 26:72–76.
  • Mozaffarian, D., E. J. Benjamin, A. S. Go, D. K. Arnett, M. J. Blaha, M. Cushman, S. De Ferranti, J. P. Despres, H. J. Fullerton, V. J. Howard, M. D. Huffman, S. E. Judd, B. M. Kissela, D. T. Lackland, J. H. Lichtman, L. D. Lisabeth, S. Liu, R. H. Mackey, D. B. Matchar, D. K. McGuire, E. R. Mohler, 3rd, C. S. Moy, P. Muntner, M. E. Mussolino, K. Nasir, R. W. Neumar, G. Nichol, L. Palaniappan, D. K. Pandey, M. J. Reeves, C. J. Rodriguez, P. D. Sorlie, J. Stein, A. Towfighi, T. N. Turan, S. S. Virani, J. Z. Willey, D. Woo, R. W. Yeh, and M. B. Turner; American Heart Association Statistics Committee and Stroke Statistics Subcommittee. 2015. Heart disease and stroke statistics–2015 update: A report from the American Heart Association. Circulation 131:e29–2e322. doi:10.1161/CIR.0000000000000152.
  • Norseth, T., and T. W. Clarkson. 1970a. Biotransformation of methylmercury salts in the rat studied by specific determination of inorganic mercury. Biochemical Pharmacology 19:2775–83. doi:10.1016/0006-2952(70)90104-8.
  • Norseth, T., and T. W. Clarkson. 1970b. Studies on the biotransformation of 203Hg-labeled methyl mercury chloride in rats. Archives of Environmental Health 21:717–27. doi:10.1080/00039896.1970.10667325.
  • Nuyts, G. D., E. Van Vlem, J. Thys, D. De Leersnijder, P. C. D’Haese, M. M. Elseviers, and M. E. De Broe. 1995. New occupational risk factors for chronic renal failure. Lancet 346:7–11. doi:10.1016/S0140-6736(95)92648-8.
  • Oliveira, C. S., L. Joshee, R. K. Zalups, and C. C. Bridges. 2016. Compensatory renal hypertrophy and the handling of an acute nephrotoxicant in a model of aging. Experimental Gerontology 75:16–23. doi:10.1016/j.exger.2016.01.001.
  • Perez, H., E. C. Sullivan, K. Michael, and R. Harris. 2012. Fish consumption and advisory awareness among the Philadelphia Asian Community: A pilot study. Journal of Environmental Health 74:24–28.
  • Rhee, C. M., and C. P. Kovesdy. 2015. Spotlight on CKD deaths – Increasing mortality worldwide. Nature Reviews. Nephrology 11:199. doi:10.1038/nrneph.2015.25.
  • Rouleau, C., and M. Block. 1997. Fast and high yield synthesisi of radioactive CH3203Hg(II). Applications Organomet Chemical 11:751–53. doi:10.1002/(SICI)1099-0739(199709)11:9<751::AID-AOC631>3.0.CO;2-Z.
  • Sommar, J. N., M. K. Svensson, B. M. Bjor, S. I. Elmstahl, G. Hallmans, T. Lundh, S. M. Schon, S. Skerfving, and I. A. Bergdahl. 2013. End-stage renal disease and low level exposure to lead, cadmium and mercury: A population-based, prospective nested case-referent study in Sweden. Environmental Health : A Global Access Science Source 12:9. doi:10.1186/1476-069X-12-9.
  • Taylor, D. L., and P. R. Williamson. 2017. Mercury contamination in Southern New England coastal fisheries and dietary habits of recreational anglers and their families: Implications to human health and issuance of consumption advisories. Marine Pollution Bulletin 114:144–56. doi:10.1016/j.marpolbul.2016.08.072.
  • Thompson, A., J. Lawrence, and N. Stockbridge. 2014. GFR decline as an end point in trials of CKD: A viewpoint from the FDA. American Journal of Kidney Diseases : The Official Journal of the National Kidney Foundation 64:836–37. doi:10.1053/j.ajkd.2014.09.006.
  • Tsai, C. C., C. L. Wu, C. T. Kor, I. B. Lian, C. H. Chang, T. H. Chang, C. C. Chang, and P. F. Chiu. 2017a. Prospective associations between environmental heavy metal exposure and renal outcomes in adults with chronic kidney disease. Nephrology (Carlton). doi:10.1111/nep.13089.
  • Tsai, T. L., C. C. Kuo, W. H. Pan, Y. T. Chung, C. Y. Chen, T. N. Wu, and S. L. Wang. 2017b. The decline in kidney function with chromium exposure is exacerbated with co-exposure to lead and cadmium. Kidney International 92:710–20. doi:10.1016/j.kint.2017.03.013.
  • Tsuchiya, A., T. A. Hinners, T. M. Burbacher, E. M. Faustman, and K. Marien. 2008. Mercury exposure from fish consumption within the Japanese and Korean communities. Journal of Toxicology and Environmental Health. Part A 71:1019–31. doi:10.1080/01932690801934612.
  • ATSDR, Agency for Toxic Substances and Disease Registry. 2008. Toxicological profile for mercury. edited by U.S. Department of Health and Human Services. Atlanta, GA: Centers for Disease Control.
  • Wolff, S., G. Brown, J. Chen, K. Meals, C. Thornton, S. Brewer, J. V. Cizdziel, and K. L. Willett. 2016. Mercury concentrations in fish from three major lakes in north Mississippi: Spatial and temporal differences and human health risk assessment. Journal of Toxicology and Environmental Health. Part A 79:894–904. doi:10.1080/15287394.2016.1194792.
  • Zalups, R. K. 1993. Early aspects of the intrarenal distribution of mercury after the intravenous administration of mercuric chloride. Toxicology 79:215–28. doi:10.1016/0300-483X(93)90213-C.
  • Zalups, R. K. 1998. Intestinal handling of mercury in the rat: Implications of intestinal secretion of inorganic mercury following biliary ligation or cannulation. Journal of Toxicology and Environmental Health. Part A 53:615–36. doi:10.1080/009841098159079.
  • Zalups, R. K., and C. C. Bridges. 2009. MRP2 involvement in renal proximal tubular elimination of methylmercury mediated by DMPS or DMSA. Toxicology and Applied Pharmacology 235:10–17. doi:10.1016/j.taap.2008.11.003.
  • Zalups, R. K., and C.C. Bridges. 2010. Seventy-five percent nephrectomy and the disposition of inorganic mercury in 2,3-dimercaptopropanesulfonic acid-treated rats lacking functional multidrug-resistance protein 2. Journal of Pharmacology and Experimental Therapeutics. 2010 Mar;332(3):866–75. doi:10.1124/jpet.109.163774.
  • Zalups, R. K., and L. H. Lash. 1990. Effects of uninephrectomy and mercuric chloride on renal glutathione homeostasis. The Journal of Pharmacology and Experimental Therapeutics 254:962–70.

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