Probit analysis of comparative assays on toxicities of lead chloride and lead acetate to in vitro cultured human umbilical cord blood lymphocytes
By: Rajashree Patnaik and Rabindra N. Padhy
References
- Ahmed YF, Eldebaky HAA, Mahmoud KGM, Nawito M. (2012). Effects of lead exposure on DNA damage and apoptosis in reproductive and vital organs in female rabbits.: 401–408.
- Anonymous. (2007). Agency for toxic substances and disease registry (ATSDR),. US Department of Health and Human Services: Atlanta, US
- Bartosiewicz M, Penn S, Buckpitt A. (2001). Applications of gene arrays in environmental toxicology: fingerprints of gene regulation associated with cadmium chloride, benzo(a)pyrene, and trichloroethylene.: 71–74.
- Bellinger DC. (2008). Very low lead exposures and children’s neurodevelopment.: 172–177.
- Berrahal AA, Nehdi A, Hajjaji N, Gharbi N, Saloua N, EI-Fazaa S. (2007). Pharmacology, toxicology antioxidant enzymes activities and bilirubin level in adult rat treated with lead.: 581–588.
- Bishayi B, Sengupta M. (2006). Synergism in immunotoxicological effects due to repeated combined administration of arsenic and lead in mice.: 454–464.
- Broxmeyer HE, Douglas GW, Hangoc G, Cooper S, Bard J, et al. (1989) Human umbilical cord blood as a potential source of transplantable hematopoietic stem/progenitor cells.: 3828–3832.
- Bunn TL, Ladics GS, Holsapple MP, Dietert RR. (2001). Developmental immunotoxicology assessment in the rat: age, gender and strain comparisons after exposure to Pb.: 41–58.
- Campbell JR, Rosier RN, Novotny L, Puzas JE. (2004). The association between environmental lead exposure and bone density in children.: 1200–1203.
- Chand BD, Saya RN, Usha RM, Rajarami RG. (2014). Age related changes in aminergic system and behavior following lead exposure: protection with essential metal supplements.: 81–89.
- Conterato GMM, Quatrin A, Somacal S, Flores EMM, Emanuelli T. (2014). Acute exposure to low lead levels and its implications on the activity and expression of cytosolic thioredoxin reductase in the kidney.: 476–484.
- Eweis EA, EI-Beltagi HS, Abdel-Mobdy YE. (2012). Effect of lead acetate toxicity on experimental male albino rat.: 41–46.
- Gilbert PM, Havenstrite KL, Magnusson KEG, Sacco A, Leonardi NA, Kraft P, et al. (2010). Substrate elasticity regulates skeletal muscle stem cell self-renewal in culture.: 1078–1081.
- Grimsrud TK & Andersen A. (2010). Evidence of carcinogenicity in humans of water-soluble nickel salts.: 7. doi: 10.1186/1745-6673-5-7.
- Guzik TJ, Korbut R, Adamek-Guzik T. (2003). Nitric oxide and superoxide in inflammation and immune regulation.: 469–487.
- Hosseinimehr SJ, Shafaghati N, Hedayati M. (2013). Genotoxicity induced by iodine-131 in human cultured lymphocytes.: 74–76.
- Jarrar BM, Taib NT. (2012). Histological and histochemical alterations in the liver induced by lead chronic toxicity.: 203–210.
- Karimi I, Nasr J, Zanganeh F. (2013). Protective effects of an alfalfa aqueous extract on lead toxicity in broiler chickens: A biochemical approach.: 1129–1136.
- Laustriat D, Gide J, Peschanski M. (2010). Human pluripotent stem cells in drug discovery and predictive toxicology.: 1051–1057.
- Lee YJ. (2010). A case study on the effect of chelation therapy with dimercaptosuccinic acid (DMSA) for lead poisoning in an adult.: 69–76.
- Loser P, Schirm J, Guhr A, Wobus AM, Kurtz A. (2010). Human Embryonic Stem Cell Lines and their use in international research.: 240–246.
- Moussa SA, Bashandy SA, Romanian J. (2008). Biophysical and biochemical changes in the blood of rats exposed to lead toxicity.: 123–133.
- Mujaibel LM, Kilarkaje N. (2013). Mitogen-activated protein kinase signalling and its association with oxidative stress and apoptosis in lead-exposed hepatocytes.DOI: 10.1002/tox.21928.
- Park JU, Oh SW, Kim SH, Kim YH, Park RJ, Moon JD. (2008). A study on the association between blood lead levels and habitual tobacco and alcohol use in Koreans with no occupational lead exposure.20(3): 165–173.
- Rath S, Sahu MC, Dubey D, Debata NK, Padhy RN. (2011). Which value should be used as the lethal concentration 50 (LC) with bacteria? InterdiscComput Lif Sci: 138–143
- Rogers JT, Richards JG, Wood CM. (2003). Ionoregulatory disruption as the acute toxic mechanism for lead in the rainbow trout ().: 215–234.
- Rosler ES, Fisk GJ, Ares X, Irving J, Miura T, Rao MS, Carpenter MK. (2004). Long-term culture of human embryonic stem cells in feeder-free conditions.: 259–274.
- Samarghandian S, Borji A, Afshari R, Delkhosh MB, Gholami A. (2013). The effect of lead acetate on oxidative stress and antioxidant status in rat bronchoalveolar lavage fluid and lung tissue.: 432–436.
- Shalan MG, Mostafa MS, Hassouna MM, Hassab SE, El-Nabi, El-Rafaie A.(2005). Amelioration of lead toxicity on rat liver with vitamin C and silymarin supplements.: 1–15.
- Sharma V, Sharma A, Kansal L. (2010). The effect of oral administration ofextracts on lead nitrate induced toxicity in male mice.: 928–936.
- Soltaninejad K, Kebriaeezadeh A, Minaiee B, Ostad SN, Hosseini R, Azizi E, et al. (2003). Biochemical and ultrastructural evidences for toxicity of lead through free radicals in rat brain.: 417–423.
- Sun X, Xie Y, Wu L, Zhu W, Hu J, et al. (2012). Lead acetate reduces the ability of human umbilical cord mesenchymal stem cells to support hematopoiesis.: 827–832.
- Takahashi K, Yamanaka S. (2006). Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors.: 663–67.
- Tzimas G, Thiel R, Chahoud I, Nau H. (1997). The area under the concentration–time curve of all-trans-retinoic acid is the most suitable pharmacokinetic correlate to the embryotoxicity of this retinoid in the rat.: 436–444.
- US Environmental Protection Agency (USEPA). (2001). EPA-902-B01-001:EPA-902-B01-001. United States Environmental Protection Agency Region 2.
- Wang X, Wang M, Dong W, Piao F, Li S. (2013). Subchronic exposure to lead acetate inhibits spermatogenesis and downregulates the expression of Ddx3y in testis of mice.: 242–250.
- Zhang XJ, Jia CC, Lin L, Bai CL, Huang CP. (2012). Toxic effects of lead on embryonic development of zebrafish.: 662–666.
Language: English
Page range: 35 - 43
Submitted on: Jun 14, 2014
Accepted on: Mar 16, 2015
Published on: Dec 10, 2015
Published by: Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
In partnership with: Paradigm Publishing Services
Keywords:
Related subjects:
© 2015 Rajashree Patnaik, Rabindra N. Padhy, published by Slovak Academy of Sciences, Institute of Experimental Pharmacology & Toxicology, Centre of Experimental Medicine
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.