Effect of Arsenic on Early Chick Development

Authors

  • Zulfiqar ali laghari
  • Ayaz Samo
  • Zameer Ali Palh
  • Khalid Hussain Lashari
  • Ghulam Murtaza Mastoi

Keywords:

Audio description, accessibility, character, memory, reception study.

Abstract

Exposure to arsenic through drinking water is associated with the number of diseases including cancer, Increasing concentrations of toxic metals and chemicals, and their intake by humans and animals have become a major global concern of public health. Presence of these substances in drinking water is the major source of ingestion. Recent studies on pregnant females show the detrimental effects of arsenic ingestion through water. Arsenic causes fetal loss, low birth weight and miscarriages. However, the effects of arsenic using model organism is still understudied. In order to study the effects of arsenic on embryo, we have used chick embryo as model organism. Chick eggs were incubated in incubator at 37 centigrade, after 36 hours of incubation these eggs were taken out to determine the stage of chick embryo by Hamburger-Hamilton stages (HH). The embryos were treated with sodium arsenate dissolved in Phosphate Buffer Saline (PBS-invitrogen) solution. After incubating the treated eggs for 24 hours, the embryos were taken out to observe the effects. Images were taken with Digital camera. The treatment of chick embryos with arsenic caused reduction in the weight and size of embryos treated with sodium arsenate than control (BSS treated) embryos. In addition, the survival rate of chick embryos treated with sodium arsenate was significantly lower. Moreover, defects in angiogenesis were also observed in sodium arsenate treated embryos. This suggests that arsenic might cause the defects of chick embryos at early stages.

References

Sohel, N., et al., Spatial patterns of fetal loss and infant death in an arsenic-affected area in Bangladesh. Int J Health Geogr, 2011. 9: p. 53.

Rahman, A., et al., Association of arsenicexposureduringpregnancywith fetal loss and infantdeath: a cohortstudy in Bangladesh. Am J Epidemiol, 2007. 165(12): p. 1389-96.

Tseng, C.H., et al., Long-term arsenic exposure and ischemic heart disease in arseniasis-hyperendemic villages in Taiwan. ToxicolLett, 2003. 137(1-2): p. 15-21.

Hsueh, Y.M., et al., Low serum carotene level and increased risk of ischemic heart disease related to long-term arsenic exposure. Atherosclerosis, 1998. 141(2): p. 249-57.

Shalat, S.L., D.B. Walker, and R.H. Finnell, Role of arsenic as a reproductive toxin with particular attention to neural tube defects. J Toxicol Environ Health, 1996. 48(3): p. 253-72.

Li, X., et al., Arsenic Impairs Embryo Development via Down-regulating Dvr1 Expression in Zebrafish. ToxicolLett, 2012.

Liu, J., et al., Fetal arsenic exposure appears to facilitate endocrine disruption by postnatal diethylstilbestrol in neonatal mouse adrenal. ChemBiol Interact, 2009. 182(2-3): p. 253-8.

Crary, D.D., Modified benzyl alcohol clearing of alizarinstained specimens without loss of flexibility. Stain Technol, 1962. 37: p. 124-5.

Tofail, F., et al., Effect of arsenic exposure during pregnancy on infant development at 7 months in rural Matlab, Bangladesh. Environ Health Perspect, 2009. 117(2): p. 288-93.

Li, X., et al., Arsenic impairs embryo development via down-regulating Dvr1 expression in zebrafish. ToxicolLett, 2012. 212(2): p. 161-8.

Chaineau, E., et al., Embryotoxic effects of sodium arsenite and sodium arsenate on mouse embryos in culture. Teratology, 1990. 41(1): p. 105-12.

Rahman, A., et al., Arsenic exposure and risk of spontaneous abortion, stillbirth, and infant mortality. Epidemiology, 2010. 21(6): p. 797-804.

Sen, J. and A.B. Chaudhuri, Arsenic exposure through drinking water and its effect on pregnancy outcome in Bengali women. ArhHigRadaToksikol, 2008. 59(4): p. 271-5.

Liu, J., et al., Transplacental exposure to inorganic arsenic at a hepatocarcinogenic dose induces fetal gene expression changes in mice indicative of aberrant estrogen signaling and disrupted steroid metabolism. ToxicolApplPharmacol, 2007. 220(3): p. 284-91.

Kozul-Horvath, C.D., et al., Effects of low-dose drinking water arsenic on mouse fetal and postnatal growth and development. PLoS One, 2012. 7(5): p. e38249.

Soucy, N.V., et al., Arsenic stimulates angiogenesis and tumorigenesis in vivo. ToxicolSci, 2003. 76(2): p. 271-9.

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Published

2014-10-12

How to Cite

laghari, Z. ali, Samo, A., Palh, Z. A., Lashari, K. H., & Mastoi, G. M. (2014). Effect of Arsenic on Early Chick Development. International Journal of Sciences: Basic and Applied Research (IJSBAR), 15(2), 140–144. Retrieved from https://gssrr.org/index.php/JournalOfBasicAndApplied/article/view/2727

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Articles