Lead Intoxication Synergies of the Ethanol-Induced Toxic Responses in Neuronal Cells—PC12

被引:0
作者
V. Kumar
V. K. Tripathi
S. Jahan
M. Agrawal
A. Pandey
V. K. Khanna
A. B. Pant
机构
[1] Indian Institute of Toxicology Research,In Vitro Toxicology Laboratory
[2] Council of Scientific & Industrial Research,undefined
来源
Molecular Neurobiology | 2015年 / 52卷
关键词
Neurotoxicity; Pb; Ethanol; PC12 cells;
D O I
暂无
中图分类号
学科分类号
摘要
Lead (Pb)-induced neurodegeneration and its link with widespread neurobehavioral changes are well documented. Experimental evidences suggest that ethanol could enhance the absorption of metals in the body, and alcohol consumption may increase the susceptibility to metal intoxication in the brain. However, the underlying mechanism of ethanol action in affecting metal toxicity in brain cells is poorly understood. Thus, an attempt was made to investigate the modulatory effect of ethanol on Pb intoxication in PC12 cells, a rat pheochromocytoma. Cells were co-exposed to biological safe doses of Pb (10 μM) and ethanol (200 mM), and data were compared to the response of cells which received independent exposure to these chemicals at similar doses. Ethanol (200 mM) exposure significantly aggravated the Pb-induced alterations in the end points associated with oxidative stress and apoptosis. The finding confirms the involvement of reactive oxygen species (ROS)-mediated oxidative stress, and impairment of mitochondrial membrane potential, which subsequently facilitate the translocation of triggering proteins between cytoplasm and mitochondria. We further confirmed the apoptotic changes due to induction of mitochondria-mediated caspase cascade. These cellular changes were found to recover significantly, if the cells are exposed to N-acetyl cysteine (NAC), a known antioxidant. Our data suggest that ethanol may potentiate Pb-induced cellular damage in brain cells, but such damaging effects could be recovered by inhibition of ROS generation. These results open up further possibilities for the design of new therapeutics based on antioxidants to prevent neurodegeneration and associated health problems.
引用
收藏
页码:1504 / 1520
页数:16
相关论文
共 372 条
  • [11] Ghersi-Egea JF(2003)Lead neurotoxicity in children: basic mechanisms and clinical correlates Brain 126 5-84
  • [12] Kolesarova A(2013)Prenatal and lactational lead exposure enhanced oxidative stress and altered apoptosis status in offspring rats’ hippocampus Biol Trace Elem Res 151 75-45
  • [13] Roychoudhury S(2009)Neurotoxic effects and biomarkers of lead exposure: a review Rev Environ Health 24 15-1161
  • [14] Slivkova J(2003)Tea catechins protect against lead-induced ROS formation, mitochondrial dysfunction, and calcium dysregulation in PC12 cells Chem Res Toxicol 16 1155-116
  • [15] Sirotkin A(2007)Reversal of lead-induced neuronal apoptosis by chelation treatment in rats: role of reactive oxygen species and intracellular Ca(2+) J Pharmacol Exp Ther 322 108-12184
  • [16] Capcarova M(2000)Lead and calcium produce rod photoreceptor cell apoptosis by opening the mitochondrial permeability transition pore J Biol Chem 275 12175-191
  • [17] Massanyi P(2006)Zinc deficiency increases the susceptibility of human neuroblastoma cells to lead-induced activator protein-1 activation Toxicol Sci 91 184-842
  • [18] Mrugesh T(2011)Oxidative stress in lead and cadmium toxicity and its amelioration Vet Med Int 2011 457327-1557
  • [19] Dipa L(2009)Assessing the risk of lead exposure for the conservation of the endangered Pyrenean bearded vulture (Gypaetus barbatus) population Environ Res 109 837-1723
  • [20] Manishika G(2010)Ethanol and cognition: indirect effects, neurotoxicity and neuroprotection: a review Int J Environ Res Public Health 7 1540-1232