{"id":{"repo_id":"must-thes","oai_identifier":"oai:scholarsmine.mst.edu:doctoral_dissertations-2685"},"canonical_url":"https://search.dev.ndltd.org/etd/must-thes/oai:scholarsmine.mst.edu:doctoral_dissertations-2685","repository":{"repo_id":"must-thes","name":"Missouri University of Science and Technology","base_url":"https://scholarsmine.mst.edu/do/oai/"},"display":{"title":"Role of glutamate in lead-induced toxicity: protection by N-acetylcysteine amide (NACA), a novel thiol antioxidant","abstract":"\"Despite several efforts to reduce lead levels in the environment, lead exposure continues to be a major public health problem, in the US today. Toxic effect of lead are mainly manifested in central nervous system (CNS) because brain acts as a reservoir for lead deposition. Lead-induced cell damage include glutamatergic component (excitotoxic cell damage arising from impaired clearance of the released glutamate), interference with calcium-mediated cellular processes, and activation of protein kinase C (PKC) resulting in oxidative stress. Chelation therapy has been a choice to reduce the body burden of lead; however chelation does not eliminate the neurotoxicity of lead...In this study we propose to evaluate the involvement of glutamatergic component in lead-induced toxicity and also to investigate a potential compound which counteracts the entire toxic phenomenon of lead\"--Abstract, page iii.","abstract_html":"&quot;Despite several efforts to reduce lead levels in the environment, lead exposure continues to be a major public health problem, in the US today. Toxic effect of lead are mainly manifested in central nervous system (CNS) because brain acts as a reservoir for lead deposition. Lead-induced cell damage include glutamatergic component (excitotoxic cell damage arising from impaired clearance of the released glutamate), interference with calcium-mediated cellular processes, and activation of protein kinase C (PKC) resulting in oxidative stress. Chelation therapy has been a choice to reduce the body burden of lead; however chelation does not eliminate the neurotoxicity of lead...In this study we propose to evaluate the involvement of glutamatergic component in lead-induced toxicity and also to investigate a potential compound which counteracts the entire toxic phenomenon of lead&quot;--Abstract, page iii.","abstract_has_math":false,"creators":["Penugonda, Suman"],"institution":"University of Missouri--Rolla","degree_name":"Ph. 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Lead-induced cell damage include glutamatergic component (excitotoxic cell damage arising from impaired clearance of the released glutamate), interference with calcium-mediated cellular processes, and activation of protein kinase C (PKC) resulting in oxidative stress. Chelation therapy has been a choice to reduce the body burden of lead; however chelation does not eliminate the neurotoxicity of lead...In this study we propose to evaluate the involvement of glutamatergic component in lead-induced toxicity and also to investigate a potential compound which counteracts the entire toxic phenomenon of lead\"--Abstract, page iii."]},{"key":"dc:title","label":"Title","values":["Role of glutamate in lead-induced toxicity: protection by N-acetylcysteine amide (NACA), a novel thiol antioxidant"]}]}],"canonical_facts":{"dc:creator":["Penugonda, Suman"],"dc:date.available":["2016-02-10T08:00:00Z"],"dc:description.abstract":["\"Despite several efforts to reduce lead levels in the environment, lead exposure continues to be a major public health problem, in the US today. Toxic effect of lead are mainly manifested in central nervous system (CNS) because brain acts as a reservoir for lead deposition. 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