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Neurochemical Research|September 11, 2016
Disease-Toxicant Interactions in Parkinson's Disease NeuropathologyGunnar F Kwakye, Rachael A McMinimy, Michael AschnerToxicology and Applied Pharmacology|February 7, 2024
Exposure of human glioblastoma cells to thimerosal inhibits the thioredoxin system and decreases tumor growth-related factorsIsabella Bramatti, Michael Aschner, Vasco Branco, et al.Neurochemical Research|February 13, 2016
Autophagy in Neurodegenerative Diseases and Metal NeurotoxicityZiyan Zhang, Mahfuzur Miah, Megan Culbreth, et al.Toxicology and Applied Pharmacology|October 14, 2003
Brain barrier systems: a new frontier in metal neurotoxicological researchWei Zheng, Michael Aschner, Jean-Francois Ghersi-EgeaToxicological Sciences : an Official Journal of the Society of Toxicology|August 31, 2007
Role of docosahexaenoic acid in modulating methylmercury-induced neurotoxicityParvinder Kaur, Kristina Schulz, Michael Aschner, et al.Toxicology in Vitro : an International Journal Published in Association with BIBRA|January 27, 2009
The in vitro effects of selenomethionine on methylmercury-induced neurotoxicityParvinder Kaur, Lars Evje, Michael Aschner, et al.Neurotoxicology|July 16, 2008
Docosahexaenoic acid may act as a neuroprotector for methylmercury-induced neurotoxicity in primary neural cell culturesParvinder Kaur, Ingrid Heggland, Michael Aschner, et al.Annals of the New York Academy of Sciences|April 24, 2004
Manganese neurotoxicityAllison W Dobson, Keith M Erikson, Michael AschnerMetal Ions in Life Sciences|January 29, 2014
Manganese in health and diseaseDaiana Silva Avila, Robson Luiz Puntel, Michael AschnerNeurochemistry International|April 4, 2015
Differential interaction of hGDH1 and hGDH2 with manganese: Implications for metabolism and toxicityChristina Dimovasili, Michael Aschner, Andreas Plaitakis, et al.Pageof 106