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Alternatives to Laboratory Animals : ATLA|January 18, 2005
Neurotoxicology: principles and considerations of in vitro assessmentMichael Aschner, Tore SyversenChemical Research in Toxicology|April 8, 2016
Advanced Glycation End-Products and Their Receptors: Related Pathologies, Recent Therapeutic Strategies, and a Potential Model for Future Neurodegeneration StudiesAdi Pinkas, Michael AschnerBrain Research. Molecular Brain Research|February 8, 2003
Methylmercury-induced reactive oxygen species formation in neonatal cerebral astrocytic cultures is attenuated by antioxidantsGouri Shanker, Michael AschnerNeurotoxicology|November 14, 2002
Manganese causes differential regulation of glutamate transporter (GLAST) taurine transporter and metallothionein in cultured rat astrocytesKeith Erikson, Michael AschnerAdvances in Neurobiology|September 11, 2017
Methylmercury-Induced Neurotoxicity: Focus on Pro-oxidative Events and Related ConsequencesMarcelo Farina, Michael AschnerChemical Research in Toxicology|October 6, 2016
AGEs/RAGE-Related Neurodegeneration: daf-16 as a Mediator, Insulin as an Ameliorant, and C. elegans as an Expedient Research ModelAdi Pinkas, Michael AschnerJournal of Neuroendocrinology|March 5, 2025
Nuclear medicine and perspective thoughts in the diagnosis and treatment of pheochromocytoma and paragangliomaEmirhan Harbi, Michael AschnerNeurotoxicology|August 6, 2003
Developmental aspects of blood-brain barrier (BBB) and rat brain endothelial (RBE4) cells as in vitro model for studies on chlorpyrifos transportJian Yang, Michael AschnerBiochimica Et Biophysica Acta. General Subjects|January 20, 2019
Glutathione antioxidant system and methylmercury-induced neurotoxicity: An intriguing interplayMarcelo Farina, Michael AschnerInternational Journal of Molecular Sciences|February 10, 2021
The Effect of Lead Exposure on Autism DevelopmentAanya Goel, Michael AschnerPageof 104