Neurotoxicity Studies
Neurotoxicity studies focus on understanding how exposure to chemicals, drugs, or environmental agents damages the nervous system. These investigations identify mechanisms that lead to neuronal injury, cognitive decline, and neurodegenerative diseases.
The Neurotoxicity Studies session explores toxicant-induced cellular dysfunction, oxidative stress, and neurotransmission impairment. Researchers discuss both acute and chronic exposures —from industrial chemicals and pesticides to nanomaterials and pharmaceutical agents.
At the Neurotoxicity Studies Conference, neuroscientists, toxicologists, and pharmacologists present in-vivo, in-vitro, and computational models evaluating dose response and molecular damage pathways. The session highlights risk assessment strategies and regulatory frameworks supporting public health safety.
This session is designed for experts working in toxicology, neuropharmacology, and environmental neuroscience to advance understanding of chemical exposure effects on the brain.
Recent discoveries in Molecular Neuroscience reveal how heavy metals and pesticides trigger epigenetic changes leading to long-term neuronal degeneration.
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Mechanisms of Neural Injury
- Oxidative damage and mitochondrial dysfunction in neurons
- Excitotoxic pathways and calcium imbalance
Environmental and Pharmaceutical Toxicants
- Lead, mercury, and pesticide effects on neural circuits
- Adverse neurological outcomes of drug overdose and metabolites
Cellular and Animal Models
- Human induced pluripotent stem-cell platforms for toxicity testing
- Rodent behavioral assays linking chemical exposure to cognition
Biomarkers and Diagnostics
- CSF and blood biomarkers detecting early neurotoxicity
- Imaging tools visualizing white-matter alterations
Risk Assessment and Regulation
- Toxic threshold evaluation and public-health policy development
- Safety standards for neuroactive industrial chemicals
Why Attend
Understand the Impact of Neurotoxic Exposures
Gain insight into how environmental agents and drugs affect brain function.
Explore Predictive Toxicology Tools
Learn about modern in-vitro systems and AI toxicity models.
Collaborate Across Disciplines
Engage with toxicologists and neuroscientists bridging research and public policy.
Advance Neuroprotection Research
Identify therapeutic strategies to prevent or reverse neurotoxic damage.
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