|
|
Elucidation of mitochondrial mechanisms critical to mediating PFAS neurotoxicity |
| 1 K99 ES032488-01A1 |
SAMMI, SHREESH RAJ |
NIEHS |
2021 |
|
|
Dieldrin-induced differential gene methylation and parkinsonian toxicity |
| 1 R01 ES031237-01A1 |
BERNSTEIN, ALISON |
NIEHS |
2021 |
|
|
Sensory Mechanisms of Cadmium-Induced Behavioral Disorders Across Generations |
| 5 K99 ES030398-02 |
SHELTON, DELIA S |
NIEHS |
2021 |
|
|
Environmental Mitochondrial Toxicants Cause LRRK2 Activation in Parkinson's Disease |
| 5 R00 ES029986-04 |
DE MIRANDA, BRIANA |
NIEHS |
2021 |
|
|
Mechanisms of Manganese Neurotoxicity |
| 5 R01 ES010563-21 |
ASCHNER, MICHAEL |
NIEHS |
2021 |
|
|
The Neuroimmune Hypothesis of Paraquat: Connecting the Periphery and Brain |
| 5 R01 ES028104-04 |
BLOCK, MICHELLE L |
NIEHS |
2021 |
|
|
ATP13A2 and Susceptibility to Neurodegeneration |
| 5 R01 ES031124-02 |
FLEMING, SHEILA |
NIEHS |
2021 |
|
|
Role of Epigenetically Active Environmental Compounds in Neurodevelopmental Disorders |
| 5 R21 ES030804-02 |
TERSKIKH, ALEXEY V |
NIEHS |
2021 |
|
|
BTBD9, a novel regulator of manganese-induced neurotoxicity |
| 5 R21 ES031315-02 |
CHEN, PAN |
NIEHS |
2021 |