DE VIZCAYA RUIZ, ANDREA MARISA GABRIELA
CIENCIAS MÉDICAS · Nivel 3
Desde 2022 es Professor en University of California, Irvine
My research is focused on Inhalation Toxicology in response to inhaled particles in the air, environmental or manufactured, or other inhaled toxicants using in vitro and in vivo models. We study the mechanistic responses via inflammation, tissue injury, and oxidative...
My research is focused on Inhalation Toxicology in response to inhaled particles in the air, environmental or manufactured, or other inhaled toxicants using in vitro and in vivo models. We study the mechanistic responses via inflammation, tissue injury, and oxidative stress signaling that lead to pulmonary disease and diseases beyond the lung (cardiovascular system, metabolic disease, renal injury in utero toxicity) and gender-specific responses. Additionally, my research examines the toxic effects of nano-sized materials, micro-nano plastics, and non-tailpipe emissions, emphasizing chemical properties.
Información*
| Nombre | ANDREA MARISA GABRIELA DE VIZCAYA RUIZ |
|---|---|
| Área | MEDICINA Y CIENCIAS DE LA SALUD |
| Campo | CIENCIAS MÉDICAS |
| Disciplina | TOXICOLOGÍA |
| Especialidad | TOXICOLOGIA |
| CVU | 21679 |
| Institución |
SIN INSTITUCIÓN
|
|---|---|
| Dependencia | NO APLICA |
| Entidad | NO APLICA |
| Nivel | 3 |
| Vigencia | Inicio: 01/01/2023 |
| Fin: 31/12/2027 |
* Información del primer trimestre de 2026.
Fuente: SECIHTI.
Últimas publicaciones Scopus
- 2026
- Nontailpipe Particulate Matter from Brake Wear, Tire Tread, and Road Dust: Environmentally Persistent Free Radicals, Reactive Oxygen Species, and Oxidative Potential ACS Earth and Space Chemistry · Vol. 10 Article
- Nuclear and cytoskeletal structural alterations in human alveolar epithelial cells by solvent-extracted organic matter from PM2.5 Environmental Toxicology and Pharmacology · Vol. 124 Article
- 2025
- Urinary oxidative stress biomarkers in nephrotoxicity induced by PM2.5 in a rat model Inhalation Toxicology · Vol. 37 Article
- 2024
- Aluminum enhances the oxidative damage of ZnO NMs in the human neuroblastoma SH-SY5Y cell line Discover Nano · Vol. 19 Article
- Fine particulate matter and intima media thickness: Role of endothelial function biomarkers Environmental Epidemiology · Vol. 8 Article