SANCHEZ RODRIGUEZ, JORGE ALBERTO
SIN INFORMACIÓN · Nivel 3
Desde 1984 es Full professor en Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional
| Nombre | JORGE ALBERTO SANCHEZ RODRIGUEZ |
|---|---|
| Área | BIOLOGÍA Y QUÍMICA |
| Campo | SIN INFORMACIÓN |
| Disciplina | SIN INFORMACIÓN |
| Especialidad | CANALES IONICOS EN MEMBRANAS EXCITABLES |
| CVU | 1054 |
| Institución | |
|---|---|
| Dependencia | SECCION EXTERNA DE TOXICOLOGIA |
| Entidad | CIUDAD DE MEXICO |
| Nivel | 3 |
| Vigencia | Inicio: 01/01/2022 |
| Fin: 31/12/2036 | |
| Categoría: | EXTENSION 15 AÑOS |
Publicaciones ORCID
- 2026
- The Cavβ4 subunit of Cav1.2 channels antagonizes isoproterenol‐induced hypertrophy in rat cardiac muscle cells by down‐regulating miR‐183‐5p Physiological Reports
- 2025
- Pharmacological Preconditioning with Diazoxide Upregulates HCN4 Channels in the Sinoatrial Node of Adult Rat Cardiomyocytes International Journal of Molecular Sciences
- 2024
- Thyroid Hormone Upregulates Cav1.2 Channels in Cardiac Cells via the Downregulation of the Channels’ β4 Subunit International Journal of Molecular Sciences
- 2023
- Exercise increases MEF2A abundance in rat cardiac muscle by downregulating microRNA-223-5p Scientific Reports
- 2021
- Dantrolene hinders dengue virus-induced upregulation and translocation of calmodulin to cardiac cell nuclei Virology
- 2020
- The mitochondrial K-ATP channel opener diazoxide upregulates STIM1 and Orai1 via ROS and the MAPK pathway in adult rat cardiomyocytes. Cell & bioscience
- The mitochondrial K-ATP channel opener diazoxide upregulates STIM1 and Orai1 via ROS and the MAPK pathway in adult rat cardiomyocytes
- The mitochondrial K-ATP channel opener diazoxide upregulates STIM1 and Orai1 via ROS and the MAPK pathway in adult rat cardiomyocytes
- 2019
- Pharmacological Preconditioning Using Diazoxide Regulates Store-Operated Ca2 + Channels in Adult Rat Cardiomyocytes. Frontiers in physiology
- 2018
- The β 4 subunit of Ca v 1.2 channels is required for an optimal interferon response in cardiac muscle cells Science Signaling