BERRA ROMANI, ROBERTO

BERRA ROMANI, ROBERTO

MEDICINA Y CIENCIAS DE LA SALUD · Nivel 2

Endothelium Calcium signalling

Professor en Benemérita Universidad Autónoma de Puebla

Perfil académico

Nombre ROBERTO BERRA ROMANI
Área MEDICINA Y CIENCIAS DE LA SALUD
Campo MEDICINA Y CIENCIAS DE LA SALUD
Disciplina MEDICINA Y CIENCIAS DE LA SALUD
Especialidad FISIOLOGIA CARDIOVASCULAR
CVU 121216
Institución
Dependencia SIN INFORMACIÓN
Entidad PUEBLA
Nivel 2
Vigencia Inicio: 01/01/2025
Fin: 31/12/2029

Publicaciones ORCID

2026
The Ca2+–NO–ROS Crosstalk Induced by Arachidonic Acid in Human Lung Fibroblasts: Implications for Pulmonary Fibrosis International Journal of Molecular Sciences
The Emerging Role of Endothelial Ion Channels in the Control of Human Microcirculation International Journal of Molecular Sciences
2025
Modulation of Pulmonary Fibrosis by Pulmonary Surfactant-Associated Phosphatidylethanolamine In Vitro and In Vivo International Journal of Molecular Sciences
2024
The Unexpected Role of the Endothelial Nitric Oxide Synthase at the Neurovascular Unit: Beyond the Regulation of Cerebral Blood Flow International Journal of Molecular Sciences
MACHINE LEARNING IN THE PREDICTION OF TREATMENT RESPONSE IN RHEUMATOID ARTHRITIS: A SYSTEMATIC REVIEW Seminars in Arthritis and Rheumatism
Two Signaling Modes Are Better than One: Flux-Independent Signaling by Ionotropic Glutamate Receptors Is Coming of Age Biomedicines
2023
Cracking the Endothelial Calcium (Ca2+) Code: A Matter of Timing and Spacing International Journal of Molecular Sciences
Store-Operated Ca2+ Entry as a Putative Target of Flecainide for the Treatment of Arrhythmogenic Cardiomyopathy Journal of Clinical Medicine
Transient receptor potential ankyrin 1 (TRPA1) mediates reactive oxygen species-induced Ca2+ entry, mitochondrial dysfunction, and caspase-3/7 activation in primary cultures of metastatic colorectal carcinoma cells Cell Death Discovery
Allyl Isothiocianate Induces Ca2+ Signals and Nitric Oxide Release by Inducing Reactive Oxygen Species Production in the Human Cerebrovascular Endothelial Cell Line hCMEC/D3 Cells