Dr. Cinta Porte (h-index = 62, 172 publications, 11,600 citations) specializes in the combined use of biochemical and chemical tools to evaluate the impact of pollution and human activities on aquatic ecosystems, with particular attention to endocrine disruptors. Her current research interests include the development and application of alternative in vitro methods based on fish and human cell lines, as well as advanced 3D models such as spheroids and organ-on-a-chip systems, with the aim of reducing the use of experimental organisms. These approaches have been applied to assess the toxicity of pharmaceuticals, plasticizers, plastic particles, and environmental samples, among other contaminants, and to investigate the mechanisms underlying endocrine disruption. The integration of lipidomics into these in vitro systems, including 3D spheroid models, represents an emerging research line aimed at identifying novel biomarkers of metabolic disturbance.
Cinta Porte Visa
Deputy Director (2)
- cinta.porte@idaea.csic.es
- 437760
- iD ORCID: 0000-0002-3940-6409
Summary
Latest publications
Lipidome and Gene Expression Profiling in Zebrafish Liver Spheroids: A 3D Model for Environmental Toxicology Applications
Environmental Science & Technology — 2025 — DOI: 10.1021/acs.est.5c02300
Distinctive lipidomic responses induced by polystyrene micro- and nano-plastics in zebrafish liver cells
Aquatic Toxicology — 2025 — DOI: 10.1016/j.aquatox.2025.107291
Comparative toxicity of beach mesoplastics from South Spain: An in vitro approach
Chemosphere — 2024 — DOI: 10.1016/j.chemosphere.2024.141494
Non-regulated haloaromatic water disinfection byproducts act as endocrine and lipid disrupters in human placental cells
Environmental Pollution — 2024 — DOI: 10.1016/j.envpol.2023.123092
Latest projects
202580E161
Implementación de modelos celulares 3D para la detección de disruptores endocrinos en matrices ambientales
Start date: 01/09/2025 - End date: 31/08/2028
Implementación de modelos celulares 3D para la detección de disruptores endocrinos en matrices ambientales
Start date: 09/01/2025 - End date: 31/08/2028
Moving from field studies to ex vivo models for understanding and predicting toxicological responses to multiple stressors in marine mammals (SLICE)
Start date: 01/10/2023 - End date: 31/12/2026
NFR334739
Whales and polar bear in a petri dish: decoding marine mammal toxicology through in vitro and in silico approachees (Marma-detox)
Start date: 01/10/2023 - End date: 31/08/2027
Moving from field studies to ex vivo models for understanding and predicting toxicological responses
Start date: 10/01/2023 - End date: 31/12/2026