SOURCE-LINKED INTELLIGENCE
Liver Titanium Dioxide Toxicology: Investigating the Mechanisms of Liver Toxicity Induced by the Food Additive E171 (Titanium Dioxide, TiO2) Using In Vitro, In Vivo, and In Silico Approaches
l hepatology, molecular biology, and computational modelling, enhancing career development and leadership in scientific research. The secondment will provide specialised training in chemoinformatics, machine learning, and predictive toxicology. Ultimately, LiTiTox’s findings will offer a deeper understanding of how E171 TiO2 nanoparticles affect liver health, contributing to the development of global regulatory policies. LiTiTox will play a crucial role in promoting food safety, sustainable nutrition, and safeguarding public health. Inflammation, Cell death, Pannexin 1 channels, E171, Titanium dioxide, Food additive, Liver toxicology, In vitro toxicology, Experimental hepatology, Mouse model, In silico, Food safety
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- recordType
- award
- status
- SIGNED
- region
- EU
- value
- 200400
- unit
- EUR
Evidence & attribution
European Commission, CORDIS Horizon Europe project dataset. Metadata adapted.
License: CORDIS reuse policy
First collected: 2026-09-20T04:21:15.460Z. This is not the publication date.