Environmental Nanoplastics Liver Impact and Variability in Endogenous Networks
Sector: Water Supply and Storage • Location: Slovenia
Source: EU Funding & Tenders Portal
ENLIVEN is a research-through-training project designed to equip researcher with key expertise to tackle challenges in nanotoxicology. Plastic pollution has rapidly surpassed unprecedented in less than a century, with microplastics (MPs) found across various environments, ecosystems, and within the human body. MPs are present in the food we eat, the air we breathe, and the water we drink. While cu
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Participants
Sponsoring Agency | Obfuscated Data |
Company | Obfuscated Data |
Status
Original status | ongoing |
Taiyo status | Obfuscated Data |
Taiyo last update | 00-00-0000 |
Available timestamps | 00-00-0000 |
Available timestamp type | Obfuscated Data |
Contact
Contact name | Obfuscated Data |
Phone | 0000000000 |
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Address | Obfuscated Data, Obfuscated data, obfuscated data, Obfuscated data |
Description
Description | ENLIVEN is a research-through-training project designed to equip researcher with key expertise to tackle challenges in nanotoxicology. Plastic pollution has rapidly surpassed unprecedented in less than a century, with microplastics (MPs) found across various environments, ecosystems, and within the human body. MPs are present in the food we eat, the air we breathe, and the water we drink. While current analytical techniques limit the detection of nanoplastics (NPs <100 nm), plastic degradation continues beyond the microscale, leading to nanoscale interactions with potentially unknown consequences. NPs pose significant environmental and public health risks, particularly due to chronic exposure to harmful chemicals. Environmental nanoplastics (eNPs) are of particular concern due to their ability to penetrate cells and vital organs, increasing their retention in organisms. However, most research focuses on the environmental impact of MPs and NPs, leaving critical gaps in understanding their long-term effects on public health and biology. ENLIVEN aims to address this by uncovering the biological mechanisms of eNPs, examining their degradation, liver resilience, and long-term health impacts. Using human liver organoids and zebrafish embryos, ENLIVEN will study genes related to tolerance, sensitivity, and heritability, alongside liver resilience. The project proposes an innovative, integrative approach in predictive toxicology, combining bottom-up and top-down methodologies. It will link Adverse Outcome Pathways (AOP) through single-cell combinatorial RNA-seq and explore phenotypic variability via Drug-Induced Liver Injury studies in human liver organoids. This research will advance comparative human toxicology by revealing the biological mechanisms that respond to eNPs throughout life. Additionally, ENLIVEN will enhance researchers’ career prospects, foster international collaborations, and support the establishment of a research group at the home institution in Spain. |
Original sub-sector | Obfuscated |
Original Currency | USD |
Original budget | 000000000000000 |
Procurement method | Obfuscated Data |
Budget | 000000000000000 |
Location
Region | Obfuscated |
Country | Obfuscated |
State | Obfuscated Data |
County | Obfuscated |
Location | Obfuscated Data, Obfuscated data, obfuscated data, Obfuscated data |
Source
Source reliability | High |
Data quality score | 100% |
Source | Obfuscated Data |
URL | obfuscated_data,obfuscateddata.com |
More Details
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