Area of research
Materials Chemistry · Health, Toxicology and Mutagenesis
Research interest
Research interests include Nanoparticles: synthesis and applications, Air Quality and Health Impacts, Carcinogens and Genotoxicity Assessment, and DNA Repair Mechanisms.
Dynamic QSAR modeling for predicting in vivo genotoxicity and inflammation induced by nanoparticles and advanced materials: a time-dose-property/response approach
OS03-05 Differential toxicology of air pollution: co-exposure of particulate matter and NO2 induces transcriptomic alterations at the epithelial airway barrier in vitro
A human relevant in vitro alveolar epithelial barrier model to assess inhaled pollutant hazard
Next Generation Risk Assessment approaches for advanced nanomaterials: Current status and future perspectives
Implementation of effect biomarkers in human biomonitoring studies: A systematic approach synergizing toxicological and epidemiological knowledge
Polymorphisms within Autophagy-Related Genes as Susceptibility Biomarkers for Multiple Myeloma: A Meta-Analysis of Three Large Cohorts and Functional Characterization
Identification of novel genetic loci for risk of multiple myeloma by functional annotation
122 Elucidating the Impact of Inhaled Micro-, Nanoplastics (MNPs) from Surgical Face Masks In Vitro
36 An Investigation into Mechanisms Responsible for (geno)Toxicity Induced by Exposure to Industrially-Relevant Multi-Component Nanomaterials and high Aspect Ratio Nanomaterials
The Use of Human Biomonitoring to Assess Occupational Exposure to PAHs in Europe: A Comprehensive Review
The Road to Achieving the European Commission's Chemicals Strategy for Nanomaterial Sustainability—A PATROLS Perspective on New Approach Methodologies
The influence of exposure approaches to <i>in vitro</i> lung epithelial barrier models to assess engineered nanomaterial hazard
The application of existing genotoxicity methodologies for grouping of nanomaterials: towards an integrated approach to testing and assessment
A pleiotropic variant in <scp><i>DNAJB4</i></scp> is associated with multiple myeloma risk
Non‐Animal Strategies for Toxicity Assessment of Nanoscale Materials: Role of Adverse Outcome Pathways in the Selection of Endpoints
Adverse Outcome Pathway Development for Assessment of Lung Carcinogenicity by Nanoparticles
A polygenic risk score for multiple myeloma risk prediction
Comparing the impact of multi-walled carbon nanotubes between murine and human lung epithelial cell models in vitro
Development of a Liver Carcinoma Biomarker Panel in 3D HepG2 Liver Spheroids Following Exposure to Ag and Tio2 Nanomaterials
Nanofibre inhalation toxicology: providing the foundations for safe-by-design in-silico models
Adverse outcome pathways as a tool for the design of testing strategies to support the safety assessment of emerging advanced materials at the nanoscale
Pulmonary toxicity of synthetic amorphous silica – effects of porosity and copper oxide doping
Translating Scientific Advances in the AOP Framework to Decision Making for Nanomaterials
Common gene variants within 3′‐untranslated regions as modulators of multiple myeloma risk and survival
A polygenic risk score for multiple myeloma risk prediction: E-poster
University of Southern Denmark Research Portal (University of Southern Denmark) 2020cited by 0position: middle
Pulmonary effects of nanofibrillated celluloses in mice suggest that carboxylation lowers the inflammatory and acute phase responses
Association between a urinary biomarker for exposure to PAH and blood level of the acute phase protein serum amyloid A in coke oven workers
Genetic polymorphisms in genes of class switch recombination and multiple myeloma risk and survival: an IMMEnSE study
Safety Assessment of Graphene-Based Materials: Focus on Human Health and the Environment
Editorial: dose-dependent ZnO particle-induced acute phase response in humans warrants re-evaluation of occupational exposure limits for metal oxides