Search results
Results: 22
Number of items: 22
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Puhlmann, N., Abbate, E., Kümmerer, K., Oomen, A. G., Ragas, A. M. J., & Moermond, C. (2024). Applicability of the European Commission's framework on safe and sustainable by design to the pharmaceutical sector. Sustainable Chemistry and Pharmacy, 42, Article 101845. https://doi.org/10.1016/j.scp.2024.101845 -
Di Battista, V., Sanchez-Lievanos, K. R., Jeliazkova, N., Murphy, F., Tsiliki, G., Zabeo, A., Gajewicz-Skretna, A., Mikołajczyk, A., Hristozov, D., Stone, V., Schmid, O., Hunt, N., Oomen, A. G., & Wohlleben, W. (2024). Similarity of multicomponent nanomaterials in a safer-by-design context: the case of core-shell quantum dots. Environmental Science: Nano, 11(3), 924-941 . https://doi.org/10.1039/d3en00338h -
Di Cristo, L., Keller, J. G., Leoncino, L., Marassi, V., Loosli, F., Ag Seleci, D., Tsiliki, G., Oomen, A. G., Stone, V., Wohlleben, W., & Sabella, S. (2024). Critical aspects in dissolution testing of nanomaterials in the oro-gastrointestinal tract: the relevance of juice composition for hazard identification and grouping. Nanoscale Advances, 6(3), 798-815. https://doi.org/10.1039/d3na00588g -
Usmani, S. M., Oomen, A. G., & NAMS4NANO Project (2024). Review of New Approach Methodologies for Application in Risk Assessment of Nanoparticles in the Food and Feed Sector: Status and Challenges. EFSA Supporting Publications, 21(9), Article 8826E. https://doi.org/10.2903/sp.efsa.2024.EN-8826 -
Haase, A., Oomen, A. G., & NAMS4NANO consortium (2024). Proposal for a qualification system for New Approach Methodologies (NAMs) in the food and feed sector: example of implementation for nanomaterial risk assessment. EFSA Supporting Publications, 21(9), Article EN-9008. https://doi.org/10.2903/sp.efsa.2024.EN-9008 -
Monikh, F. A., Peijnenburg, W., Oomen, A. G., Valsami-Jones, E., Stone, V., Kortet, R., Akkanen, J., Zhang, P., Kekäläinen, J., Sevcu, A., & Kukkonen, J. V. K. (2023). “Advanced materials” and the challenges on the horizon for testing their (eco)toxicity and assessing their hazard. Environmental Science: Advances, 2(2), 162-170. https://doi.org/10.1039/D2VA00128D -
Schoonjans, R., Castenmiller, J., Chaudhry, Q., Cubadda, F., Daskaleros, T., Franz, R., Gott, D., Mast, J., Mortensen, A., Oomen, A. G., Rauscher, H., Weigel, S., Astuto, M. C., Cattaneo, I., Barthelemy, E., Rincon, A., & Tarazona, J. (2023). Regulatory safety assessment of nanoparticles for the food chain in Europe. Trends in Food Science & Technology, 134, 98-111. https://doi.org/10.1016/j.tifs.2023.01.017 -
Murphy, F. A., Johnston, H. J., Dekkers, S., Bleeker, E. A. J., Oomen, A. G., Fernandes, T. F., Rasmussen, K., Jantunen, P., Rauscher, H., Hunt, N., di Cristo, L., Braakhuis, H. M., Haase, A., Hristozov, D., Wohlleben, W., Sabella, S., & Stone, V. (2023). How to formulate hypotheses and IATA to support grouping and read-across of nanoforms. Altex-Alternatives To Animal Experimentation, 40(1), 125–140. https://doi.org/10.14573/altex.2203241 -
Di Cristo, L., Janer, G., Dekkers, S., Boyles, M., Giusti, A., Keller, J. G., Wohlleben, W., Braakhuis, H., Ma-Hock, L., Oomen, A. G., Haase, A., Stone, V., Murphy, F., Johnston, H. J., & Sabella, S. (2022). Integrated approaches to testing and assessment for grouping nanomaterials following dermal exposure. Nanotoxicology, 16(3), 310-332. https://doi.org/10.1080/17435390.2022.2085207
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