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1.
Koklič, T.* et al.: P18-30 Biological relevance of InFinite lung digital twin mode of actionprediction of particulate-induced chronic lung inflammation. Poster: (2026)
2.
Lei, P.* et al.: P22-02 An AOP-anchored key event scoring framework enables cross-material transcriptomic meta-analysis of nanomaterial-induced pulmonary fibrosis. Poster: (2026)
3.
Scholz, S.* et al.: P16-03 Copper Oxide Particles Disrupt Intestinal Barrier Integrity and Induce Cuproptosis-Related Key Events in Differentiated Caco-2 Cells. Poster: (2026)
4.
Strancar, J.* ; Urbancic, I.* ; Koklič, T.* ; Stöger, T. & Vogel, U.*: P30-22 InFinite lung digital twin – pre-validated fully functional NAM candidate capable to predict chronic inflammation far beyond the time window of in vitro early response monitoring. Poster: (2026)
5.
Sundberg, M.* et al.: P33-02 Serum Amyloid A mediates hepatic acute phase response in a TLR2-dependent manner following pulmonary exposure to carbon nanotubes. Poster: (2026)
6.
Urbancic, I.* et al.: OS02-06 InFinite digital twin for prediction of chronic lung inflammation from high-throughput in vitro live-cell microscopy. Poster: (2026)
7.
Brecklinghaus, T.* et al.: In vitro/in silico prediction of drug induced steatosis in relation to oral doses and blood concentrations by the Nile Red assay. Toxicol. Lett. 368, 33-46 (2022)
8.
Dimitrov, S. et al.: Activated integrins identify functional antigen-specific CD8+ T cells within minutes after antigen stimulation. Toxicol. Lett. 115, E5536-E5545 (2018)
9.
Klein, D. et al.: Single ingestion of di-(2-propylheptyl) phthalate (DPHP) by male volunteers: DPHP in blood and its metabolites in blood and urine. Toxicol. Lett. 294, 105-115 (2018)
10.
Klein, D. et al.: Corrigendum to “Single ingestion of di-(2-propylheptyl) phthalate (DPHP) by male volunteers: DPHP in blood and its metabolites in blood and urine” [Toxicol. Lett. 294 (2018) 105–115]. Toxicol. Lett. 296, 105 (2018)
11.
Filser, J.G. & Klein, D.: A physiologically based toxicokinetic model for inhaled ethylene and ethylene oxide in mouse, rat, and human. Toxicol. Lett. 286, 54-79 (2017)
12.
Neu, E.* et al.: On importance of pathophysiology for an integrative toxicology. Toxicol. Lett. 280, S305-S305 (2017)
14.
Klein, D. et al.: Di-(2-propylheptyl) phthalate (DPHP) and its metabolites in blood of rats upon single oral administration of DPHP. Toxicol. Lett. 259, 80-86 (2016)
15.
Mertes, F. ; Uciechowski, P.* ; Loa, A.* ; Rink, L.* & Schramm, K.*: Ready to use EROD assay by cryo-preserved cells and quantification by standard addition method. Toxicol. Lett. 258, S176-S176 (2016)
16.
Bellomo, F. et al.: An in vivo and in vitro comparative study of silver nanoparticles toxicity in the lung. Toxicol. Lett. 229, S239 (2014)
17.
Bengalli, R.D.* et al.: In vitro lung models for testing NPs effects: A case study on zinc oxide toxicity. Toxicol. Lett. 229, S187 (2014)
18.
Gajewska, M.* ; Worth, A.* ; Urani, C.* ; Briesen, H.* & Schramm, K.-W.: Application of physiologically-based toxicokinetic modelling in oral-to-dermal extrapolation of threshold doses of cosmetic ingredients. Toxicol. Lett. 227, 189-202 (2014)
19.
Habel, N.C. ; Kutschke, D. ; Eickelberg, O. ; Meiners, S. & Stöger, T.: Critical role of interleukin 1 for the initiation and resolution of pulmonary inflammation induced by carbon nanomaterials. Toxicol. Lett. 229, S192-S193 (2014)
20.
Ulutas, O.K.* et al.: Blood endocrine disruptor levels in cryptorchidic newborns. Toxicol. Lett. 229, S92 (2014)