Rothen-Rutishauser, B

Up a level
Export as [feed] RSS
Group by: Item Type | No Grouping
Number of items: 45.

Journal Article

von Garnier, C; Rothen-Rutishauser, B; Fink, A (2012). A particular therapy. International Innovation.

Mahmoudi, M; Hofmann, H; Rothen-Rutishauser, B; Petri-Fink, A (2012). Assessing the in vitro and in vivo toxicity of superparamagnetic iron oxide nanoparticles. Chemical reviews, 112((4)), pp. 2323-38. Washington, D.C.: American Chemical Society 10.1021/cr2002596

Müller, I; Comte P, J; Czerwinski, J; Kasper, M; Meyer, ACR; Schmid, A; Rosinus, I; Clift, MJD; Steiner, S; Gehr, P; Rothen-Rutishauser, B (2012). Investigating the potential for different scooter and car exhaust emissions to cause cytotoxic and (pro-)inflammatory responses to a 3D in vitro model of the human epithelial airway. Toxicological and environmental chemistry, 94((1)), pp. 164-180. Abingdon, UK: Taylor & Francis

Mahmoudi, M; Saeedi-Eslami, SN; Shokrgozar, MA; Azadmanesh, K; Hasanloo, M; Kalhor, H; Burtea, C; Rothen-Rutishauser, B; Laurent, S; Sheibani, S; Vali, H (2012). Cell "Vision": Complementary factor of protein corona in nano toxicology. Nanoscale, 4((17)), pp. 5461-8. Cambridge: Royal Society of Chemistry 10.1039/c2nr31185b

Steiner, S; Muller, I; Popovicheva, OB; Raemy, DO; Czerwinski, J; Comte, P; Mayer, A; Gehr, P; Rothen-Rutishauser, B; Clift, MJD (2012). Cerium dioxide nanoparticles can interfere with the associated cellular mechanistic response to diesel exhaust exposure. Toxicology letters, 214((2)), pp. 218-25. Amsterdam: Elsevier 10.1016/j.toxlet.2012.08.026

Clift, MJ; Raemy, DO; Endes, C; Ali, Z; Lehmann, AD; Brandenberger, C; Petri-Fink, A; Wick, P; Parak, WJ; Gehr, P; Schins, RP; Rothen-Rutishauser, B (2012). Can the Ames test provide an insight into nano-object mutagenicity? Investigating the interaction between nano-objects and bacteria. Nanotoxicology London: Informa Healthcare

Rivera-Gil, P; Clift, MJ; Rothen-Rutishauser, B; Parak, WJ (2012). Methods for understanding the interaction between nanoparticles and cells. Methods in molecular biology(926), pp. 22-56. Totowa, N.J.: Humana Press

Könczöl, M; Goldenberg, E; Ebeling, S; Schäfer, B; Garcia-Käufer, M; Gminski, R; Grobéty, B; Rothen-Rutishauser, B; Merfort, I; Gieré, R; Mersch-Sundermann, V (2012). Cellular uptake and toxic effects of fine and ultrafine metal-sulfate particles in human A549 lung epithelial cells. Chemical research in toxicology, 25((12)), pp. 2687-703. Washington, D.C.: American Chemical Society 10.1021/tx300333z

Petri-Fink, A; Rothen-Rutishauser, B (2012). Nanoparticles and cells: an interdisciplinary approach. CHIMIA, 66((3)), pp. 104-9. Bern: Schweizerische Chemische Gesellschaft 10.2533/chimia.2012.104

Rothen-Rutishauser, B; Clift, MJD; Jud, C; Fink, A; Wick, P (2012). Human epithelial cells in vitro - are they an advantageous tool to help understand the nanomaterial biological barrier interaction? EURO-NanoTox-Letters, 4((1)), pp. 1-20. Graz: BioNanoNet Forschungsgesellschaft

Blank, F; Gerber, P; Rothen-Rutishauser, B; Sakulkhu, U; Salaklang, J; de Peyer, K; Gehr, P; Nicod, LP; Hofmann, H; Geiser, T; Petri-Fink, A; von Garnier, C (2011). Biomedical nanoparticles retain an immature like functional state and show reduced antigen specific CD4+ T cell stimulation in vitro. Nanotoxicology(Jan 2011) London: Informa Healthcare

Ahmad, S; Raemy, DO; Loader, JE; Kailey, JM; Neeves, KB; White, CW; Ahmad, A; Gehr, P; Rothen-Rutishauser, B (2011). Interaction and localization of synthetic nanoparticles in healthy and cystic fibrosis airway epithelial cells: Effect of ozone exposure. Journal of aerosol medicine and pulmonary drug delivery, 25(1), pp. 7-15. New York, N.Y.: Mary Ann Liebert 10.1089/jamp.2011.0889

Könczöl, M; Ebeling, S; Goldenberg, E; Treude, F; Gminski, R; Gieré, R; Grobéty, B; Rothen-Rutishauser, B; Merfort, I; Mersch-Sundermann, V (2011). Cytotoxicity and genotoxicity of size-fractionated iron oxide (magnetite) in A549 human lung epithelial cells: role of ROS, JNK and NF-KB. Chemical research in toxicology, 24(9), pp. 1460-75. Washington, D.C.: American Chemical Society 10.1021/tx200051s

Frick, R; Müller-Edenhorn, B; Schlicker, A; Rothen-Rutishauser, B; Raemy, DO; Günther, D; Hattendorf, B; Stark, W; Beck-Schimmer, B (2011). Comparison of manganese oxide nanoparticles and manganese sulfate with regard to oxidative stress, uptake and apoptosis in alveolar epithelial cells. Toxicology letters, 205(2), pp. 163-72. Amsterdam: Elsevier 10.1016/j.toxlet.2011.05.1037

Wick, P; Clift, MJ; Rösslein, M; Rothen-Rutishauser, B (2011). A brief summary of carbon nanotubes science and technology: a health and safety perspective. ChemSusChem, 4(7), pp. 905-11. Weinheim: Wiley-VCH 10.1002/cssc.201100161

Paur, HR; Cassee, FR; Teeguarden, J; Fissan, H; Diabate, S; Aufderheide, M; Kreyling, WG; Hanninen, O; Kasper, G; Riediker, M; Rothen-Rutishauser, B; Schmid, O (2011). In-vitro cell exposure studies for the assessment of nanoparticle toxicity in the lung - A dialog between aerosol science and biology. Journal of aerosol science, 42(10), pp. 668-692. Amsterdam: Elsevier 10.1016/j.jaerosci.2011.06.005

Rothen-Rutishauser, B; Blank, F; Petri-Fink, A; Clift, MJ; Geiser, T; von Garnier, C (2011). Laser scanning microscopy combined with image restoration to analyse and quantify the intracellular localisation of fluorescently labelled nanoparticles. Imaging & microscopy Weinheim: GIT-Verlag

Maina, J N; West, J B; Orgeig, S; Foot, N J; Daniels, C B; Kiama, S G; Gehr, P; Mühlfeld, C; Blank, F; Müller, L; Lehmann, A; Brandenberger, C; Rothen-Rutishauser, B (2010). Recent advances into understanding some aspects of the structure and function of mammalian and avian lungs. Physiological and biochemical zoology, 83(5), pp. 792-807. Chicago, Ill.: University of Chicago Press 10.1086/652244

Berntsen, P; Park, C Y; Rothen-Rutishauser, B; Tsuda, A; Sager, T M; Molina, R M; Donaghey, T C; Alencar, A M; Kasahara, D I; Ericsson, T; Millet, E J; Swenson, J; Tschumperlin, D J; Butler, J P; Brain, J D; Fredberg, J J; Gehr, P; Zhou, E H (2010). Biomechanical effects of environmental and engineered particles on human airway smooth muscle cells. Interface - journal of the Royal Society, 7 Suppl 3(Suppl 3), S331-S340. London: The Royal Society 10.1098/rsif.2010.0068.focus

Blank, F; Gerber, P; Fink, A; Rothen-Rutishauser, B; de Peyer, K; Geiser, T; Nicod, LP; von Garnier, C (2010). Dendritic cells exposed to biomedical nanoparticles retain an immature like functional state and show reduced antigen specific CD4+ T cell stimulation in vitro. American journal of respiratory and critical care medicine, 181(A3096) New York, N.Y.: American Lung Association

Brandenberger, C; Rothen-Rutishauser, B; Blank, F; Gehr, P; Mühlfeld, C (2009). Particles induce apical plasma membrane enlargement in epithelial lung cell line depending on particle surface area dose. Respiratory research, 10(1), p. 22. London: BioMed Central 10.1186/1465-9921-10-22

Muhlfeld, C; Rothen-Rutishauser, B; Blank, F; Vanhecke, D; Ochs, M; Gehr, P (2008). Interactions of nanoparticles with pulmonary structures and cellular responses. American journal of physiology - lung cellular and molecular physiology, 294(5), L817-L829. Bethesda, Md.: American Physiological Society 10.1152/ajplung.00442.2007

Blank, F; von Garnier, Ch; Obregon, C; Rothen-Rutishauser, B; Gehr, P; Nicod, L (2008). The role of dendritic cells in the Lung: What do we know from in vitro models, animal models and human studies? Expert review of respiratory medicine, 2(2), pp. 215-233. London: Expert Reviews

Rothen-Rutishauser, B; Blank, F; Mühlfeld, C; Gehr, P (2008). In vitro models of the human epithelial airway barrier to study the toxic potential of particulate matter. ALTEX - Alternativen zu Tierexperimenten(25), pp. 191-196. Heidelberg: Spektrum Akademischer Verlag

Geiser, Marianne; Rothen-Rutishauser, B; Kapp, N; Schürch, S; Kreyling, W; Schulz, H; Semmler, M; Im Hof, V; Heyder, J; Gehr, P (2006). Respond: Ultrafine particles. Environmental health perspectives(114), A211-A213. Research Triangle Park, N.C.: National Institute of Environmental Health Sciences

Book Section

Rothen-Rutishauser, B; Blank, F; Mühlfeld, Ch; Gehr, P (2009). Nanoparticle-cell membrane interactions. In: Gehr P, Mühlfeld Ch (ed.) Particle-lung interactions, Second Edition (pp. 226-242). Informa Healthcare

Rothen-Rutishauser, B; Schurch, S; Gehr, P (2007). Interaction of particles with membranes. In: (pp. 139-160). Boca Raton: CRC Press

Book

Gehr, P; Mühlfeld, Ch; Rothen-Rutishauser, B; Blank, F (2009). Particle Lung Interactions, Second Edition. Informa Healthcare

Conference or Workshop Item

Blank, Fabian; Blom, Rebecca Agaatha Maria; Seydoux, Emilie; Amacker, Mario; Moser, Ch; Rodriquez-Lorenzo, L; Fytianos, K; Petri-Fink, A; Rothen-Rutishauser, B; Von Garnier, Christophe (September 2016). Modulation of the pulmonary immune Response by size and surface composition of biomedical nanoparticles (Unpublished). In: International Particle Toxicology Conference. Singapore. 26.-30.09.2016.

Blank, Fabian; Blom, Rebecca Agaatha Maria; Seydoux, Emilie; Amacker, Mario; Moser, Ch; Rodriquez-Lorenzo, L; Fytianos, K; Petri-Fink, A; Rothen-Rutishauser, B; Von Garnier, Christophe (September 2016). Modulation of the pulmonary immune Response by size and surface composition of biomedical nanoparticles (Unpublished). In: International Particle Toxicology Conference. Singapore. 26.-30.09.2016.

Beyeler, Seraina Martina; Chortarea, S; Rothen-Rutishauser, B; Petri-Fink, A; Wick, P; Tschanz, Stefan A.; Von Garnier, Christophe; Blank, Fabian (September 2016). Effects of aerosolized multi-walled carbon nanotubes in chronic obstructive pulmonary disease: An optimized human in vitro airway epithelial model for fibre exposure at the air-liquid interface (Unpublished). In: International Particle Toxicology Conference. Singapore. 26.-30.09.2016.

Beyeler, Seraina Martina; Chortarea, S; Rothen-Rutishauser, B; Petri-Fink, A; Wick, P; Tschanz, Stefan A.; Von Garnier, Christophe; Blank, Fabian (September 2016). Effects of aerosolized multi-walled carbon nanotubes in chronic obstructive pulmonary disease: An optimized human in vitro airway epithelial model for fibre exposure at the air-liquid interface (Unpublished). In: International Particle Toxicology Conference. Singapore. 26.-30.09.2016.

Jud, C; Angeloni, L; Muller, M; Liley, A; Petri-Fink, B; Rothen-Rutishauser, B (2012). The lung in a dish - a new tool to study the interaction of inhaled (nano) material with lung cells. In: Annual meeting European Respiratory Society. A - Vienna: Annual meeting European Respiratory Society

Strickland, DH; Blank, F; Wikstrom, M; Smith, M; Thomas, JA; Rothen-Rutishauser, B; Holt, P; Stumbles, Ph; von Garnier, C (2011). Resident common precursors for dendritic cells and macrophages in the lung parenchyma. In: Jahreskongress American Thoracic Society. Jahreskongress American Thoracic Society

Rothen-Rutishauser, B (2011). Investigating nanoparticle mutagenicity: Can nanoparticle-bacterial interactions provide an insight into the unknown? In: 15th ETH-Conference on Cumbustion Generated Nanoparticles. Zürich: 15th ETH-Conference on Cumbustion Generated Nanoparticles

Rothen-Rutishauser, B (2011). Co-cultures of immune and lung cells for in vitro assessment of nanoparticle toxicity. In: FP-7-Nanomune closing workshop: Nano-immuno-interactions. Stockholm.

Rothen-Rutishauser, B (2011). Nanotechnologie - Nutzen und Risiken. In: Kollegium Spiritus Sanctus, organised by the Fachschaft Chemie - Biologie. Brig.

Rothen-Rutishauser, B (2011). Nanopartikel-Lungenzell-Interaktionen: Risiken und Chancen. In: Jahrestagung Silag, Zürcherische Arbeitsgemeinschaft zur Erforschung und Bekämpfung der Staublungen in der Schweiz, Adophe Merckle Institute. Marly.

Rothen-Rutishauser, B (2011). Risk assessment of nanomaterials - Do we need to worry? In: Seminars in molecular toxicology, Molecular and Systems Toxicology, Department of Pharmaceutical Sciences, University of Basel. Basel.

Rothen-Rutishauser, B (2011). Air-liquid exposures of particles onto lung culture surfaces: A new standard to study particle-cell interactions. In: 18th Congress of International Society for Aerosols in Medicine. Rotterdam.

Blank, F; Gerber, P; Fink, A; Rothen-Rutishauser, B; de Peyer, K; Nicod, L; Geiser, T; von Garnier, C (2010). Exposure of dendritic cells to biomedical nanoparticles decreases antigen processing capacity and specific CD4+ T cell stimulation. In: , (ed.) Swiss Society for Pneumology. Lausanne: Swiss Society for Pneumology

Blank, F; Gerber, P; Fink, A; Rothen-Rutishauser, B; de Peyer, K; Nicod, L; Geiser, T; von Garnier, C (2010). Exposure of dendritic cells to biomedical nanoparticles decreases antigen processing capacity and specific CD4+ T cell stimulation. In: European Respiratory Society Annual Conference. Barcelona, Spain: European Respiratory Society Annual Conference

Blank, F; Gerber, P; Fink, A; Rothen-Rutishauser, B; de Peyer, K; Nicod, L; Geiser, T; von Garnier, C (2010). Exposure of dendritic cells to biomedical nanoparticles decreases antigen processing capacity and specific CD4+ T cell stimulation. In: 11th International Symposium on dendritic cells in fundamental and clinical immunology. Lugano.

Blank, F; Gerber, P; Fink, A; Rothen-Rutishauser, B; de Peyer, K; Nicod, L; Geiser, T; von Garnier, C (2010). Exposure of dendritic cells to biomedical nanoparticles decreases antigen processing capacity and specific CD4+ T cell stimulation. In: Day of clinical research at the Bern University. Bern: Day of clinical research at the Bern University

von Garnier, C; Gerber, P; Fink, A; Rothen-Rutishauser, B; de Peyer, K; Nicod, L; Geiser, T (2009). Exposure of dendritic cells to biomedical nanoparticles down-regulates antigen-specific CD4+ T cell stimulation. In: International conference of the European Respiratory Society. Wien.

This list was generated on Fri Apr 19 23:58:49 2024 CEST.
Provide Feedback