Gå til innhold
  • Send

  • Kategori

  • Sorter etter

  • Antall per side

Fant 10004 publikasjoner. Viser side 255 av 401:

Publikasjon  
År  
Kategori

Genotoxicity Assessment Of Nanomaterials In Advanced Liver And Lung Models

Elje, Elisabeth; Mariussen, Espen; Dusinska, Maria; Rundén-Pran, Elise

2022

Genotoxicity assessment of lung cells cultured at the air-liquid interface: comparison of bronchial and alveolar mono- and cocultures

Elje, Elisabeth; McFadden, Erin; Mariussen, Espen; Dusinska, Maria; Rundén-Pran, Elise

2022

Genotoxic effects of occupational exposure to glass fibres - A human biomonitoring study.

Ceppi, Marcello; Smolkova, Bozena; Staruchova, Marta; Kazimirova, Alena; Barancokova, Magdalena; Volkovova, Katarina; Collins, Andrew Richard; Kocan, Anton; Dzupinkova, Zuzana; Horska, Alexandra; Buocikova, Verona; Tulinska, Jana; Liskova, Aurelia; Mikusova, Miroslava Lehotska; Krivosikova, Zora; Wsolova, Ladislava; Kuba, Daniel; Rundén-Pran, Elise; Yamani, Naouale El; Longhin, Eleonora Marta; Halasova, Erika; Kyrtopoulos, Soterios; Bonassi, Stefano; Dusinska, Maria

As part of a large human biomonitoring study, we conducted occupational monitoring in a glass fibre factory in Slovakia. Shopfloor workers (n = 80), with a matched group of administrators in the same factory (n = 36), were monitored for exposure to glass fibres and to polycyclic aromatic hydrocarbons (PAHs). The impact of occupational exposure on chromosomal aberrations, DNA damage and DNA repair, immunomodulatory markers, and the role of nutritional and lifestyle factors, as well as the effect of polymorphisms in metabolic and DNA repair genes on genetic stability, were investigated.

The (enzyme-modified) comet assay was employed to measure DNA strand breaks (SBs) and apurinic sites, oxidised and alkylated bases. Antioxidant status was estimated by resistance to H2O2-induced DNA damage. Base excision repair capacity was measured with an in vitro assay (based on the comet assay).

Exposure of workers to fibres was low, but still was associated with higher levels of SBs, and SBs plus oxidised bases, and higher sensitivity to H2O2. Multivariate analysis showed that exposure increased the risk of high levels of SBs by 20%. DNA damage was influenced by antioxidant enzymes catalase and glutathione S-transferase (measured in blood). DNA repair capacity was inversely correlated with DNA damage and positively with antioxidant status. An inverse correlation was found between DNA base oxidation and the percentage of eosinophils (involved in the inflammatory response) in peripheral blood of both exposed and reference groups. Genotypes of XRCC1 variants rs3213245 and rs25487 significantly decreased the risk of high levels of base oxidation, to 0.50 (p = 0.001) and 0.59 (p = 0.001), respectively.

Increases in DNA damage owing to glass fibre exposure were significant but modest, and no increases were seen in chromosome aberrations or micronuclei. However, it is of concern that even low levels of exposure to these fibres can cause significant genetic damage.

2023

Genotoxic and mutagenic potential of nitramines.

Fjellsbø, L.M.; Verstraelen, S.; Kazimirova, A.; Van Rompay, A.R.; Magdolenova, Z.; Dusinska, M.

2014

Genetic variation in the major mitotic checkpoint genes associated with chromosomal aberrations in healthy humans.

Försti, A.; Frank, C.; Smolkova, B.; Kazimirova, A.; Barancokova, M.; Vymetalkova, V.; Kroupa, M.; Naccarati, A.; Vodickova, L.; Buchancova, J.; Dusinska, M.; Musak, L.; Vodicka, P.; Hemminki, K.

2016

Genetic variation associated with chromosomal aberration frequency: A genome‐wide association study

Niazi, Yasmeen; Thomsen, Hauke; Smolkova, Bozena; Vodickova, Ludmila; Vodenkova, Sona; Kroupa, Michal; Vymetalkova, Veronika; Kazimirova, Alena; Barancokova, Magdalena; Volkovova, Katarina; Staruchova, Marta; Hoffmann, Per; Nöthen, Markus M.; Dusinska, Maria; Musak, Ludovit; Vodicka, Pavel; Hemminki, Kari; Försti, Asta

2019

Genetic variability in biotransformation enzymes and immune response parameters in people exposed to mineral wool.

Horska, A.; Kuricova, M.; Tulinska, J.; Liskova, A.; Volkovová, K.; Wsólová, L.; Dusinska, M.

2010

Genetic predisposition and health effect of occupational exposure to asbestos.

Horská, A.; Kazimírová, A.; Barancokova, M.; Wsolová, L.; Tulinska, J.; Dusinska, M.

2006

Genetic determinants of quantitative traits associated with cardiovascular disease risk.

Smolkova, B.; Bonassi, S.; Buocikova, V.; Dusinska, M.; Horska, A.; Kuba, D.; Dzupinkova, Z.; Raslova, K.; Gašparovic, J.; Slíz, I.; Ceppi, M.; Vohnout, B.; Wsolova, L.; Volkovova, K.

2015

Generic radiative transfer model for the Earth's surface atmosphere system: Towards a community tool. NILU PP

Emde, C.; Kylling, A.; Gasteiger, J.; Buras, R.; Mayer, B.

2012

Generation of testable adverse outcome pathways (AOPs) for nanomaterial human hazard assessment

Murugadoss, Sivakumar; Vrcek, Ivana Vincovik; Cimpan, Mihaela-Roxana; Martens, Marvin; Gromelski, Maciej; Puzyn, Tomasz; Fessard, Valérie; Lynch, Iseult; Dusinska, Maria; Hoet, Peter

2020

Generalized Convergence Analysis of Tsetlin Automaton Based Algorithms: A Probabilistic Approach to Concept Learning

Belaid, Mohamed-Bachir; Sharma, Jivitesh; Lei, Jiao; Granmo, Ole-Christoffer; Andersen, Per-Arne; Yazidi, Anis

2025

Generality of fractal 1/f scaling in catchment tracer time series, and its implications for catchment travel time distributions.

Godsey, S.E.; Aas, W.; Clair, T.A.; de Wit, H.A.; Fernandez, I.J.; Kahl, J.S.; Malcolm, I.A.; Neal, C.; Neal, M.; Nelson, S.J.; Norton, S.A.; Palucis, M.C.; Skjelkvåle, B.L.; Soulsby, C.; Tetzlaff, D.; Kirchner, J.W.

2010

General overview: European Integrated project on Aerosol Cloud Climate and Air Quality interactions (EUCAARI) - integrating aerosol research from nano to global scales.

Kulmala, M.; Asmi, A.; Lappalainen, H. K.; Baltensperger, U.; Brenguier, J.-L.; Facchini, M. C.; Hansson, H.-C.; Hov, Ø.; O'Dowd, C. D.; Pöschl, U.; Wiedensohler, A.; Boers, R.; Boucher, O.; de Leeuw, G.; Denier van der Gon, H. A. C.; Feichter, J.; Krejci, R.; Laj, P.; Lihavainen, H.; Lohmann, U.; McFiggans, G.; Mentel, T.; Pilinis, C.; Riipinen, I.; Schulz, M.; Stohl, A.; Swietlicki, E.; Vignati, E.; Alves, C.; Amann, M.; Ammann, M.; Arabas, S.; Artaxo, P.; Baars, H.; Beddows, D. C. S.; Bergström, R.; Beukes, J. P.; Bilde, M.; Burkhart, J. F.; Canonaco, F.; Clegg, S. L.; Coe, H.; Crumeyrolle, S.; D'Anna, B.; Decesari, S.; Gilardoni, S.; Fischer, M.; Fjaeraa, A. M.; Fountoukis, C.; George, C.; Gomes, L.; Halloran, P.; Hamburger, T.; Harrison, R. M.; Herrmann, H.; Hoffmann, T.; Hoose, C.; Hu, M.; Hyvärinen, A.; Hõrrak, U.; Iinuma, Y.; Iversen, T.; Josipovic, M.; Kanakidou, M.; Kiendler-Scharr, A.; Kirkevåg, A.; Kiss, G.; Klimont, Z.; Kolmonen, P.; Komppula, M.; Kristjánsson, J.-E.; Laakso, L.; Laaksonen, A.; Labonnote, L.; Lanz, V. A.; Lehtinen, K. E. J.; Rizzo, L. V.; Makkonen, R.; Manninen, H. E.; McMeeking, G.; Merikanto, J.; Minikin, A.; Mirme, S.; Morgan, W. T.; Nemitz, E.; O'Donnell, D.; Panwar, T. S.; Pawlowska, H.; Petzold, A.; Pienaar, J. J.; Pio, C.; Plass-Duelmer, C.; Prévôt, A. S. H.; Pryor, S.; Reddington, C. L.; Roberts, G.; Rosenfeld, D.; Schwarz, J.; Seland, Ø.; Sellegri, K.; Shen, X. J.; Shiraiwa, M.; Siebert, H.; Sierau, B.; Simpson, D.; Sun, J. Y.; Topping, D.; Tunved, P.; Vaattovaara, P.; Vakkari, V.; Veefkind, J. P.; Visschedijk, A.; Vuollekoski, H.; Vuolo, R.; Wehner, B.; Wildt, J.; Woodward, S.; Worsnop, D. R.; van Zadelhoff, G.-J.; Zardini, A. A.; Zhang, K.; van Zyl, P. G.; Kerminen, V.-M.; S Carslaw, K.; Pandis, S. N.

2011

General overview of the RiskGONE Project

Longhin, Eleonora Marta; Isigonis, Panagiotis; Serchi, Tommaso; Neaves, Michael; Bohmer, Nils

2020

General concepts in meteorology and dynamics.

Charlton-Perez, A.; Lahoz, W.; Swinbank, R.

2010

GEIA's vision for improved emissions information. NILU F

Frost, G.J.; Granier, C.; Middleton, P.; Tarrasón, L.

2013

Gassutslipp skaper klimabekymring

Platt, Stephen Matthew (intervjuobjekt)

2022

Gasskraftverk Tjeldbergodden. NILU OR

Knudsen, S.; Larssen, T.; Haraldsen, T. K.

2003

Gassco Kårstø. Miljøkonsekvenser av økte NOx-utslipp. NILU OR

Tønnesen, D.; Berglen, T.F.; Svendby, T.

Norsk institutt for luftforskning (NILU) har gjort spredningsberegninger av utslipp til luft for å vurdere konsekvensene av å øke utslippene av NOx fra dagens utslippnivå på 775 tonn/år til 906 tonn/år. Maksimum beregnet timemiddel av NO2 for kjelene på Kårstø er 12,8 µg/m3 (bakgrunn 1 µg/m3) slik at norske akseptkriterier er overholdt. Regionale modellberegninger med WRF-EMEP-modellen viser at beregnet maksimalt timemiddel for NO2 er 59 µg NO2/m3, mens maksimalt døgnmiddel er 19 µg NO2/m3 (alle utslipp inkludert). Bidraget fra økte utslipp (fra 775 til 906 tonn/år) er mindre enn 1% for tørravsetning og mindre enn 1¿ for våtavsetning, dvs mindre enn naturlige år-til-årvariasjoner.

2015

Gasoline cars produce more carbonaceous particulate matter than modern filter-equipped diesel cars.

Platt, S. M.; El Haddad, I.; Pieber, S. M.; Zardini, A. A.; Suarez-Bertoa, R.; Clairotte, M.; Daellenbach, K. R.; Huang, R. J.; Slowik, J. G.; Hellebust, S.; Temime-Roussel, B.; Marchand, N.; de Gouw, J.; Jimenez, J. L.; Hayes, P. L.; Robinson, A. L.; Baltensperger, U.; Astorga, C.; Prévôt, A. S. H.

2017

Publikasjon
År
Kategori