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Found 9763 publications. Showing page 207 of 391:

Publication  
Year  
Category

Linking aerosol size distribution and hygroscopicity to cloud droplet formation at an Arctic mountain site

Motos, Ghislain; Freitas, Gabriel; Georgakaki, Paraskevi; Wieder, Jörg; Aas, Wenche; Lunder, Chris Rene; Krejci, Radovan; Pasquier, Julie T.; Henneberger, Jan; David, Robert Oscar; Mohr, Claudia; Zieger, Paul; Nenes, Athanasios

2023

Linking atmospheric dimethyl sulfide (DMS) and the Arctic Ocean spring bloom.

Park, K.-T.; Lee, K.; Yoon, Y.-J.; Lee, H.-W.; Kim, H.-C.; Lee, B.-Y.; Hermansen, O.; Kim, T.-W.; Holmen, K. J.

2013

Linking Nanomaterial-Induced Mitochondrial Dysfunction to Existing Adverse Outcome Pathways for Chemicals

Murugadoss, Sivakumar; Vrček, Ivana Vinković; Schaffert, Alexandra; Paparella, Martin; Pem, Barbara; Sosnowska, Anita; Stępnik, Maciej; Martens, Marvin; Willighagen, Egon L.; Puzyn, Tomasz; Cimpan, Mihaela-Roxana; Lemaire, Frauke; Mertens, Birgit; Dusinska, Maria; Fessard, Valérie; Hoet, Peter H.

The Adverse Outcome Pathway (AOP) framework plays a crucial role in the paradigm shift of toxicity testing towards the development and use of new approach methodologies. AOPs developed for chemicals are in theory applicable to nanomaterials (NMs). However, only subtle efforts have been made to integrate information on NM-induced toxicity into existing AOPs. In a previous study, we identified AOPs in the AOP-Wiki associated with the molecular initiating events (MIEs) and key events (KEs) reported for NMs in scientific literature. In a next step, we analyzed these AOPs and found that mitochondrial toxicity plays a significant role in several of them at the molecular and cellular levels. In this study, we aimed to generate hypothesis-based AOPs related to NM-induced mitochondrial toxicity. This was achieved by integrating science-based information collected on NM-induced mitochondrial toxicity into all existing AOPs in the AOP-Wiki, which already includes mitochondrial toxicity as a MIE/KE. The results showed that several AOPs in the AOP-Wiki related to the lung, liver, cardiovascular and nervous system, with extensively defined KEs and key event relationships (KERs), could be utilized to develop AOPs that are relevant for NMs. Our results also indicate that the majority of the studies included in our literature review were of poor quality, particularly in reporting NM physico-chemical characteristics, and NM-relevant mitochondrial MIEs were scarcely reported. This study highlights the potential role of NM-induced mitochondrial toxicity in human-relevant adverse outcomes and identifies useful AOPs in the AOP-Wiki for the development AOPs that are relevant for NMs.

2023

Linking nanomaterial-induced mitochondrial dysfunction to existing adverse outcome pathways for chemicals

Murugadoss, Sivakumar; Vinković Vrček, Ivana; Schaffert, Alexandra; Paparella, Martin; Pem, Barbara; Sosnowska, Anita; Stępnik, Maciej; Martens, Marvin; Willighagen, Egon L.; Puzyn, Tomasz; Cimpan, Mihaela Roxana; Lemaire, Frauke; Mertens, Birgit; Dusinska, Maria; Fessard, Valérie; Hoet, Peter H.

The adverse outcome pathway (AOP) framework plays a crucial role in the paradigm shift of tox­icity testing towards the development and use of new approach methodologies. AOPs developed for chemicals are in theory applicable to nanomaterials (NMs). However, only initial efforts have been made to integrate information on NM-induced toxicity into existing AOPs. In a previous study, we identified AOPs in the AOP-Wiki associated with the molecular initiating events (MIEs) and key events (KEs) reported for NMs in scientific literature. In a next step, we analyzed these AOPs and found that mitochondrial toxicity plays a significant role in several of them at the molecular and cellular levels. In this study, we aimed to generate hypothesis-based AOPs related to NM-induced mitochondrial toxicity. This was achieved by integrating knowledge on NM-induced mitochondrial toxicity into all existing AOPs in the AOP-Wiki, which already includes mitochondrial toxicity as a MIE/KE. Several AOPs in the AOP-Wiki related to the lung, liver, cardiovascular and nervous system, with extensively defined KEs and key event relationships (KERs), could be utilized to develop AOPs that are relevant for NMs. However, the majority of the studies included in our literature review were of poor quality, particularly in reporting NM physicochemical characteristics, and NM-relevant mitochondrial MIEs were rarely reported. This study highlights the potential role of NM-induced mitochondrial toxicity in human-relevant adverse outcomes and identifies useful AOPs in the AOP-Wiki for the development of AOPs for NMs.

Elsevier

2024

Links to Copernicus data and services. Status and recommendations.

Tarrasón, Leonor; Schneider, Philipp; Hamer, Paul David; Stebel, Kerstin; Rouïl, Laurence; Colette, Augustin; Esteve, Jaume

This report presents available Copernicus data from both its satellite and service component. It contains a comprehensive overview of the status of use of Copernicus data and products in the work of the European Environment Agency (EEA) and provides recommendations to make better use of Copernicus information focusing on the activities of the European Topic Centre for Air pollution, Transport, Noise, and Industry pollution (ETC/ATNI). Specific recommended activities to make better use of Copernicus data involve mapping and emission activities at ETC/ATNI, trend analysis, noise, and air quality assessments as well as the development of on-line air quality services and the implementation of urban sustainability studies.

ETC/ATNI

2021

2001

Living with a volcano. Scientific and operational aspects.

Bagni, M.; Bignami, C.; Bosi, V.; Buongiorno, F.; Costantini, L.; Faria, B.; Fonseca, J.; Hidayati, S.; Jenkins, S.; Jousset, P.; Le Cozannet, G.; Marchetti, E.; Oppenheimer, C.; Pereira, R.L.; Prata, F.; Ripepe, M.; Silva, F.; Spinetti, C.; Sumarti, S.; Surono, Vazao, T.

2012

Livsfarlig røyk truer storbyen: - Lukter brent

Guerreiro, Cristina (interview subject); Andresen, Frode (journalist)

2019

Local and regional description of particulate matter in the Oslo area.

Slørdal, L.H.; Laupsa, H.; Wind, P.; Tarrasón, L.

2004

Local kinetic interpretation of entropy production through reversed diffusion.

Porporato, A.; Kramer, P.R.; Cassiani, M.; Daly, E.; Mattingly, J.

2011

Local organic pollutants in the Arctic: Sentinels for polar environmental change

Kallenborn, Roland; Ali, Aasim Musa Mohamed; Drotikova, Tatiana; Hartz, William Frederik

2023

Local pollution in Svalbard - Whereabouts of anthropogenic particles in an Arctic fjord system

Philipp, Carolin; Collard, France; Husum, Katrine; Halsband, Claudia; Herzke, Dorte; Corami, Fabiana; Gabrielsen, Geir Wing; Hallanger, Ingeborg G.

2023

Local sources of organic contaminants in the Arctic environment

Kallenborn, Roland; Ali, Aasim Musa Mohamed; Drotikova, Tatiana; Hartz, William Frederik

2023

Localized real-time information on outdoor air quality at kindergartens in Oslo, Norway using low-cost sensor nodes

Castell, Nuria; Schneider, Philipp; Grossberndt, Sonja; Fredriksen, Mirjam; Sousa Santos, Gabriela; Vogt, Matthias; Bartonova, Alena

Elsevier

2018

Lokal luftforurensning.

Høiskar, B.A.K.; Sundvor, I.; Sousa Santos, G.; Vogt, M.

2016

Lokal luftforurensning.

Høiskar, B.A.K.; Sundvor, I.; Sousa Santos, G.; Vogt, M.

2016

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