TUBE Project: Transport-Derived Ultrafines and the Brain Effects

Publication date

2021-12-28

Authors

Martikainen, Maria-Viola
Aakko-Saksa, Päivi
van den Broek, Lenie
Cassee, FlemmingORCID 0000-0001-9958-8630ISNI 0000000388170815
Carare, Roxana O
Chew, Sweelin
Dinnyes, AndrasISNI 0000000419435602
Giugno, Rosalba
Kanninen, Katja M
Malm, Tarja

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by

Abstract

The adverse effects of air pollutants on the respiratory and cardiovascular systems are unquestionable. However, in recent years, indications of effects beyond these organ systems have become more evident. Traffic-related air pollution has been linked with neurological diseases, exacerbated cognitive dysfunction, and Alzheimer's disease. However, the exact air pollutant compositions and exposure scenarios leading to these adverse health effects are not known. Although several components of air pollution may be at play, recent experimental studies point to a key role of ultrafine particles (UFPs). While the importance of UFPs has been recognized, almost nothing is known about the smallest fraction of UFPs, and only >23 nm emissions are regulated in the EU. Moreover, the role of the semivolatile fraction of the emissions has been neglected. The Transport-Derived Ultrafines and the Brain Effects (TUBE) project will increase knowledge on harmful ultrafine air pollutants, as well as semivolatile compounds related to adverse health effects. By including all the major current combustion and emission control technologies, the TUBE project aims to provide new information on the adverse health effects of current traffic, as well as information for decision makers to develop more effective emission legislation. Most importantly, the TUBE project will include adverse health effects beyond the respiratory system; TUBE will assess how air pollution affects the brain and how air pollution particles might be removed from the brain. The purpose of this report is to describe the TUBE project, its background, and its goals.

Keywords

UFP, Air Pollution, Brain, toxicology, Particulate Matter, CNS, traffic

Citation

Martikainen, M-V, Aakko-Saksa, P, van den Broek, L, Cassee, F R, Carare, R O, Chew, S, Dinnyes, A, Giugno, R, Kanninen, K M, Malm, T, Muala, A, Nedergaard, M, Oudin, A, Oyola, P, Pfeiffer, T V, Rönkkö, T, Saarikoski, S, Sandström, T, Schins, R P F, Topinka, J, Yang, M, Zeng, X, Westerink, R H S & Jalava, P I 2021, 'TUBE Project : Transport-Derived Ultrafines and the Brain Effects', International Journal of Environmental Research and Public Health, vol. 19, no. 1, pp. 1-14. https://doi.org/10.3390/ijerph19010311