Produzione scientifica
Found 12 results
Filtri: Autore is Camatini, M. and Parola Chiave is Seasons [Clear All Filters]
Milan winter fine particulate matter (wPM2.5) induces IL-6 and IL-8 synthesis in human bronchial BEAS-2B cells, but specifically impairs IL-8 release,
, Toxicology in Vitro, Volume 52, p.365-373, (2018)
Integrative transcriptomic and protein analysis of human bronchial BEAS-2B exposed to seasonal urban particulate matter,
, Environmental pollution (Barking, Essex : 1987), Volume 209, p.87-98, (2016)
Synergistic inflammatory effect of PM10 with mycotoxin deoxynivalenol on human lung epithelial cells,
, Toxicon, Volume 104, p.65-72, (2015)
Cell cycle alterations induced by urban PM2.5 in bronchial epithelial cells: Characterization of the process and possible mechanisms involved,
, Particle and Fibre Toxicology, Volume 10, Number 1, (2013)
Particle size, chemical composition, seasons of the year and urban, rural or remote site origins as determinants of biological effects of particulate matter on pulmonary cells,
, Environmental Pollution, Volume 176, p.215-227, (2013)
Release of IL-1 β triggered by milan Summer PM10: Molecular pathways involved in the cytokine release,
, BioMed Research International, Volume 2013, (2013)
Season linked responses to fine and quasi-ultrafine Milan PM in cultured cells,
, Toxicology in Vitro, Volume 27, Number 2, p.551-559, (2013)
Gene expression profiling of A549 cells exposed to Milan PM2.5,
, Toxicology Letters, Volume 209, Number 2, p.136-145, (2012)
PM10-biogenic fraction drives the seasonal variation of proinflammatory response in A549 cells,
, Environmental Toxicology, Volume 27, Number 2, p.63-73, (2012)
Differences in cytotoxicity versus pro-inflammatory potency of different PM fractions in human epithelial lung cells,
, Toxicology in Vitro, Volume 24, Number 1, p.29-39, (2010)
Seasonal variations in chemical composition and in vitro biological effects of fine PM from Milan,
, Chemosphere, Volume 78, Number 11, p.1368-1377, (2010)
Winter fine particulate matter from Milan induces morphological and functional alterations in human pulmonary epithelial cells (A549),
, Toxicology Letters, Volume 188, Number 1, p.52-62, (2009)