Insight intothemechanismsbywhichambientairparticulatemattermediatesadversehealtheffectsis needed toprovidebiologicalplausibilitytoepidemiologicalstudiesdemonstratinganassociation betweenPM10 exposureandincreasedmorbidityandmortality. In vitro studies oftheeffectsofair pollutiononhumancellshelptoestablishconditionsfortheanalysisofcause-effectrelationships.One of themajorchallengesistotestnativeatmosphereinitscomplexity,ratherthanthevarious componentsindividually.Wehavedevelopedan in vitro system inwhichhumanmonocyte-macro- phage U937cellsaredirectlyexposedtofilterscontainingdifferentamountsofPM10 collected inthe city ofRome. Transcriptionalprofilingobtainedaftershortexposure(1h)ofcellstoafiltercontaining1666 mg PM10 (77.6 mg/cm2) usingamacroarraypanelof1176genesrevealsasignificantchangeinthemRNA level (42 fold)for87genesrelativetocellsexposedtoacontrolfilter.Overall,9outof87modulated geneswereannotatedas''lungcancer''.qRT-PCRconfirmedtheinductionofrelevantgenesinvolvedin DNA repairandapoptosis,specifically: ERCC1, TDG, DAD1 and MCL1. Incellsexposedfor10min,1hand 3 htodifferentamountsofPM10, transcriptionof TNFa and TRAP1, whichcodeforakeypro- inflammatorycytokineandamitochondrialproteininvolvedincellprotectionfromoxidativestress, respectively,wasshowntobemodulatedinatime-dependent,butnotadose-dependentmanner. Taken together,thesedataindicatethatitispossibletoanalyzetheeffectsofuntreatedparticulate matteronhumancellsbythedirect-exposureapproachwehavedeveloped,possiblyprovidingnew clues totraffic-relatedhealthhazard.

Transcriptional modulation of a human monocytic cell line exposed to PM(10) from an urban area

Verdone L;Santoni A;Di Mauro E;Caserta M
2011

Abstract

Insight intothemechanismsbywhichambientairparticulatemattermediatesadversehealtheffectsis needed toprovidebiologicalplausibilitytoepidemiologicalstudiesdemonstratinganassociation betweenPM10 exposureandincreasedmorbidityandmortality. In vitro studies oftheeffectsofair pollutiononhumancellshelptoestablishconditionsfortheanalysisofcause-effectrelationships.One of themajorchallengesistotestnativeatmosphereinitscomplexity,ratherthanthevarious componentsindividually.Wehavedevelopedan in vitro system inwhichhumanmonocyte-macro- phage U937cellsaredirectlyexposedtofilterscontainingdifferentamountsofPM10 collected inthe city ofRome. Transcriptionalprofilingobtainedaftershortexposure(1h)ofcellstoafiltercontaining1666 mg PM10 (77.6 mg/cm2) usingamacroarraypanelof1176genesrevealsasignificantchangeinthemRNA level (42 fold)for87genesrelativetocellsexposedtoacontrolfilter.Overall,9outof87modulated geneswereannotatedas''lungcancer''.qRT-PCRconfirmedtheinductionofrelevantgenesinvolvedin DNA repairandapoptosis,specifically: ERCC1, TDG, DAD1 and MCL1. Incellsexposedfor10min,1hand 3 htodifferentamountsofPM10, transcriptionof TNFa and TRAP1, whichcodeforakeypro- inflammatorycytokineandamitochondrialproteininvolvedincellprotectionfromoxidativestress, respectively,wasshowntobemodulatedinatime-dependent,butnotadose-dependentmanner. Taken together,thesedataindicatethatitispossibletoanalyzetheeffectsofuntreatedparticulate matteronhumancellsbythedirect-exposureapproachwehavedeveloped,possiblyprovidingnew clues totraffic-relatedhealthhazard.
2011
Istituto di Biologia e Patologia Molecolari - IBPM
Air pollution
Apoptosis
DNA repair
Heat shock
Inflammation
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/155873
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