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dc.creatorKoureas M., Rousou X., Haftiki H., Mouchtouri V.A., Rachiotis G., Rakitski V., Tsakalof A., Hadjichristodoulou C.en
dc.date.accessioned2023-01-31T08:45:32Z
dc.date.available2023-01-31T08:45:32Z
dc.date.issued2019
dc.identifier10.1016/j.scitotenv.2019.05.261
dc.identifier.issn00489697
dc.identifier.urihttp://hdl.handle.net/11615/75321
dc.description.abstractBackground: Although p,p′‑DDT (1,1,1‑trichloro-2,2‑bis (p‑chlorophenyl)‑ethane) has been banned for decades in most countries, its major metabolite p,p′-DDE (1‑dichloro‑2,2‑bis (p‑chlorophenyl) ethylene) is still detected in the vast majority of human blood samples. Objectives: The purpose of this study was to quantitatively estimate the geographical distribution of DDE blood levels and record time-trends for specific countries and continents, exploiting available data from the scientific literature. Methods: A literature search was performed in SCOPUS and PUBMED databases. Studies were screened at 2 levels applying different sets of inclusion/exclusion criteria. Blood levels of DDE along with other variables of interest were extracted, and a meta-analysis of random effects was conducted, by using the package metafor within the statistical programming language R. Results were expressed as pooled geometric means (GM [95% confidence intervals, CIs]). Results: A total of 418 papers were included in the quantitative synthesis that contained data for 854 population subgroups, and analyzed a total of 195,595 samples. Overall global DDE concentrations dropped from 5207 (95% CI: 3616–7499) ng/g lipids during 1951–1969 to 207 (95% CI: 159–269) ng/g lipids for studies reporting sampling after 2000. Analyses for studies published from 2001 and onward revealed geographical differences regarding DDE burden. Discussion: The significant decline in DDE blood levels after its restriction is demonstrated in our results. Differences in decrease trends were observed in different parts of the globe, which can be explained by deferred implementation of environmental policies. In some countries DDE concentrations remain high, and systematic biomonitoring is proposed. © 2019 Elsevier B.V.en
dc.language.isoenen
dc.sourceScience of the Total Environmenten
dc.source.urihttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85066865465&doi=10.1016%2fj.scitotenv.2019.05.261&partnerID=40&md5=5c31c23320a6a8a6267cf243d0d75f32
dc.subjectEnvironmental protectionen
dc.subjectEthyleneen
dc.subjectGeographical distributionen
dc.subjectLipidsen
dc.subjectPesticidesen
dc.subjectPlasmasen
dc.subjectPopulation statisticsen
dc.subjectRandom processesen
dc.subjectConfidence intervalen
dc.subjectEnvironmental policyen
dc.subjectHuman blood samplesen
dc.subjectLiterature searchen
dc.subjectScientific literatureen
dc.subjectSerumen
dc.subjectSpatial and temporal distributionen
dc.subjectSystematic Reviewen
dc.subjectBlooden
dc.subject1,1 dichloro 2,2 bis(4 chlorophenyl)ethyleneen
dc.subject1,1 dichloro 2,2 bis(4 chlorophenyl)ethyleneen
dc.subjectblooden
dc.subjectconcentration (composition)en
dc.subjectDDEen
dc.subjectliterature reviewen
dc.subjectmeta-analysisen
dc.subjectpesticideen
dc.subjectplasmaen
dc.subjectspatial distributionen
dc.subjecttemporal distributionen
dc.subjectAsiaen
dc.subjectblood levelen
dc.subjectCentral Americaen
dc.subjectEastern Europeen
dc.subjectenvironmental exposureen
dc.subjectgeographic distributionen
dc.subjecthumanen
dc.subjecthuman impact (environment)en
dc.subjectpopulation exposureen
dc.subjectpriority journalen
dc.subjectReviewen
dc.subjectsystematic reviewen
dc.subjecttissue distributionen
dc.subjecttrend studyen
dc.subjecturban rural differenceen
dc.subjectblooden
dc.subjectmeta analysisen
dc.subjectpollutanten
dc.subjectDichlorodiphenyl Dichloroethyleneen
dc.subjectEnvironmental Exposureen
dc.subjectEnvironmental Pollutantsen
dc.subjectHumansen
dc.subjectElsevier B.V.en
dc.titleSpatial and temporal distribution of p,p′-DDE (1‑dichloro‑2,2‑bis (p‑chlorophenyl) ethylene) blood levels across the globe. A systematic review and meta-analysisen
dc.typeotheren


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