Ambient black carbon particles reach the fetal side of human placenta

Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond p...

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Veröffentlicht in:Nature communications Jg. 10; H. 1; S. 3866 - 7
Hauptverfasser: Bové, Hannelore, Bongaerts, Eva, Slenders, Eli, Bijnens, Esmée M., Saenen, Nelly D., Gyselaers, Wilfried, Van Eyken, Peter, Plusquin, Michelle, Roeffaers, Maarten B. J., Ameloot, Marcel, Nawrot, Tim S.
Format: Journal Article
Sprache:Englisch
Veröffentlicht: London Nature Publishing Group UK 17.09.2019
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ISSN:2041-1723, 2041-1723
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Abstract Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 10 4 (0.66 × 10 4 ) and 2.09 × 10 4 (0.9 × 10 4 ) particles per mm 3 for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers’ residential BC exposure during pregnancy (0.63–2.42 µg per m 3 ). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards. Exposure to air pollution during pregnancy has been associated with impaired birth outcomes. Here, Bové et al. report evidence of black carbon particle deposition on the fetal side of human placentae, including at early stages of pregnancy, suggesting air pollution could affect birth outcome through direct effects on the fetus.
AbstractList Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 10 (0.66 × 10 ) and 2.09 × 10 (0.9 × 10 ) particles per mm for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers' residential BC exposure during pregnancy (0.63-2.42 µg per m ). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards.
Exposure to air pollution during pregnancy has been associated with impaired birth outcomes. Here, Bové et al. report evidence of black carbon particle deposition on the fetal side of human placentae, including at early stages of pregnancy, suggesting air pollution could affect birth outcome through direct effects on the fetus.
Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 104 (0.66 × 104) and 2.09 × 104 (0.9 × 104) particles per mm3 for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers’ residential BC exposure during pregnancy (0.63–2.42 µg per m3). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards.
Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 104 (0.66 × 104) and 2.09 × 104 (0.9 × 104) particles per mm3 for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers' residential BC exposure during pregnancy (0.63-2.42 µg per m3). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards.Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 104 (0.66 × 104) and 2.09 × 104 (0.9 × 104) particles per mm3 for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers' residential BC exposure during pregnancy (0.63-2.42 µg per m3). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards.
Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 104 (0.66 × 104) and 2.09 × 104 (0.9 × 104) particles per mm3 for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers’ residential BC exposure during pregnancy (0.63–2.42 µg per m3). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards.Exposure to air pollution during pregnancy has been associated with impaired birth outcomes. Here, Bové et al. report evidence of black carbon particle deposition on the fetal side of human placentae, including at early stages of pregnancy, suggesting air pollution could affect birth outcome through direct effects on the fetus.
Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 10 4 (0.66 × 10 4 ) and 2.09 × 10 4 (0.9 × 10 4 ) particles per mm 3 for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers’ residential BC exposure during pregnancy (0.63–2.42 µg per m 3 ). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards. Exposure to air pollution during pregnancy has been associated with impaired birth outcomes. Here, Bové et al. report evidence of black carbon particle deposition on the fetal side of human placentae, including at early stages of pregnancy, suggesting air pollution could affect birth outcome through direct effects on the fetus.
Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of black carbon (BC) particles as part of combustion-derived particulate matter in human placentae using white-light generation under femtosecond pulsed illumination. BC is identified in all screened placentae, with an average (SD) particle count of 0.95 × 10 4 (0.66 × 10 4 ) and 2.09 × 10 4 (0.9 × 10 4 ) particles per mm 3 for low and high exposed mothers, respectively. Furthermore, the placental BC load is positively associated with mothers’ residential BC exposure during pregnancy (0.63–2.42 µg per m 3 ). Our finding that BC particles accumulate on the fetal side of the placenta suggests that ambient particulates could be transported towards the fetus and represents a potential mechanism explaining the detrimental health effects of pollution from early life onwards.
ArticleNumber 3866
Author Nawrot, Tim S.
Saenen, Nelly D.
Gyselaers, Wilfried
Van Eyken, Peter
Roeffaers, Maarten B. J.
Bongaerts, Eva
Ameloot, Marcel
Bijnens, Esmée M.
Plusquin, Michelle
Bové, Hannelore
Slenders, Eli
Author_xml – sequence: 1
  givenname: Hannelore
  surname: Bové
  fullname: Bové, Hannelore
  organization: Centre for Environmental Sciences, Hasselt University, Biomedical Research Institute, Hasselt University, Centre for Surface Chemistry and Catalysis, KU Leuven
– sequence: 2
  givenname: Eva
  orcidid: 0000-0001-7963-9824
  surname: Bongaerts
  fullname: Bongaerts, Eva
  organization: Centre for Environmental Sciences, Hasselt University
– sequence: 3
  givenname: Eli
  surname: Slenders
  fullname: Slenders, Eli
  organization: Biomedical Research Institute, Hasselt University
– sequence: 4
  givenname: Esmée M.
  surname: Bijnens
  fullname: Bijnens, Esmée M.
  organization: Centre for Environmental Sciences, Hasselt University
– sequence: 5
  givenname: Nelly D.
  surname: Saenen
  fullname: Saenen, Nelly D.
  organization: Centre for Environmental Sciences, Hasselt University
– sequence: 6
  givenname: Wilfried
  orcidid: 0000-0002-5778-434X
  surname: Gyselaers
  fullname: Gyselaers, Wilfried
  organization: Department of Obstetrics, East-Limburg Hospital
– sequence: 7
  givenname: Peter
  surname: Van Eyken
  fullname: Van Eyken, Peter
  organization: Department of Obstetrics, East-Limburg Hospital
– sequence: 8
  givenname: Michelle
  surname: Plusquin
  fullname: Plusquin, Michelle
  organization: Centre for Environmental Sciences, Hasselt University
– sequence: 9
  givenname: Maarten B. J.
  surname: Roeffaers
  fullname: Roeffaers, Maarten B. J.
  organization: Centre for Surface Chemistry and Catalysis, KU Leuven
– sequence: 10
  givenname: Marcel
  orcidid: 0000-0002-0888-2488
  surname: Ameloot
  fullname: Ameloot, Marcel
  organization: Biomedical Research Institute, Hasselt University
– sequence: 11
  givenname: Tim S.
  surname: Nawrot
  fullname: Nawrot, Tim S.
  email: tim.nawrot@uhasselt.be
  organization: Centre for Environmental Sciences, Hasselt University, Department of Public Health and Primary Care, KU Leuven
BackLink https://www.ncbi.nlm.nih.gov/pubmed/31530803$$D View this record in MEDLINE/PubMed
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– reference: 34862366 - Nat Commun. 2021 Dec 3;12(1):7049
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Snippet Particle transfer across the placenta has been suggested but to date, no direct evidence in real-life, human context exists. Here we report the presence of...
Exposure to air pollution during pregnancy has been associated with impaired birth outcomes. Here, Bové et al. report evidence of black carbon particle...
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StartPage 3866
SubjectTerms 14/19
14/28
14/69
631/443/494
639/925/928/833
692/700/478
Air Pollutants - metabolism
Air Pollutants - toxicity
Air pollution
Belgium
Biopsy
Birth
Black carbon
Carbon
Cohort Studies
Ecotoxicology
Exposure
Female
Fetuses
Humanities and Social Sciences
Humans
Maternal Exposure - adverse effects
Maternal-Fetal Exchange
Microscopy, Electron, Transmission
multidisciplinary
Particle deposition
Particulate matter
Particulates
Permeability
Placenta
Placenta - metabolism
Placenta - pathology
Placenta - ultrastructure
Pollution effects
Pregnancy
Residence Characteristics - statistics & numerical data
Science
Science (multidisciplinary)
Soot - analysis
Soot - metabolism
Soot - toxicity
White light
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Title Ambient black carbon particles reach the fetal side of human placenta
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