Translocation of silver nanoparticles in theex vivohuman placenta perfusion model characterized by single particle ICP-MS

Author:

Vidmar Janja12345ORCID,Loeschner Katrin678910ORCID,Correia Manuel678910,Larsen Erik H.678910,Manser Pius1112131415,Wichser Adrian1112131415,Boodhia Kailen16171819,Al-Ahmady Zahraa S.2021222324ORCID,Ruiz Jaimé2526272829,Astruc Didier2526272829ORCID,Buerki-Thurnherr Tina1112131415ORCID

Affiliation:

1. Department of Environmental Sciences

2. Jožef Stefan Institute

3. 1000 Ljubljana

4. Slovenia

5. Jožef Stefan International Postgraduate School

6. Research Group for Nano-Bio Science

7. Division for Food Technology

8. National Food Institute

9. Technical University of Denmark

10. DK-2800 Kgs. Lyngby

11. Particles-Biology Interactions

12. Empa

13. Swiss Federal Laboratories for Materials Science and Technology

14. 9014 St. Gallen

15. Switzerland

16. National Institute for Occupational Health

17. National Health Laboratory Service

18. 4788 Johannesburg

19. South Africa

20. Faculty of Biology

21. Medicine and Health

22. Division of Pharmacy and Optometry

23. Nanomedicine Lab

24. University of Manchester

25. ISM

26. UMR CNRS 5255

27. Univ. Bordeaux

28. 33405 Talence Cedex

29. France

Abstract

Low translocation but considerable accumulation of Ag in placental tissue was found in perfusion studies with AgPEG and AgCOONa NPs.

Funder

Seventh Framework Programme

Danmarks Tekniske Universitet

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science

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