Eosin-mediated synthesis of polymer coatings combining photodynamic inactivation and antimicrobial properties

Author:

Sautrot-Ba P.123,Contreras A.123,Abbad Andaloussi S.453,Coradin T.678910ORCID,Hélary C.678910,Razza N.11121314ORCID,Sangermano M.11121314ORCID,Mazeran P.-E.15816617,Malval J.-P.1819203,Versace D.-L.123ORCID

Affiliation:

1. Université Paris-Est Créteil (UPEC) – ICMPE UMR CNRS 7182

2. 94010 Créteil cedex

3. France

4. IEES Paris – UPEC

5. Créteil

6. Sorbonne Universités

7. UPMC Univ Paris 06

8. CNRS

9. Collège de France

10. UMR 7574

11. Politecnico di Torino

12. Dipartimento di Scienza Applicata e Tecnologia

13. 10129 Torino

14. Italy

15. Laboratoire Roberval

16. UMR 7337

17. Université de technologie de Compiègne

18. Institut de Science des Matériaux de Mulhouse

19. IS2M-LRC 7228

20. 68057 Mulhouse

Abstract

Eosin-derived coatings exhibiting photodynamic bacterial inactivation and antibacterial properties.

Publisher

Royal Society of Chemistry (RSC)

Subject

General Materials Science,Biomedical Engineering,General Chemistry,General Medicine

Reference62 articles.

1. J. G. Thomas , I.Litton and H.Harald Rinde, in Biofilms, Infection, and Antimicrobial Therapy, ed. J. L. Pace, M. E. Rupp and R. G. Finch, CRC Press Taylor and Francis Group, 2006, ch. 2, pp. 21–39

2. G. Ducel , J.Fabry and L.Nicolle, Prevention of hospital-acquired infections: a practical guide, World Health Organization, 2002

3. Designing surfaces that kill bacteria on contact

4. Efficient surface modification of biomaterial to prevent biofilm formation and the attachment of microorganisms

5. Biofilm formation in Staphylococcus implant infections. A review of molecular mechanisms and implications for biofilm-resistant materials

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