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research article

Functionalization of polysulfide nanoparticles and their performance as circulating carriers

Rehor, Annemie  
•
Schmoekel, Hugo
•
Tirelli, Nicola
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2008
Biomaterials

We here present an evaluation of the carrier performance of nanoparticles that are biofunctional, i.e. derivatized to provide a controlled biological activity, and environmentally responsive, since they respond to the presence of oxidants. In particular, we focus on the possibilities (a) to make the nanoparticles detectable and (b) to control their uptake in phagocytic cells, which determines their lifetime in vivo. We first describe techniques for labeling selectively the nanoparticle surface or bulk with imaging moieties (fluorophores or gold). We then show how surface composition and size, which are both controlled through the use of PEG derivatives, influence uptake by macrophages in vitro and blood circulation in vivo: for example, in vitro uptake is negligible for small (40 nm) particles but not for larger (100 nm) ones and, correspondingly, in vivo blood circulation half-life time decreases from 6.0 to 2.9 h. However, upon decoration with RGD peptides also the small particles can be significantly internalized. (C) 2008 Elsevier Ltd. All rights reserved.

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Type
research article
DOI
10.1016/j.biomaterials.2007.12.035
Web of Science ID

WOS:000254729800024

Author(s)
Rehor, Annemie  
Schmoekel, Hugo
Tirelli, Nicola
Hubbell, Jeffrey A.  
Date Issued

2008

Published in
Biomaterials
Volume

29

Start page

1958

End page

1966

Subjects

nanoparticles

•

biofunctionalization

•

labeling

•

phagocytosis

•

macrophages

•

Living Emulsion Polymerization

•

Protein Pegylation

•

Breast-Cancer

•

Poly(Ethylene

•

Phagocytosis

•

Liposomes

•

Therapy

•

Peptide

•

Systems

•

Cells

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LMRP  
Available on Infoscience
November 30, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/61497
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