PEGylated and MMP-2 Specifically DePEGylated Quantum Dots: Comparative Evaluation of Cellular Uptake

Cited 80 time in webofscience Cited 91 time in scopus
  • Hit : 514
  • Download : 139
Polyethylene glycol (PEG)-immobilized quantum dot (QD) nanoparticles, which could be specifically dePEGylated in response to the presence of the matrix metalloprotease-2 (MMP-2) enzyme, were prepared. The degree of PEGylation (MW 3400) on the surface of 12 nm streptavidin-coated QDs was stoichiometrically controlled by varying the feed amount of a biotin-substrate-PEG conjugate, where the substrate contained an MMP-2 cleavable peptide sequence. A biotin-cell penetrating peptide (CPP) conjugate was also immobilized onto the surface of the PEGylated QD surface to enhance the cellular uptake after dePEGylation. It was found that more than nine PEG chains per single QD were required to effectively inhibit the cellular uptake of modified QD particles down to around 20%, as compared with that of QD without PEG chains. However, the treatment of MMP-2 enzyme in the medium resulted in a substantial enhancement in the extent of QD cellular uptake by dePEGylation with concomitant resurfacing of sterically hidden CPP moieties. This study analyzed the effects of surface PEGylation density and MMP-2 specific dePEGylation on the cellular uptake of CPP-QD nanoparticles in a quantitative manner.
Publisher
Amer Chemical Soc
Issue Date
2009-02
Language
English
Article Type
Article
Keywords

IN-VIVO; POLY(ETHYLENE GLYCOL); SURFACE-COATINGS; DELIVERY-SYSTEM; ENERGY-TRANSFER; NANOPARTICLES; CONJUGATE; TRANSFECTION; CYTOTOXICITY; PROGRESSION

Citation

LANGMUIR, v.25, no.3, pp.1645 - 1650

ISSN
0743-7463
DOI
10.1021/la803542v
URI
http://hdl.handle.net/10203/10764
Appears in Collection
BS-Journal Papers(저널논문)
Files in This Item
This item is cited by other documents in WoS
⊙ Detail Information in WoSⓡ Click to see webofscience_button
⊙ Cited 80 items in WoS Click to see citing articles in records_button

qr_code

  • mendeley

    citeulike


rss_1.0 rss_2.0 atom_1.0