articleAnalytical ChemistryNov 10, 2006GREEN OA

Maximizing DNA Loading on a Range of Gold Nanoparticle Sizes

Northwestern University

PubMed
Indexed incrossrefpubmed

Abstract

We have investigated the variables that influence DNA coverage on gold nanoparticles. The effects of salt concentration, spacer composition, nanoparticle size, and degree of sonication have been evaluated. Maximum loading was obtained by salt aging the nanoparticles to approximately 0.7 M NaCl in the presence of DNA containing a poly(ethylene glycol) spacer. In addition, DNA loading was substantially increased by sonicating the nanoparticles during the surface loading process. Last, nanoparticles up to 250 nm in diameter were found have approximately 2 orders of magnitude higher DNA loading than smaller (13-30 nm) nanoparticles, a consequence of their larger surface area. Stable large particles are attractive…

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1,196
total citations
FWCI
17.60
Percentile
100%
References
43
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Authors

3

Topics & keywords

Keywords
  • Chemistry
  • Nanoparticle
  • Ethylene glycol
  • Sonication
  • Colloidal gold
  • Salt (chemistry)
  • DNA
  • Chemical engineering
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