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48. Taton TA, Mucic RC, Mirkin CA, Letsinger RL (2000) The DNA-mediated formation of
supramolecular mono- and multilayered nanoparticle structures. J Am Chem Soc 122:6305
49. Cutler JI, Auyeung E, Mirkin CA (2012) Spherical nucleic acids. J Am Chem Soc 134:1376
50. Lee J-S, Han MS, Mirkin CA (2007) Colorimetric detection of mercuric ion (Hg 2+ )in
aqueous media using DNA-functionalized gold nanoparticles. Angew Chem Int Ed 46:4093
51. Zheng G, Daniel WL, Mirkin CA (2008) A new approach to amplified telomerase detection
with polyvalent oligonucleotide nanoparticle conjugates. J Am Chem Soc 130:9644
52. Han MS, Lytton-Jean AKR, Oh B-K, Heo J, Mirkin CA (2006) Colorimetric screening of
DNA-binding molecules with gold nanoparticle probes. Angew Chem Int Ed 45:1807
53. Xu X, Daniel WL, Wei W, Mirkin CA (2010) Colorimetric Cu 2+ detection using
DNA-modified gold-nanoparticle aggregates as probes and click chemistry. Small 6:623
54. Lytton-Jean AKR, Mirkin CA (2005) A thermodynamic investigation into the binding
properties of DNA functionalized gold nanoparticle probes and molecular fluorophore
probes. J Am Chem Soc 127:12754
55. Seferos DS, Prigodich AE, Giljohann DA, Patel PC, Mirkin CA (2009) Polyvalent DNA
nanoparticle conjugates stabilize nucleic acids. Nano Lett 9:308
56. Giljohann DA, Seferos DS, Patel PC, Millstone JE, Rosi NL, Mirkin CA (2007) Oligonucle-
otide loading determines cellular uptake of DNA-modified gold nanoparticles. Nano Lett
7:3818
57. Cutler JI, Zhang K, Zheng D, Auyeung E, Prigodich AE, Mirkin CA (2011) Polyvalent
nucleic acid nanostructures. J Am Chem Soc 133:9254
58. Patel PC, Giljohann DA, Daniel WL, Zheng D, Prigodich AE, Mirkin CA (2010) Scavenger
receptors mediate cellular uptake of polyvalent oligonucleotide-functionalized gold
nanoparticles. Bioconjugate Chem 21:2250
59. Cutler JI, Zheng D, Xu X, Giljohann DA, Mirkin CA (2010) Polyvalent oligonucleotide iron
oxide nanoparticle “click” conjugates. Nano Lett 10:1477
60. Witten KG, Rech C, Eckert T, Charrak S, Richtering W, Elling L, Simon U (2011) Glyco-
DNA-gold nanoparticles: lectin-mediated assembly and dual-stimuli response. Small 7:1954
61. van Kasteren SI, Campbell SJ, Serres S, Anthony DC, Sibson NR, Davis BG (2009)
Glyconanoparticles allow pre-symptomatic in vivo imaging of brain disease. Proc Natl
Acad Sci USA 106:18
62. Ebisu S, Shankar Iyer PN, Goldstein IJ (1978) Equilibrium dialysis and carbohydrate-binding
studies on the 2-acetamido-2-deoxy-d-glucopyranosyl-binding lectin from Bandeiraea
simplicifolia seeds. Carbohydr Res 61:129
63. Zook JM, Long SE, Cleveland D, Geronimo CLA, MacCuspie RI (2011) Measuring silver
nanoparticle dissolution in complex biological and environmental matrices using UV-visible
absorbance. Anal Bioanal Chem 401:1993
64. Kittler S, Greulich C, Diendorf J, K¨ ller M, Epple M (2010) Toxicity of silver nanoparticles
increases during storage because of slow dissolution under release of silver ions. ChemMater
22:4548
65. Ho C-M, Yau SK-W, Lok C-N, So M-H, Che C-M (2010) Oxidative dissolution of silver
nanoparticles by biologically relevant oxidants: a kinetic and mechanistic study. Chem Asian
J 5:285
66. Liu J, Hurt RH (2010) Ion release kinetics and particle persistence in aqueous nano-silver
colloids. Environ Sci Technol 44:2169
67. Liu J, Sonshine DA, Shervani S, Hurt RH (2010) Controlled release of biologically active
silver from nanosilver surfaces. ACS Nano 4:6903
68. Zhang W, Yao Y, Sullivan N, Chen Y (2011) Modeling the primary size effects of citrate-
coated silver nanoparticles on their ion release kinetics. Environ Sci Technol 45:4422
69. Braydich-Stolle L, Hussain S, Schlager JJ, Hofmann M-C (2005) In vitro cytotoxicity of
nanoparticles in mammalian germline stem cells. Toxicol Sci 88:412
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