Biomedical Engineering Reference
In-Depth Information
76. Tang LH, Liu Y, Ali MM, Kang DK, Zhao WA, Li JH (2012) Colorimetric and ultrasensitive
bioassay based on a dual-amplification system using aptamer and DNAzyme. Anal Chem
84(11):4711-4717. doi: 10.1021/Ac203274k
77. Wu ZS, Zhou H, Zhang SB, Shen GL, Yu RQ (2010) Electrochemical aptameric recognition
system for a sensitive protein assay based on specific target binding-induced rolling circle
amplification. Anal Chem 82(6):2282-2289. doi: 10.1021/Ac902400n
78. Dirks RM, Pierce NA (2004) Triggered amplification by hybridization chain reaction. Proc
Natl Acad Sci U S A 101(43):15275-15278. doi: 10.1073/pnas.0407024101
79. Wang F, Elbaz J, Orbach R, Magen N, Willner I (2011) Amplified analysis of DNA by
the autonomous assembly of polymers consisting of DNAzyme wires. J Am Chem Soc
133(43):17149-17151. doi: 10.1021/Ja2076789
80. Shimron S, Wang F, Orbach R, Willner I (2012) Amplified detection of DNA through the
enzyme-free autonomous assembly of hemin/G-quadruplex DNAzyme nanowires. Anal Chem
84(2):1042-1048. doi: 10.1021/Ac202643y
81. Lin
CX,
Katilius
E,
Liu
Y,
Zhang
JP,
Yan
H
(2006)
Self-assembled
signaling
aptamer
DNA
arrays
for
protein
detection.
Angew
Chem
Int
Ed
45(32):5296-5301.
doi: 10.1002/anie.200600438
82. Lin CX, Liu Y, Yan H (2007) Self-assembled combinatorial encoding nanoarrays for multi-
plexed biosensing. Nano Lett 7(2):507-512. doi: 10.1021/Nl062998n
83. Lin
CX,
Nangreave
JK,
Li
Z,
Lin
Y,
Yan
H
(2008)
Signal
amplification
on
a
DNA-tile-based
biosensor
with
enhanced
sensitivity.
Nanomedicine
3(4):521-528.
doi: 10.2217/17435889.3.4.521
84. Kuzuya A, Sakai Y, Yamazaki T, Xu Y, Komiyama M (2011) Nanomechanical DNA origami
'single-molecule beacons' directly imaged by atomic force microscopy. Nat Commun 2, Artn
449, doi: 10.1038/Ncomms1452
85. Chang M, Yang CS, Huang DM (2011) Aptamer-conjugated DNA icosahedral nanopar-
ticles
as
a
carrier
of
doxorubicin
for
cancer
therapy.
ACS
Nano
5(8):6156-6163.
doi: 10.1021/nn200693a
86. Douglas SM, Bachelet I, Church GM (2012) A logic-gated nanorobot for targeted transport of
molecular payloads. Science 335(6070):831-834. doi : 10.1126/science.1214081
87. Dittmer WU, Reuter A, Simmel FC (2004) A DNA-based machine that can cyclically bind and
release thrombin. Angew Chem Int Ed 43(27):3550-3553. doi: 10.1002/anie.200353537
88. Chen Y, Mao CD (2004) Putting a brake on an autonomous DNA nanomotor. J Am Chem Soc
126(28):8626-8627. doi: 10.1021/Ja047991r
89. Tian Y, He Y, Chen Y, Yin P, Mao CD (2005) A DNAzyme that walks processively
and autonomously along a one-dimensional track. Angew Chem Int Ed 44(28):4355-4358.
doi: 10.1002/anie.200500703
90. Lund K, Manzo AJ, Dabby N, Michelotti N, Johnson-Buck A, Nangreave J, Taylor S, Pei RJ,
Stojanovic MN, Walter NG, Winfree E, Yan H (2010) Molecular robots guided by prescriptive
landscapes. Nature 465(7295):206-210. doi: 10.1038/Nature09012
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