Biomedical Engineering Reference
In-Depth Information
70.
Staii, C., Johnson, A. T., Chen, M., and Gelperin, A. (2005) DNA-decorated carbon
nanotubes for chemical sensing, Nano Lett. , 5 , 1774-1778.
71.
Wu, Z., Zhen, Z., Jiang, J. H., Shen, G. L., and Yu, R. Q. (2009) Terminal protection
of small-molecule-linked DNA for sensitive electrochemical detection of
protein binding via selective carbon nanotube assembly, J. Am. Chem. Soc. , 131 ,
12325-12332.
72.
Kam, N., O'Connell, M., Wisdom, J., and Dai, H. (2005) Carbon nanotubes as
multifunctional biological transporters and near-infrared agents for selective
cancer cell destruction, Proc. Natl. Acad. Sci. USA , 102 , 11600-11605.
73.
Henne, W., Doorneweerd, D., Lee, J., Low, P., and Savran, C. (2006) Detection of
folate binding protein with enhanced sensitivity using a functionalized quartz
crystal microbalance sensor, Anal. Chem. , 78 , 4880-4884.
74.
Acharya, G., Chang, C. L., Doorneweerd, D., Vlashi, E., Henne, W., Hartmann, L.,
Low, P., Savran, C., et al. (2007) Immunomagnetic diffractometry for detection
of diagnostic serum markers, J. Am. Chem. Soc. , 129 , 15824-15829.
75.
Yang, R., Tang, Z., Yan, J., Kang, H., Kim, Y., Zhu, Z., and Tan, W. (2008) Noncovalent
assembly of carbon nanotubes and single-stranded DNA: an effective sensing
platform for probing biomolecular interactions, Anal. Chem. , 80 , 7408-7413.
76.
Jhaveri, S., Kirby, R., Conrad, R., Maglott, E., Bowser, M., Kennedy, R., Glick,
G., Ellington, A., et al. (2000) Designed signaling aptamers that transduce
molecular recognition to changes in luorescence intensity, J. Am. Chem. Soc. ,
122 , 2469-2473.
77.
Nutiu, R., and Li, Y. (2005) Aptamers with luorescence-signaling properties,
Methods , 37 , 16-25.
78.
Lee, A., Ye, J. S., Tan, S., Poenar, D., Sheu, F. S., Heng, C. and Lim, T. (2007) Carbon
nanotube-based labels for highly sensitive colorimetric and aggregation-based
visual detection of nucleic acids, Nanotechnology , 18 , 455102-455120.
79.
Hu, P., Huang, C. Z., Li, Y. F., Ling, J., Liu, Y. L., Fei, L. R., and Xie, J. P. (2008) Magnetic
particle-based sandwich sensor with DNA-modiied carbon nanotubes as
recognition elements for detection of DNA hybridization, Anal. Chem. , 80 ,
1819-1823.
80.
Cathcart, H., Nicolosi, V., Hughes, J. M., Blau, W. J., Kelly, J. M., Quinn, S. J., and
Coleman, J. N. (2008) Ordered DNA wrapping switches on luminescence in
single-walled nanotube dispersions, J. Am. Chem. Soc. , 130 , 12734-12744.
81.
Lu, G., Maragakis, P., and Kaxiras, E. (2005) Carbon nanotube interaction with
DNA, Nano Lett. , 5 , 897-900.
82.
Meng, S., Maragakis, P., Papaloukas, C., and Kaxiras, E. (2007) DNA nucleoside
interaction and identiication with carbon nanotubes, Nano Lett. , 7 , 45-50.
83.
Nguyen, C., Delzeit, L., Cassell, A., Li, J., Han, J., and Meyyappan, M. (2002)
Preparation of Nucleic Acid Functionalized Carbon Nanotube Arrays, Nano
Lett. , 2 , 1079-1081.
84.
Hermanson, G. T. (ed.). (2008) Bioconjugate Techniques , Academic Press, San
Diego, CA.
Search WWH ::




Custom Search