Biomedical Engineering Reference
In-Depth Information
30.
Murakami, T., Fan, J., Yudasaka, M., Iijima, S., and Shiba, K. (2006) Solubilization
of single-wall carbon nanohorns using a PEG-doxorubicin conjugate, Mol.
Pharm. , 3 , 407-414.
31.
Ajima, K., Yudasaka, M., Maigné, A., Miyawaki, J., and Iijima, S. (2006) Effect
of functional groups at hole edges on cisplatin release from inside single-wall
carbon nanohorns, J. Phys. Chem. B , 110 , 5773-5778.
32.
Ajima, K., Maigné, A., Yudasaka, M., and Iijima, S. (2008) Optimum hole-opening
condition for cisplatin incorporation in single-wall carbon nanohorns and its
release, J. Phys. Chem. B , 110 , 19097-19099.
33.
Matsumura, S., Ajima, K., Yudasaka, M., Iijima, S., and Shiba, K. (2007) Dispersion
of cisplatin-loaded carbon nanohorns with a conjugate comprised of an
artiicial peptide aptamer and polyethylene glycol, Mol. Pharm. , 4 , 723-729.
34.
Li, X., Peng, Y., and Qu, X. (2006) Carbon nanotubes selective destabilization of
duplex and triplex DNA and inducing B-A transition in solution, Nucleic Acids
Res. , 34 , 3670-3676.
35.
Li, X., Peng, Y., Ren, J., and Qu, X. (2006) Carboxyl-modiied single-walled carbon
nanotubes selectively induce human telomeric i-motif formation, Proc. Natl.
Acad. Sci. USA , 103 , 19658-19663.
36.
Zhao, C., Peng, Y., Song, Y., Ren, J., and Qu, X. (2008) Self-assembly of single-
stranded RNA on carbon nanotube: polyadenylic acid to form a duplex
structure, Small , 4 , 656-661.
37.
Lu, Q., Moore, J., Huang, G., Mount, A., Rao, A., Larcom, L., and Ke, P. (2004)
RNA polymer translocation with single-walled carbon nanotubes, Nano Lett. ,
4 , 2473-2477.
38.
Cui, D., Tian, F., Coyer, S., Wang, J., Pan, B., Gao, F., He, R., and Zhang, Y. (2007)
Effects of antisense-myc-conjugated single-walled carbon nanotubes on HL-60
cells, J. Nanosci. Nanotechnol. , 7 , 1639-1646.
39.
Zhang, Z., Yang, X., Zhang, Y., Zeng, B., Wang, S., Zhu, T., Roden, R., Chen, Y., and
Yang, R. (2006) Delivery of telomerase reverse transcriptase small interfering
RNA in complex with positively charged single-walled carbon nanotubes
suppresses tumor growth, Clin. Cancer Res. , 12 , 4933-4939.
40.
Kam, N. W., Liu, Z., and Dai, H. (2005) Functionalization of carbon nanotubes
via cleavable disulide bonds for eficient intracellular delivery of siRNA and
potent gene silencing, J. Am. Chem. Soc. , 127 , 12492-12493.
41.
Liu, Z., Winters, M., Holodniy, M., and Dai, H. (2007) siRNA delivery into human
T cells and primary cells with carbon-nanotube transporters, Angew. Chem. Int.
Ed. , 46 , 2023-2027.
42.
Jia, N., Lian, Q., Shen, H., Wang, C., Li, X., and Yang, Z. (2007) Intracellular delivery
of quantum dots tagged antisense oligodeoxynucleotides by functionalized
multiwalled carbon nanotubes, Nano Lett. , 7 , 2976-2980.
43.
Pan, B., Cui, D., Xu, P., Chen, H., Liu, F., Li, Q., Huang, T., You, X., Shao, J., Bao, C.,
Gao, F., He, R., Shu, M., and Ma, Y. (2007) Design of dendrimer modiied carbon
nanotubes for gene delivery, Chinese J. Cancer Res. , 19 , 1-6.
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