Biomedical Engineering Reference
In-Depth Information
Krotz, F., De Wit, C., Sohn, H. Y., Zahler, S., Gloe, T., Pohl, U. & Plank, C. (2003) Magnetofection
- A highly efficient tool for antisense oligonucleotide delivery in vitro and in vivo. Mol. Ther. ,
7, 700-710.
Krska, S. W. & Seyferth, D. (1998) Synthesis of water-soluble carbosilane dendrimers. J. Am.
Chem. Soc. , 120, 3604-3612.
Kunath, K., Von Harpe, A., Fischer, D. & Kissel, T. (2003a) Galactose-PEI-DNA complexes for
targeted gene delivery: degree of substitution affects complex size and transfection efficiency.
J. Control. Release , 88, 159-172.
Kunath, K., Von Harpe, A., Fischer, D., Petersen, H., Bickel, U., Voigt, K. & Kissel, T. (2003b)
Low-molecular-weight polyethylenimine as a non-viral vector for DNA delivery: comparison
of physicochemical properties, transfection efficiency and in vivo distribution with high-
molecular-weight polyethylenimine. J. Control. Release , 89, 113-125.
Kundahl, E., Richman, R. & Flickinger, R. A. (1981) The effect of added H1 histone and
polylysine on DNA synthesis and cell division of cultured mammalian cells. J. Cell. Physiol. ,
108, 291-298.
Kurisawa, M., Yokoyama, M. & Okano, T. (2000) Gene expression control by temperature with
thermo-responsive polymeric gene carriers. J. Control. Release , 69, 127-137.
Kursa, M., Walker, G. F., Roessler, V., Ogris, M., Roedl, W., Kircheis, R. & Wagner, E. (2003)
Novel shielded transferrin-polyethylene glycol-polyethylenimine/DNA complexes for sys-
temic tumor-targeted gene transfer. Bioconjugate Chem. , 14, 222-231.
Kushibiki, T., Nagata-Nakajima, N., Sugai, M., Shimizu, A. & Tabata, Y. (2005a) Delivery of
plasmid DNA expressing small interference RNA for TGF-beta type II receptor by cationized
gelatin to prevent interstitial renal fibrosis. J. Control. Release , 105, 318-331.
Kushibiki, T., Nagata-nakajima, N., Sugai, M., Shimizu, A. & Tabata, Y. (2005b) Targeting of
plasmid DNA to renal interstitial fibroblasts by cationized gelatin. Biol. Pharm. Bull. , 28,
2007-2010.
Kwak, S. Y., Kriven, W. M., Wallig, M. A. & Choy, J. H. (2004) Inorganic delivery vector for
intravenous injection. Biomaterials , 25, 5995-6001.
Kyriakis, J. M. & Avruch, J. (1990) pp54 Microtubule-associated protein 2 kinase. J. Biol. Chem. ,
265, 17353-17363.
Ladewig, K., Xu, Z. P. & Lu, G. Q. (2009) Layered double hydroxide nanoparticles in gene and
drug delivery. Expert Opin. Drug Deliv. , 6, 907-922.
Lai, E. & Van Zanten, J. H. (2001) Monitoring DNA/poly-L-lysine polyplex formation with time-
resolved multiangle laser light scattering. Biophys. J. , 80, 864-873.
Laurent, S., Forge, D., Port, M., Roch, A., Robic, C., Vanderelst, L. & Muller, R. N. (2008)
Magnetic iron oxide nanoparticles: synthesis, stabilization, vectorization, physicochemical
characterizations, and biological applications. Chem. Rev. , 108, 2064-2110.
Lavigne, M. D., Pennadam, S., Ellis, J., Yates, L. L., Alexander, C. & Gorecki, D. C. (2007)
Enhanced gene expression through temperature profile-induced variations in molecular archi-
tecture of thermoresponsive polymer vectors J. Gene Med. , 9, 44-54.
Lee, D., Lockey, R. & Mohapatra, S. (2006) Folate receptor-mediated cancer cell specific gene
delivery using folic acid-conjugated oligochitosans. J. Nanosci. Nanotechnol. , 6, 2860-2866.
Lee, H., Kim, T. H. & Park, T. G. (2002) A receptor-mediated gene delivery system using strepta-
vidin and biotin-derivatized, pegylated epidermal growth factor. J. Control. Release 83,
109-119.
Lee, J. H., Lee, K., Moon, S. H., Lee, Y., Park, T. G. & Cheon, J. (2009) All-in-one target-cell-
specific magnetic nanoparticles for simultaneous molecular imaging and siRNA delivery.
Angew. Chem. Int. Ed. , 48, 4174-4179.
Lee, J. H., Lim, Y. B., Choi, J. S., Lee, Y., Kim, T. I., Kim, H. J., Yoon, J. K., Kim, K. & Park, J.
S. (2003) Polyplexes assembled with internally quaternized PAMAM-OH dendrimer and plas-
mid DNA have a neutral surface and gene delivery potency. Bioconjugate Chem. , 14,
1214-1221.
Lee, K. Y., Kwon, I. C., Kim, Y. H., Jo, W. H. & Jeong, S. Y. (1998) Preparation of chitosan self-
aggregates as a gene delivery system. J. Control. Release , 51, 213-220.
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