Biomedical Engineering Reference
In-Depth Information
[261] Gersting SW, Schillinger U, �ausier J, Nicklaus P, Rudolph C, Plank C, et al. Gene
delivery to respiratory epithelial cells by magnetofection. J Gene Med 2004;6:913-22.
[262] Widder KJ, Morris RM, Poore G, Howard Jr. DP, Senyei AE. Tumor remission in
Yoshida sarcoma-bearing rats by selective targeting of magnetic albumin microspheres
containing doxorubicin. Proc Natl Acad Sci USA 1981;78:579-81.
[263] Widder KJ, Morris RM, Poore GA, Howard DP, Senyei AE. Selective targeting of
magnetic albumin microspheres containing low-dose doxorubicin: total remission in
Yoshida sarcoma-bearing rats. Eur J Cancer Clin Oncol 1983;19:135-9.
[264] Johnson J, Kent T, Koda J, Peterson C, Rudge S, Tapolsky G. The MTC technology: a
platform technology for the site-specific delivery of pharmaceutical agents. Eur Cells
Mater 2002;3:12-15.
[265] Plank C, Anton M, Rudolph C, Rosenecker J, Krotz F. Enhancing and targeting nucleic
acid delivery by magnetic force. Expert Opin Biol Ther 2003;3:745-58.
[266] Schillinger U, Brill T, Rudolph C, Huth S, Gersting S, Krotz F, et al. Advances in
magnetofection-magnetically guided nucleic acid delivery. J Magn Magn Mater
2005;293:501-8.
[267] Tao W, Wilkinson J, Stanbridge EJ, Berns MW. Direct gene transfer into human cul-
tured cells facilitated by laser micropuncture of the cell membrane. Proc Natl Acad Sci
USA 1987;84:4180-4.
[268] Sagi S, Knoll T, Trojan �, Schaaf A, Alken P, Michel MS. Gene delivery into prostate
cancer cells by holmium laser application. Prostate Cancer Prostatic Dis 2003;6:127-30.
[269] Palumbo G, Caruso M, Crescenzi E, Tecce MF, Roberti G, Colasanti A. Targeted gene
transfer in eukaryotic cells by dye-assisted laser optoporation. J Photochem Photobiol B
1996;36:41-6.
[270] Zeira E, Manevitch A, Khatchatouriants A, Pappo O, Hyam E, Darash-Yahana M,
et al. Femto-second infrared laser﻽an efficient and safe in vivo gene delivery system
for prolonged expression. Mol Ther 2003;8:342-50.
[271] Kurata S, Tsukakoshi M, Kasuya T, Ikawa Y. The laser method for efficient introduction
of foreign DNA into cultured cells. Exp Cell Res 1986;162:372-8.
[272] Shirahata Y, Ohkohchi N, Itagak H, Satomi S. New technique for gene transfection
using laser irradiation. J Invest Med 2001;49:184-90.
[273] Tirlapur
UK,
Konig
K. Targeted
transfection
by
femtosecond
laser.
Nature
2002;418:290-1.
[274] Terakawa M, Ogura M, Sato S, Wakisaka H, Ashida H, Uenoyama M, et al. Gene trans-
fer into mammalian cells by use of a nanosecond pulsed laser induced stress wave. Opt
�ett 2004;29:1227-9.
[275] Bohlin �. An attempt of nanowire-aided impalefection of nerve cells. Project for FYS
241. Experimental Biophysics, �und University, Sweden. Dated 20 May 2010; 2006.
[276] Melechko AV, Desikan R, McKnight TE, Klein K�, Rack PD. Synthesis of verti-
cally aligned carbon nanofibres for interfacing with live systems. J Phys D: Appl Phys
2009;42:1-28.
[277] McKnight TE, Melechko AV, Hensley DK, Mann DGJ, Griffin GD, Simpson M�.
Tracking gene expression after DNA delivery using spatially indexed nanofiber arrays.
Nano �ett 2004;4:1213-19.
[278] Peckys DB, Melechko AV, Simpson M�, McKnight TE. Immobilization and release
strategies for DNA delivery using carbon nanofibers arrays and self-assembled mono-
layers. Nanotechnol 2009;20:1-8.
[279] Mann DGJ, McKnight TE, McPherson JT, Hoyt PR, Melechko AV, Simpson M�, et al.
Inducible RNA interference-mediated gene silencing using nanostructured gene deliv-
ery arrays. ACS Nano 2008;2:69-76.
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