Biomedical Engineering Reference
In-Depth Information
46. Kim, W.J., and S.W. Kim, Efficient siRNA delivery with non-viral
polymeric vehicles.
(3): pp. 657-666.
47. Elouahabi, A., and J.M. Ruysschaert, Formation and intracellular
trafficking of lipoplexes and polyplexes.
Pharm Res
, 2009.
26
Mol Ther
, 2005.
11
(3):
pp. 336-347.
48. Boussif, O.,
., A versatile vector for gene and oligonucleotide
transfer into cells in culture and
et al
in vivo
: polyethylenimine.
Proc Natl
(16): pp. 7297-7301.
49. Panyam, J., and V. Labhasetwar, Biodegradable nanoparticles for drug
and gene delivery to cells and tissue.
Acad Sci USA
, 1995.
92
Adv Drug Deliv Rev
, 2003.
55
(3):
pp. 329-347.
50. Shive, M.S., and J.M. Anderson, Biodegradation and biocompatibility
of PLA and PLGA microspheres.
Adv Drug Deliv Rev
, 1997.
28
(1):
pp. 5-24.
51. Faisant, N., J. Siepmann, and J.P. Benoit, PLGA-based microparticles:
elucidation of mechanisms and a new, simple mathematical model
quantifying drug release.
(4): pp. 355-366.
52. Patil, Y., and J. Panyam, Polymeric nanoparticles for siRNA delivery and
gene silencing.
Eur J Pharm Sci
, 2002.
15
Int J Pharm
, 2009.
367
(1-2): pp. 195-203.
53. Pille, J.Y.,
., Intravenous delivery of anti-RhoA small interfering
RNA loaded in nanoparticles of chitosan in mice: safety and efficacy in
xenografted aggressive breast cancer.
et al
Hum Gene Ther
, 2006.
17
(10):
pp. 1019-1026.
54. de Martimprey, H.,
., siRNA nanoformulation against the ret/PTC1
junction oncogene is efficient in an
et al
in vivo
model of papillary thyroid
(1): p. e2.
55. Daniel, M.C., and D. Astruc, Gold nanoparticles: assembly,
supramolecular
carcinoma.
Nucleic Acids Res
, 2008.
36
chemistry,
quantum-size-related
properties,
and
applications toward biology, catalysis, and nanotechnology.
Chem Rev
,
2004.
104
(1): pp. 293-346.
56. Ghosh, P.,
et al
., Gold nanoparticles in delivery applications.
Adv Drug
Deliv Rev
, 2008.
60
(11): pp. 1307-1315.
57. Giljohann,
D.A.,
et
al
.,
Gene
regulation
with
polyvalent
siRNA-
(6): pp. 2072-2073.
58. Alivisatos, P., The use of nanocrystals in biological detection.
nanoparticle conjugates.
J Am Chem Soc
, 2009.
131
Nat
Biotechnol
, 2004.
22
(1): pp. 47-52.
59. Bruchez, M., Jr.,
et al
., Semiconductor nanocrystals as fluorescent
biological labels.
Science
, 1998.
281
(5385): pp. 2013-2016.
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