Biomedical Engineering Reference
In-Depth Information
94. Boomer, J.A., et al. , Cytoplasmic delivery of liposomal contents mediated by
an acid-labile cholesterol-vinyl ether-PEG conjugate. Bioconjug Chem , 2009.
20(1): p. 47-59.
95. Chan, C.L., et al. , Endosomal escape and transfection ei ciency of PEGylated
cationic liposome-DNA complexes prepared with an acid-labile PEG-lipid.
Biomaterials , 2012. 33(19): p. 4928-35.
96. Hiraka, K., et al. , Preparation of pH-sensitive liposomes retaining SOD
mimic and their anticancer ef ect. Colloids Surf B Biointerfaces , 2008. 67(1):
p. 54-8.
97. Ng, L.-T., E. Yuba, and K. Kono, Modii cation of liposome surface with pH-
responsive polyampholytes for the controlled-release of drugs. Research on
Chemical Intermediates , 2009. 35(8-9): p. 1015-1025.
98. Paasonen, L., et al. , Temperature-sensitive poly(N-(2-hydroxypropyl)meth-
acrylamide mono/dilactate)-coated liposomes for triggered contents release.
Bioconjug Chem , 2007. 18(6): p. 2131-6.
99. Wehunt, M.P., et al. , Controlled drug-release system based on pH-sensitive
chloride-triggerable liposomes. J Liposome Res , 2013. 23(1): p. 37-46.
100. Yao, L., et al. , pHLIP(R)-mediated delivery of PEGylated liposomes to cancer
cells. J Control Release , 2013. 167(3): p. 228-37.
101. Romberg, B., et al. , Poly(amino acid)s: promising enzymatically degradable
stealth coatings for liposomes. Int J Pharm , 2007. 331(2): p. 186-9.
102. Sarkar, N., et al. , Matrix metalloproteinase-assisted triggered release of lipo-
somal contents. Bioconjug Chem , 2008. 19(1): p. 57-64.
103. Banerjee, J., et al. , Release of liposomal contents by cell-secreted matrix
metalloproteinase-9. Bioconjug Chem , 2009. 20(7): p. 1332-9.
104. Foged, C., H.M. Nielsen, and S. Frokjaer, Phospholipase A2 sensitive lipo-
somes for delivery of small interfering RNA (siRNA). J Liposome Res , 2007.
17(3-4): p. 191-6.
105. Shirazi, R.S., et al. , Structural evolution of environmentally responsive cat-
ionic liposome-DNA complexes with a reducible lipid linker. Langmuir ,
2012. 28(28): p. 10495-503.
106. Klibanov, A.L., et al. , Ultrasound-triggered release of materials entrapped in
microbubble-liposome constructs: a tool for targeted drug delivery. J Control
Release , 2010. 148(1): p. 13-7.
107. Dai, Z.J., et al. , Sonodynamic therapy (SDT): a novel treatment of cancer
based on sonosensitizer liposome as a new drug carrier. Med Hypotheses ,
2013. 80(3): p. 300-2.
108. Evjen, T.J., et al. , Physicochemical characterization of liposomes at er ultra-
sound exposure - mechanisms of drug release. J Pharm Biomed Anal , 2013.
78-79: p. 118-22.
109. Ibsen, S., et al. , A novel nested liposome drug delivery vehicle capable of
ultrasound triggered release of its payload. J Control Release , 2011. 155(3):
p. 358-66.
110. Schroeder, A., et al. , Controlling liposomal drug release with low frequency
ultrasound: mechanism and feasibility. Langmuir , 2007. 23(7): p. 4019-25.
Search WWH ::




Custom Search