217. Wakefield DH, Klein JJ, Wolff JA, Rozema DB (2005) Membrane activity and transfection
ability of amphipathic polycations as a function of alkyl group size. Bioconjug Chem
16:1204–1208
218. Wang C-H, Hsiue G-H (2005) Polymer-DNA hybrid nanoparticles based on folatepolyethylenimine-block-poly(L-lactide). Bioconjug Chem 16:391–396
219. Bromberg L, Deshmukh S, Temchenko M, Iourtchenko L, Alakhov V, Alvarez-Lorenzo C,
Barreiro-Iglesias R, Concheiro A, Hatton TA (2005) Polycationic block copolymers of poly
(ethylene oxide) and poly(propylene oxide) for cell transfection. Bioconjug Chem
16:626–633
220. Alvarez-Lorenzo C, Barreiro-Iglesias R, Concheiro A (2005) Biophysical characterization of
complexation of DNA with block copolymers of poly(2-dimethylaminoethyl) methacrylate,
poly(ethylene oxide), and poly(propylene oxide). Langmuir 21:5142–5148
221. Lidgi-Guigui N, Guis C, Brissault B, Kichler A, Leborgne C, Scherman D, Labdi S, Curmi
PA (2010) Investigation of DNA condensing properties of amphiphilic triblock cationic
polymers by atomic force microscopy. Langmuir 26:17552–17557
222. Wang Y, Gao S, Ye W-H, Yoon HS, Yang Y-Y (2006) Co-delivery of drugs and DNA from
cationic core-shell nanoparticles self-assembled from a biodegradable copolymer. Nat Mater
5:791–796
223. Guo S, Qiao Y, Wang W, He H, Deng L, Xing J, Xu J, Liang X-J, Dong A (2010) Poly
(ε-caprolactone)-graft-poly(2-(N, N-dimethylamino) ethyl methacrylate) nanoparticles: pH
dependent thermo-sensitive multifunctional carriers for gene and drug delivery. J Mater
Chem 20:6935–6941
224. Li Y-Y, Hua S-H, Xiao W, Wang H-Y, Luo X-H, Li C, Cheng S-X, Zhang X-Z, Zhuo R-X
(2011) Dual-vectors of anti-cancer drugs and genes based on pH-sensitive micelles selfassembled from hybrid polypeptide copolymers. J Mater Chem 21:3100–3106
225. Izumrudov VA, Zelikin AN, Zhiryakova MV, Jaeger W, Bohrisch J (2003) Interpolyelectrolyte reactions in solutions of polycarboxybetaines. J Phys Chem B 107:7982–7986
226. Izumrudov VA, Domashenko NI, Zhiryakova MV, Davydova OV (2005) Interpolyelectrolyte
reactions in solutions of polycarboxybetaines, 2: Influence of alkyl spacer in the betaine
moieties on complexing with polyanions. J Phys Chem B 109:17391–17399
227. Ishihara K, Nomura H, Mihara T, Kurita K, Iwasaki Y, Nakabayashi N (1998) Why do
phospholipid polymers reduce protein adsorption? J Biomed Mater Res A 39:323–330
228. Konno T, Kurita K, Iwasaki Y, Nakabayashi N, Ishihara K (2001) Preparation of
nanoparticles composed with bioinspired 2-methacryloyloxyethyl phosphorylcholine polymer. Biomaterials 22:1883–1889
229. Lam JKW, Ma Y, Armes SP, Lewis AL, Baldwin T, Stolnik S (2004) Phosphorylcholinepolycation diblock copolymers as synthetic vectors for gene delivery. J Control Release
100:293–312
230. Chim YTA, Lam JKW, Ma Y, Armes SP, Lewis AL, Roberts CJ, Stolnik S, Tendler SJB,
Davies MC (2005) Structural study of DNA condensation induced by novel
phosphorylcholine-based copolymers for gene delivery and relevance to DNA protection.
Langmuir 21:3591–3598
231. Ahmed M, Bhuchar N, Ishihara K, Narain R (2011) Well-controlled cationic water-soluble
phospholipid polymer-DNA nanocomplexes for gene delivery. Bioconjug Chem
22:1228–1238
232. Dai F, Wang P, Wang Y, Tang L, Yang J, Liu W, Li H, Wang G (2008) Double thermoresponsive polybetaine-based ABA triblock copolymers with capability to condense DNA.
Polymer 49:5322–5328
233. Wang J, Zhang P-C, Lu H-F, Ma N, Wang S, Mao H-Q, Leong KW (2002) New
polyphosphoramidate with a spermidine side chain as a gene carrier. J Control Release
83:157–168
194
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