1Lavasanifar A, Samuel J, Kwon GS. Poly(ethylene oxide)-block-poly ( L-amino acid ) micelles for drug delivery [J].Adv Drug Deliv Rev, 2002, 54(2):169-190.
3Yokoyama M, Fukushima S, Uehara R, et al . Characterization of physical entrapment and chemical conjugation of adriamycin in polymeric micelles and their design for vivo delivery to a solid tumor[J]. J Control Release. 1998, 50(1-3) :79-92.
4Cheon Lee S, Kim C, Chan Kown I, et al. Polymeric micelles of poly ( 2-ethyl-2-oxazoline )-block-poly ( varesilon-caprolactone) copolymer as a carrier for paclitaxel[J].J Control Release, 2003, 89(3) :437 - 446.
5Kumar N, Ravikumar MN, Domb AJ. Biodegradable block copolymers[ J ]. Adv Drug Deliv Rev, 2001, 53 ( 1 ) : 2344.
6Kwon GS, Kataoka K. Block copolymer micelles as long circulating drug vehicles[J]. Adv Drug Deliv Rev. 1995, 16(2/3):295- 309.
7Nakanishi T, Fukushima S, Okamoto K, et al. Development of the polymer micelle carrier system for doxorubicin[J]. J Control Release, 2001, 74(1-3):295-302.
8Yoo HS, Park TG. Biodegradable polymeric micelles composed of doxorubicin conjugated PLGA-PEG block copolymer[J]. J Control Release, 2001, 70(1/2) :63 -70.
9Allen C, Yu Y, Eisenberg A, et al. Cellular internalization of PCL20-b-PEO44 block copolymer micelles [J]. Biochim Biophys Acta, 1999, 1421(1):32-38.
10Zastre J, Jackson J, Bajwa M, et al. Enhanced cellular accumulation of a P-glycoprotcin substrate rhodamin 123, by Caco-2 cells using low molecular weight methoxypolyethylene glycol- block- polycaprolactone diblock copolymers [J]. Eur J Pharm Biopharm , 2002, 54(3) : 799-309.