One-Pot Conversion of RAFT-Generated Multifunctional Block Copolymers of HPMA to Doxorubicin Conjugated Acid- and Reductant-Sensitive Crosslinked Micelles

被引:142
作者
Jia, Zhongfan [1 ]
Wong, Lingjiun [1 ]
Davis, Thomas P. [1 ]
Bulmus, Volga [1 ,2 ]
机构
[1] Univ New S Wales, CAMD, Sch Chem Sci & Engn, Sydney, NSW 2052, Australia
[2] Univ New S Wales, Sch Biotechnol & Biomol Sci BABS, Sydney, NSW 2052, Australia
基金
澳大利亚研究理事会;
关键词
D O I
10.1021/bm800657e
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
N-(2-Hydroxypropyl)methacrylamide (HPMA) containing polymers that are widely used as anticancer drug carriers. We have synthesized new amphiphilic block copolymers of HPMA with a functional monomer 2-(2-pyridyldisulfide)ethylmethacrylate (PDSM) via reversible addition-fragmentation chain transfer (RAFT) polymerization. In a one-pot reaction, the versatility of PDS groups on poly(PDSM)-b-poly(HPMA) was used to conjugate an anticancer drug, doxorubicin (DOX), and also simultaneously crosslink the micellar assemblies via acid-cleavable hydrazone bonds and reducible disulfide bonds. DOX-conjugated crosslinked micelles with an average diameter of approximately 60 nm were observed to be formed in aqueous medium. Disintegration of the micelles into unimers in the presence of a disulfide reducing agent confirmed the crosslinking via disulfide bonds. While the release of DOX from the crosslinked micelles at pH 5.0 was faster compared to the release at pH 7.4, a high proportion of released DOX was found to retain the original active structure. Overall results demonstrate the simplicity and the versatility of the poly(PDSM)-b-poly(HPMA) system, which are potentially important in the design of new generation of polymer therapeutics.
引用
收藏
页码:3106 / 3113
页数:8
相关论文
共 60 条
[1]   Complex macromolecular architectures by reversible addition fragmentation chain transfer chemistry: Theory and practice [J].
Barner, Leonie ;
Davis, Thomas P. ;
Stenzel, Martina H. ;
Barner-Kowollik, Christopher .
MACROMOLECULAR RAPID COMMUNICATIONS, 2007, 28 (05) :539-559
[2]   Reversible cross-linking of hyperbranched polymers: A strategy for the combinatorial decoration of multivalent scaffolds [J].
Barth, M ;
Fischer, R ;
Brock, R ;
Rademann, J .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2005, 44 (10) :1560-1563
[3]   Anthracycline antibiotics non-covalently incorporated into the block copolymer micelles: In vivo evaluation of anti-cancer activity [J].
Batrakova, EV ;
Dorodnych, TY ;
Klinskii, EY ;
Kliushnenkova, EN ;
Shemchukova, OB ;
Goncharova, ON ;
Arjakov, SA ;
Alakhov, VY ;
Kabanov, AV .
BRITISH JOURNAL OF CANCER, 1996, 74 (10) :1545-1552
[4]   Polymer micelles with cross-linked ionic cores for delivery of anticancer drugs [J].
Bontha, Satya ;
Kabanov, Alexander V. ;
Bronich, Tatiana K. .
JOURNAL OF CONTROLLED RELEASE, 2006, 114 (02) :163-174
[5]   Well-defined protein-polymer conjugates via in situ RAFT polymerization [J].
Boyer, Cyrille ;
Bulmus, Volga ;
Liu, Jingquan ;
Davis, Thomas P. ;
Stenzel, Martina H. ;
Barner-Kowollik, Christopher .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (22) :7145-7154
[6]   Controlled/living radical polymerization: Features, developments, and perspectives [J].
Braunecker, Wade A. ;
Matyjaszewski, Krzysztof .
PROGRESS IN POLYMER SCIENCE, 2007, 32 (01) :93-146
[7]   A new pH-responsive and glutathione-reactive, endosomal membrane-disruptive polymeric carrier for intracellular delivery of biomolecular drugs [J].
Bulmus, V ;
Woodward, M ;
Lin, L ;
Murthy, N ;
Stayton, P ;
Hoffman, A .
JOURNAL OF CONTROLLED RELEASE, 2003, 93 (02) :105-120
[8]   PEG-SS-PPS: Reduction-sensitive disulfide block copolymer vesicles for intracellular drug delivery [J].
Cerritelli, Simona ;
Velluto, Diana ;
Hubbell, Jeffrey A. .
BIOMACROMOLECULES, 2007, 8 (06) :1966-1972
[9]   Acid-labile core cross-linked micelles for pH-triggered release of antitumor drugs [J].
Chan, Yannie ;
Wong, To ;
Byrne, Frances ;
Kavallaris, Maria ;
Bulmus, Volga .
BIOMACROMOLECULES, 2008, 9 (07) :1826-1836
[10]   New HPMA copolymer-based drug carriers with covalently bound hydrophobic substituents for solid tumour targeting [J].
Chytil, P. ;
Etrych, T. ;
Konak, C. ;
Sirova, M. ;
Mrkvan, T. ;
Boucek, J. ;
Rihova, B. ;
Ulbrich, K. .
JOURNAL OF CONTROLLED RELEASE, 2008, 127 (02) :121-130