67
Views
1
CrossRef citations to date
0
Altmetric
Patent Evaluations

pH-sensitive polymers for cytoplasmic drug delivery

, PhD
Pages 959-962 | Published online: 04 Aug 2008

Bibliography

  • Cabral H, Nishiyama N, Kataoka K: Optimization of (1,2-diamino-cyclohexane)platinum(II)-loaded polymeric micelles directed to improved tumor targeting and enhanced antitumor activity. J Control Release 2007;121:146-55
  • Kataoka K, Harada A, Nagasaki Y. Block copolymer micelles for drug delivery design, characterization and biological significance. Adv Drug Deliv Rev 2001;47:113-31
  • Kim JH, Kim YS, Park K, et al. Self-assembled glycol chitosan nanoparticles for the sustained and prolonged delivery of antiangiogenic small peptide drugs in cancer therapy. Biomaterials 2008;29:1920-30
  • Dandamudi S, Campbell RB. Development and characterization of magnetic cationic liposomes for targeting tumor microvasculature. Biochim Biophys Acta Biomembr 2007;1768:427-38
  • Thomson P, Naylor MA, Stratford MRL, et al. Hypoxia-driven elimination of thiopurines from their nitrobenzyl prodrugs. Bioorg Med Chem Lett 2007;17:4320-2
  • Noguchi M, Skwarczynski M, Prakash H, et al. Development of novel water-soluble photocleavable protective group and its application for design of photoresponsive paclitaxel prodrugs. Bioorg Med Chem 2008;16:5389-97
  • Gosk S, Moos T, Gottstein C, Bendas G. VCAM-1 directed immunoliposomes selectively target tumor vasculature in vivo. Biochim Biophys Acta Biomembr 2008;1778:854-63
  • Maeda H, Wu J, Sawa T, et al. Tumor vascular permeability and the EPR effect in macromolecular therapeutics: a review. J Control Release 2000;65:271-84
  • Chung JE, Yokoyama M, Yamato M, et al. Thermo-responsive drug delivery from polymeric micelles constructed using block copolymers of poly(N-isopropylacrylamide) and poly(butylmethacrylate). J Control Release 1999;62:115-27
  • Oh KT, Lee ES, Kim D, Bae YH. L-histidine-based pH-sensitive anticancer drug carrier micelle: reconstitution and brief evaluation of its systemic toxicity. Int J Pharm 2008;358(1-2):177-83
  • Sethuraman VA, Bae YH. TAT peptide-based micelle system for potential active targeting of anti-cancer agents to acidic solid tumors. J Control Release 2007;118:216-24
  • Gao ZG, Fain HD, Rapoport N. Controlled and targeted tumor chemotherapy by micellar-encapsulated drug and ultrasound. J Control Release 2005;102:203-22
  • Veronese FM, Schiavon O, Pasut G, et al. PEG-doxorubicin conjugates: influence of polymer structure on drug release, in vitro cytotoxicity, biodistribution, and antitumor activity. Bioconjug Chem 2005;16:775-84
  • Leroux J, Roux E, Le Garrec D, et al. N-isopropylacrylamide copolymers for the preparation of pH-sensitive liposomes and polymeric micelles. J Control Release 2001;72:71-84
  • Yin H, Lee ES, Kim D, et al. Physicochemical characteristics of pH-sensitive poly(l-histidine)-b-poly(ethylene glycol)/poly(l-lactide)-b-poly(ethylene glycol) mixed micelles. J Control Release 2008;126:130-8
  • Pan J, Feng SS. Targeted delivery of paclitaxel using folate-decorated poly(lactide)–vitamin E TPGS nanoparticles. Biomaterials 2008;29:2663-72
  • Janssen AP, Schiffelers RM, ten Hagen TL, et al. Peptide-targeted PEG-liposome in anti-angiogenic therapy. Int J Pharm 2003;254:55-8
  • Liu SQ, Wiradharma N, Gao SJ, et al. Bio-functional micelles self-assembled from a folate-conjugated block copolymer for targeted intracellular delivery of anticancer drugs. Biomaterials 2007;28:1423-33
  • Du J, Dai J, Liu JL, Dankovich T. Novel pH-sensitive polyelectrolyte carboxymethyl Konjac glucomannan-chitosan beads as drug carriers. Reactive Functional Polymers 2006;66:1055-61
  • Lin WC, Yu DG, Yang MC. pH-sensitive polyelectrolyte complex gel microspheres composed of chitosan/sodium tripolyphosphate/dextran sulfate: swelling kinetics and drug delivery properties. Colloids Surf B Biointerfaces 2005;44:143-51
  • Lin YH, Liang HF, Chung CK, et al. Physically crosslinked alginate/N,O-carboxymethyl chitosan hydrogels with calcium for oral delivery of protein drugs. Biomaterials 2005;26:2105-13
  • Yoshizawa T, Shin-Ya Y, Hong KJ, Kajiuchi T. pH- and temperature-sensitive release behaviors from polyelectrolyte complex films composed of chitosan and PAOMA copolymer. Eur J Pharm Biopharm 2005;59:307-13
  • Yoshizawa T, Shin-Ya Y, Hong KJ, Kajiuchi T. pH- and temperature-sensitive permeation through polyelectrolyte complex films composed of chitosan and polyalkyleneoxide–maleic acid copolymer. J Membr Sci 2004;241:347-54
  • Nam SY, Lee YM. Pervaporation and properties of chitosan-poly(acrylic acid) complex membranes. J Membr Sci 1997;135:161-71
  • Soyez H, Schacht E, Vanderkerken S. The crucial role of spacer groups in macromolecular prodrug design. Adv Drug Deliv Rev 1996;21:81-106
  • Asayama S, Ogawa A, Kawakami H, Nagaoka S. Double-stranded RNA homopolymer poly(rC).poly(rG) for a new pH-sensitive drug carrier. Mol Pharm 2008;5:162-4
  • Duncan R, Gac-Breton S, Keane R, et al. Polymer–drug conjugates, PDEPT and PELT: basic principles for design and transfer from the laboratory to clinic. J Control Release 2001;74:135-46
  • Ulbrich K, Subr V. Polymeric anticancer drugs with pH-controlled activation. Adv Drug Deliv Rev 2004;56:1023-50
  • Lopes De Menezes DE, Pilarski LM, Belch AR, Allen TM. Selective targeting of immunoliposomal doxorubicin against human multiple myeloma in vitro and ex vivo. Biochim Biophys Acta Biomembr 2000;1466:205-20
  • Rinne J, Albarran B, Jylhävä J, et al. Internalization of novel non-viral vector TAT-streptavidin into human cells. BMC Biotechnol 2007;7:1-14
  • Boussif O, Lezoualc'h F, Zanta MA, et al. A versatile vector for gene and oligonucleotide transfer into cells in culture and in vivo: polyethylenimine. Proc Natl Acad Sci USA 1995;92:7297-301
  • Jones RA, Cheung CY, Black FE, et al. Poly(2-alkylacrylic acid) polymers deliver molecules to the cytosol by pH-sensitive disruption of endosomal vesicles. Biochem J 2003;372:65-75
  • Roux E, Francis M, Winnik FM, Leroux JC. Polymer based pH-sensitive carriers as a means to improve the cytoplasmic delivery of drugs. Int J Pharm 2002;242:25-36
  • Lackey CA, Murthy N, Press OW, et al. Hemolytic activity of pH-responsive polymer-streptavidin bioconjugates. Bioconjug Chem 1999;10:401-5
  • Jones RA, Cheung CY, Black FE, et al. Poly(2-alkylacrylic acid) polymers deliver molecules to the cytosol by pH-sensitive disruption of endosomal vesicles. Biochem J 2003;372:65-75
  • Fan L, Wu H, Zhang H, et al. Novel super ph-sensitive nanoparticles responsive to tumor extracellular pH. Carbohydr Polym 2008;73:390-400
  • University of Ulsan Foundation for Industry Cooperation. WO2008007932; 2008

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.