pH-Responsive Copolymer Assemblies for Controlled Release of Doxorubicin
Top Cited Papers
- 11 February 2005
- journal article
- research article
- Published by American Chemical Society (ACS) in Bioconjugate Chemistry
- Vol. 16 (2) , 361-368
- https://doi.org/10.1021/bc049851c
Abstract
PH-Responsive drug carriers have the potential to provide selective drug release at therapeutic targets including tumors and in acidic intracellular vesicles such as endosomes and lysosomes. We have developed a new approach to the design of acid-sensitive micelles by incorporating hydrophobic acetal groups on the core block of a micelle-forming block copolymer. Hydrolysis of the acetals at mildly acidic pH is designed to reveal polar groups on the core-forming block, thus changing its solubility and disrupting the micelle, triggering drug release. The anticancer drug doxorubicin (DOX) was encapsulated in these pH-sensitive micelles, and the acetal hydrolysis rates and DOX release rates were determined in the pH range of 4.0 to 7.4 and were compared to those of control systems. The micelle disruption was investigated by dynamic light scattering. The in vitro toxicities of the empty and DOX-loaded micelles were determined, and the intracellular fate of the encapsulated DOX was compared to free DOX using fluorescence confocal microscopy.Keywords
This publication has 19 references indexed in Scilit:
- Stimuli-Responsive Supramolecular Assemblies of Linear-Dendritic CopolymersJournal of the American Chemical Society, 2004
- Phase I dose escalation and pharmacokinetic study of pluronic polymer-bound doxorubicin (SP1049C) in patients with advanced cancerBritish Journal of Cancer, 2004
- Drug delivery in polymeric micelles: from in vitro to in vivoJournal of Controlled Release, 2003
- Poly(ortho esters): synthesis, characterization, properties and usesAdvanced Drug Delivery Reviews, 2002
- Pluronic® block copolymers as novel polymer therapeutics for drug and gene deliveryPublished by Elsevier ,2002
- Poly(ethylene oxide)-block-poly(l-amino acid) micelles for drug deliveryAdvanced Drug Delivery Reviews, 2002
- Doxorubicin-loaded poly(ethylene glycol)–poly(β-benzyl-l-aspartate) copolymer micelles: their pharmaceutical characteristics and biological significanceJournal of Controlled Release, 2000
- Thermo-responsive polymer nanoparticles with a core-shell micelle structure as site-specific drug carriersJournal of Controlled Release, 1997
- Block copolymer micelles for drug delivery: loading and release of doxorubicinJournal of Controlled Release, 1997
- Substituent Effects in Acetal HydrolysisThe Journal of Organic Chemistry, 1965