New Thiol-responsive Mono-cleavable Block Copolymer Micelles Labeled with Single Disulfides
Overview
Molecular Biology
Affiliations
Thiol-responsive symmetric triblock copolymers having single disulfide linkages in the middle blocks (called mono-cleavable block copolymers, ss-ABP(2)) were synthesized by atom transfer radical polymerization in the presence of a disulfide-labeled difunctional Br-initiator. These brush-like triblock copolymers consist of a hydrophobic polyacrylate block having pendent oligo(propylene oxide) and a hydrophilic polymethacrylate block having pendent oligo(ethylene oxide). Gel permeation chromatography and (1)H NMR results confirmed the synthesis of well-defined mono-cleavable block copolymers and revealed that polymerizations were well controlled. Because of amphiphilic nature, these copolymers self-assembled to form colloidally stable micelles above critical micellar concentration of 0.032 mg · mL(-1). In response to reductive reactions, disulfides in thiol-responsive micelles were cleaved. Atomic force microscopy and dynamic light scattering analysis suggested that the cleavage of disulfides caused dissociation of micelles to smaller-sized assembled structures in water. Moreover, in a biomedical perspective, the mono-cleavable block copolymer micelles are not cytotoxic and thus biocompatible.
Baldwin A, Kiick K Polym Chem. 2013; 4(1):133-143.
PMID: 23766781 PMC: 3677572. DOI: 10.1039/C2PY20576A.
ATRP in the design of functional materials for biomedical applications.
Siegwart D, Oh J, Matyjaszewski K Prog Polym Sci. 2013; 37(1):18-37.
PMID: 23525884 PMC: 3604987. DOI: 10.1016/j.progpolymsci.2011.08.001.