Oxidation-responsive polymeric vesicles

被引:0
|
作者
Alessandro Napoli
Massimiliano Valentini
Nicola Tirelli
Martin Müller
Jeffrey A. Hubbell
机构
[1] Swiss Federal Institute of Technology (ETH) and University of Zurich,Institute for Biomedical Engineering and Department of Materials
[2] Moussonstrasse 18,undefined
[3] School of Pharmacy and Centre of Molecular Materials,undefined
[4] University of Manchester,undefined
[5] Institute of Biochemistry,undefined
[6] Laboratory for Electron Microscopy,undefined
[7] Swiss Federal Institute of Technology (ETH),undefined
[8] HPM C15,undefined
[9] ETH-Hönggerberg,undefined
[10] Institute for Biological Engineering and Biotechnology,undefined
[11] Swiss Federal Institute of Technology Lausanne (EPFL),undefined
[12] LMRP,undefined
来源
Nature Materials | 2004年 / 3卷
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摘要
Vesicles formed in water by synthetic macro-amphiphiles have attracted much attention as nanocontainers having properties that extend the physical and chemical limits of liposomes. We sought to develop ABA block copolymeric amphiphiles that self-assemble into unilamellar vesicles that can be further oxidatively destabilized. We selected poly(ethylene glycol) (PEG) as the hydrophilic A blocks, owing to its resistance to protein adsorption and low toxicity. As hydrophobic B blocks, we selected poly(propylene sulphide) (PPS), owing to its extreme hydrophobicity, its low glass-transition temperature, and most importantly its oxidative conversion from a hydrophobe to a hydrophile, poly(propylene sulphoxide) and ultimately poly(propylene sulphone). This is the first example of the use of oxidative conversions to destabilize such carriers. This new class of oxidation-responsive polymeric vesicles may find applications as nanocontainers in drug delivery, biosensing and biodetection.
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页码:183 / 189
页数:6
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