Interfacial self-assembly is a powerful organizational force for fabricating functional nanomaterials, including nanocarriers, for imaging and drug delivery. Herein, the interfacial self-assembly of pH-responsive metal-phenolic networks (MPNs) on the liquid-liquid interface of oil-in-water emulsions is reported. Oleic acid emulsions of 100-250 nm in diameter are generated by ultrasonication, to which poly(ethylene glycol) (PEG)-based polyphenolic ligands are assembled with simultaneous crosslinking by metal ions, thus forming an interfacial MPN. PEG provides a protective barrier on the emulsion phase and renders the emulsion low fouling. The MPN-coated emulsions have a similar size and dispersity, but an enhanced stability when compared with the uncoated emulsions, and exhibit a low cell association in vitro, a blood circulation half-life of ≈50 min in vivo, and are nontoxic to healthy mice. Furthermore, a model anticancer drug, doxorubicin, can be encapsulated within the emulsion phase at a high loading capacity (≈5 fg of doxorubicin per emulsion particle). The MPN coating imparts pH-responsiveness to the drug-loaded emulsions, leading to drug release at cell internalization pH and a potent cell cytotoxicity. The results highlight a straightforward strategy for the interfacial nanofabrication of pH-responsive emulsion-MPN systems with potential use in biomedical applications.

Besford, Q.a., Ju, Y., Wang, T.-., Yun, G., Cherepanov, P., Hagemeyer, C.e., et al. (2018). Self-Assembled Metal–Phenolic Networks on Emulsions as Low-Fouling and pH-Responsive Particles. SMALL, 14(39), e1802342 [10.1002/smll.201802342].

Self-Assembled Metal–Phenolic Networks on Emulsions as Low-Fouling and pH-Responsive Particles

Cavalieri F.;
2018-01-01

Abstract

Interfacial self-assembly is a powerful organizational force for fabricating functional nanomaterials, including nanocarriers, for imaging and drug delivery. Herein, the interfacial self-assembly of pH-responsive metal-phenolic networks (MPNs) on the liquid-liquid interface of oil-in-water emulsions is reported. Oleic acid emulsions of 100-250 nm in diameter are generated by ultrasonication, to which poly(ethylene glycol) (PEG)-based polyphenolic ligands are assembled with simultaneous crosslinking by metal ions, thus forming an interfacial MPN. PEG provides a protective barrier on the emulsion phase and renders the emulsion low fouling. The MPN-coated emulsions have a similar size and dispersity, but an enhanced stability when compared with the uncoated emulsions, and exhibit a low cell association in vitro, a blood circulation half-life of ≈50 min in vivo, and are nontoxic to healthy mice. Furthermore, a model anticancer drug, doxorubicin, can be encapsulated within the emulsion phase at a high loading capacity (≈5 fg of doxorubicin per emulsion particle). The MPN coating imparts pH-responsiveness to the drug-loaded emulsions, leading to drug release at cell internalization pH and a potent cell cytotoxicity. The results highlight a straightforward strategy for the interfacial nanofabrication of pH-responsive emulsion-MPN systems with potential use in biomedical applications.
2018
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHIM/02 - CHIMICA FISICA
English
drug delivery; emulsion; metal-phenolic networks; nanomaterials; self-assembly
Besford, Q.a., Ju, Y., Wang, T.-., Yun, G., Cherepanov, P., Hagemeyer, C.e., et al. (2018). Self-Assembled Metal–Phenolic Networks on Emulsions as Low-Fouling and pH-Responsive Particles. SMALL, 14(39), e1802342 [10.1002/smll.201802342].
Besford, Qa; Ju, Y; Wang, T-; Yun, G; Cherepanov, P; Hagemeyer, Ce; Cavalieri, F; Caruso, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/215543
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