2015
DOI: 10.1002/smll.201403343
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pH-Responsive Capsules Engineered from Metal-Phenolic Networks for Anticancer Drug Delivery

Abstract: A new class of pH-responsive capsules based on metal-phenolic networks (MPNs) for anticancer drug loading, delivery and release is reported. The fabrication of drug-loaded MPN capsules, which is based on the formation of coordination complexes between natural polyphenols and metal ions over a drug-coated template, represents a rapid strategy to engineer robust and versatile drug delivery carriers.

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Cited by 222 publications
(208 citation statements)
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“…[ 40 ] The release of siRNA from the TA coated carrier/siRNA complex (denoted as MNC@LPMSA@siRNA@TA) also follows a pH-dependent behavior ( Figure S10, Supporting Information). After 24 h of incubation at pH 7 and pH 5, the residual siRNA in the carriers is 44% and 19%, respectively.…”
Section: Loading Capacity and Protection Of Sirnamentioning
confidence: 94%
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“…[ 40 ] The release of siRNA from the TA coated carrier/siRNA complex (denoted as MNC@LPMSA@siRNA@TA) also follows a pH-dependent behavior ( Figure S10, Supporting Information). After 24 h of incubation at pH 7 and pH 5, the residual siRNA in the carriers is 44% and 19%, respectively.…”
Section: Loading Capacity and Protection Of Sirnamentioning
confidence: 94%
“…In contrast to previous carrier coating strategies using lipid bilayer or cationic polymers, [ 4,8,30,41 ] this TA coating has been featured by high biocompatibility, availability to various substrates, facile one-step preparation and pH-dependent decomposition. [ 40,42,43 ] In this study, the successful coating of TA onto the nanoparticles is fi rst confi rmed by FTIR, X-ray photoelectron spectroscopy (XPS), thermogravimetric analysis ( Figure S7, Supporting Information). The TA coated sample shows additional C-H adsorption peaks in 1300-1500 cm −1 range of FTIR spectrum.…”
Section: Loading Capacity and Protection Of Sirnamentioning
confidence: 99%
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“…Capsules with the metal-phenolic network (MPN) shell were synthesized by the complexation between the organic ligand deposited on removable -sacrificial templates and inorganic metal ions as a cross-linker that produced robust nanoscale coordination layers [348,349]. Such films are structurally rigid but could respond to external stimuli and they can be degraded under cytocompatible physiological conditions.…”
Section: Bio-inspired Poly(dopamine) Capsules With a Fluorescent Shellmentioning
confidence: 99%
“…28,29 Due to diverse structural and functional properties of TA, combined with its chelation ability, metal-TA coordination complexes could form three-dimensional films on a range of substrates. 30,31 The cleavage of the coordination bonds based on metal and TA is sensitive to variations in external pH, which could impact the delivery system by the pH-responsive release of the drug under acidic conditions. In our previous work, we have investigated designable coordination bonding-based metal-TA architecture on zein NPs.…”
Section: Introductionmentioning
confidence: 99%