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Electroactive controlled release thin films.


ABSTRACT: We present the fabrication of nanoscale electroactive thin films that can be engineered to undergo remotely controlled dissolution in the presence of a small applied voltage (+1.25 V) to release precise quantities of chemical agents. These films, which are assembled by using a nontoxic, FDA-approved, electroactive material known as Prussian Blue, are stable enough to release a fraction of their contents after the application of a voltage and then to restabilize upon its removal. As a result, it is possible to externally trigger agent release, exert control over the relative quantity of agents released from a film, and release multiple doses from one or more films in a single solution. These electroactive systems may be rapidly and conformally coated onto a wide range of substrates without regard to size, shape, or chemical composition, and as such they may find use in a host of new applications in drug delivery as well as the related fields of tissue engineering, medical diagnostics, and chemical detection.

SUBMITTER: Wood KC 

PROVIDER: S-EPMC2268127 | biostudies-literature | 2008 Feb

REPOSITORIES: biostudies-literature

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Electroactive controlled release thin films.

Wood Kris C KC   Zacharia Nicole S NS   Schmidt Daniel J DJ   Wrightman Stefani N SN   Andaya Brian J BJ   Hammond Paula T PT  

Proceedings of the National Academy of Sciences of the United States of America 20080212 7


We present the fabrication of nanoscale electroactive thin films that can be engineered to undergo remotely controlled dissolution in the presence of a small applied voltage (+1.25 V) to release precise quantities of chemical agents. These films, which are assembled by using a nontoxic, FDA-approved, electroactive material known as Prussian Blue, are stable enough to release a fraction of their contents after the application of a voltage and then to restabilize upon its removal. As a result, it  ...[more]

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