Functional magnetic porous silica for T -T dual-modal magnetic resonance imaging and pH-responsive drug delivery of basic drugs.

Nanotechnology

Hubei Collaborative Innovation Center for Advanced Organic Chemical Materials, Hubei University 430062, People's Republic of China. Key Laboratory of Green Preparation and Application for Materials, Ministry of Education, Hubei University 430062, People's Republic of China. Australian Institute for Bioengineering and Nanotechnology, The University of Queensland, QLD, Australia.

Published: December 2016

A smart magnetic-targeting drug carrier γ-FeO@p-silica comprising a γ-FeO core and porous shell has been prepared and characterized. The particles have a uniform size of about 60 nm, and a porous shell of thickness 3 nm. Abundant hydroxyl groups and a large surface area enabled the γ-FeO@p-silica to be readily loaded with a large payload of the basic model drug rhodamine B (RB) (up to 73 mg g). Cytotoxicity assays of the γ-FeO@p-silica particles indicated that the particles were biocompatible and suitable for carrying drugs. It was found that the RB was released rapidly at pH 5.5 but at pH 7.4 the rate and extent of release was greatly attenuated. The particles therefore demonstrate an excellent pH-triggered drug release. In addition, the γ-FeO@p-silica particles could be tracked by magnetic resonance imaging (MRI). A clear dose-dependent contrast enhancement in both T -weighted and T -weighted MR images indicated the potential of the γ-FeO@p-silica particles to act as dual-mode T and T MRI contrast agents.

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Source
http://dx.doi.org/10.1088/0957-4484/27/48/485702DOI Listing

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