Literature DB >> 23237987

Design and characterization of biofunctional magnetic porous silicon flakes.

A Muñoz Noval1, R García, D Ruiz Casas, D Losada Bayo, V Sánchez Vaquero, V Torres Costa, R J Martín Palma, M A García, J P García Ruiz, J J Serrano Olmedo, J F Muñoz Negrete, F del Pozo Guerrero, M Manso Silván.   

Abstract

Magnetic porous silicon flakes (MPSF) were obtained from mesoporous silicon layers formed by multi-step anodization and subsequent composite formation with Fe oxide nanoparticles by thermal annealing. The magnetic nanoparticles adhered to the surface and penetrated inside the pores. Their structure evolved as a result of the annealing treatments derived from X-ray diffraction and X-ray absorption analyses. Moreover, by tailoring the magnetic load, the dynamic and hydrodynamic properties of the particles were controlled, as observed by the pressure displayed against a sensor probe. Preliminary functionality experiments were performed using an eye model, seeking potential use of MPSF as reinforcement for restored detached retina. It was observed that optimal flake immobilization is obtained when the MPSF reach values of magnetic saturation >10(-4)Am(2)g(-1). Furthermore, the MPSF were demonstrated to be preliminarily biocompatible in vitro. Moreover, New Zealand rabbit in vivo models demonstrated their short-term histocompatibility and their magnetic functionality as retina pressure actuators.
Copyright © 2012 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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Year:  2012        PMID: 23237987     DOI: 10.1016/j.actbio.2012.12.008

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  1 in total

1.  A sustained intravitreal drug delivery system with remote real time monitoring capability.

Authors:  Huiyuan Hou; Alejandra Nieto; Akram Belghith; Kaihui Nan; Yangyang Li; William R Freeman; Michael J Sailor; Lingyun Cheng
Journal:  Acta Biomater       Date:  2015-06-15       Impact factor: 8.947

  1 in total

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