期刊论文详细信息
JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS 卷:431
Synthesis, characterization and in vivo evaluation of biocompatible ferrogels
Article; Proceedings Paper
Lopez-Lopez, M. T.1,2  Rodriguez, I. A.2,3  Rodriguez-Arco, L.1,2  Carriel, V.2,3  Bonhome-Espinosa, A. B.1,2  Campos, F.2,3  Zubarev, A.4  Duran, J. D. G.1,2 
[1] Univ Granada, Dept Appl Phys, Granada, Spain
[2] Inst Invest Biosanitaria ibs GRANADA, Granada, Spain
[3] Univ Granada, Dept Histol, Tissue Engn Grp, Granada, Spain
[4] Ural Fed Univ, Dept Math Phys, Ekaterinburg, Russia
关键词: Ferrogel;    Polymer;    Magnetic particle;    Rheology;    Magnetorheology;    In vivo;   
DOI  :  10.1016/j.jmmm.2016.08.053
来源: Elsevier
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【 摘 要 】

A hydrogel is a 3-D network of polymer chains in which water is the dispersion medium. Hydrogels have found extensive applications in the biomedical field due to their resemblance to living tissues. Furthermore, hydrogels can be endowed with exceptional properties by addition of synthetic materials. For example, magnetic field-sensitive gels, called ferrogels, are obtained by embedding magnetic particles in the polymer network. Novel living tissues with unique magnetic field-sensitive properties were recently prepared by 3-D cell culture in biocompatible ferrogels. This paper critically reviews the most recent progress and perspectives in their synthesis, characterization and biocompatibility evaluation. Optimization of ferrogels for this novel application requires low-density, strongly magnetic, multi-domain particles. Interestingly, the rheological properties of the resulting ferrogels in the absence of field were largely enhanced with respect to nonmagnetic hydrogels, which can only be explained by the additional cross-linking imparted by the embedded magnetic particles. Remarkably, rheological measurements under an applied magnetic field demonstrated that ferrogels presented reversibly tunable mechanical properties, which constitutes a unique advantage with respect to nonmagnetic hydrogels. In vivo evaluation of ferrogels showed good biocompatibility, with only some local inflammatory response, and no particle migration or damage to distant organs. (C) 2016 Elsevier B.V. All rights reserved.

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