Composite Materials Based on Gelatin and Iron Oxide Nanoparticles for MRI Accuracy

Author:

Drobota MioaraORCID,Vlad StelianORCID,Gradinaru Luiza MadalinaORCID,Bargan AlexandraORCID,Radu Iulian,Butnaru Maria,Rîmbu Cristina MihaelaORCID,Ciobanu Romeo Cristian,Aflori MagdalenaORCID

Abstract

The majority of recent studies have focused on obtaining MRI materials for internal use. However, this study focuses on a straightforward method for preparing gelatin-based materials with iron oxide nanoparticles (G–Fe2O3 and G–Fe3O4) for external use. The newly obtained materials must be precisely tuned to match the requirements and usage situation because they will be in close touch with human/animal skin. The biocompatible structures formed by gelatin, tannic acid, and iron oxide nanoparticles were investigated by using FTIR spectroscopy, SEM-EDAX analysis, and contact angle methods. The physico-chemical properties were obtained by using mechanical investigations, dynamic vapor sorption analysis, and bulk magnetic determination. The size and shape of iron oxide nanoparticles dictates the magnetic behavior of the gelatin-based samples. The magnetization curves revealed a typical S-shaped superparamagnetic behavior which is evidence of improved MRI image accuracy. In addition, the MTT assay was used to demonstrate the non-toxicity of the samples, and the antibacterial test confirmed satisfactory findings for all G-based materials.

Publisher

MDPI AG

Subject

General Materials Science

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