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view:28335   Last Update: 2023-2-7

Ramin MohammadKhani

Reza Abbasi, Jafar Mostafavi Amjad, Hamed Nosrati, Ramin Mohammadkhani, Hosein Danafar
Synthesis and characterization of PEGylated iron and graphene oxide magnetic composite for curcumin deliverySynthesis and characterization of PEGylated iron and graphene oxide magnetic composite for curcumin delivery
Abstract


Nowadays, nanostructures have been given significant attention in medical and biological fields. Among these nanostructures, graphene oxide (GO) has been widely used in drug delivery systems, because of its unique properties, and the ability to connect to other nanostructures such as magnetic nanoparticles (NPs) as well as polymers by its functional groups.  In this research, first, GO was prepared by exfoliating graphite according to the modified Hummer’s method, and then the Fe3O4 NPs were synthesized by a simple co‐precipitation method on GO nanosheets. In the next step, with the help of the ethyl‐3‐(3‐dimethylaminopropyl) carbodiimide/N‐hydroxysuccinimide coupling reagents, the polyethylene glycol (PEG) polymer was bonded to the GO‐Fe3O4nanocomposite. Finally, anti‐cancer drug, curcumin (Cur) was loaded onto the nanocomposite and the Cur loading ratio was measured at about 8%. The samples were evaluated using Fourier transform‐infrared, differential scanning calorimtery, vibrating‐sample magnetometry, atomic force microscopy and dynamic light scattering techniques. The results show that the prepared nanocomposite is an appropriate candidate for biomedical applications.

 

 

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