Synthesis and Toxicity of Graphene Oxide Nanoparticles: A Literature Review of In Vitro and In Vivo Studies

Author:

Rhazouani Asmaa123,Gamrani Halima3ORCID,El Achaby Mounir4ORCID,Aziz Khalid5,Gebrati Lhoucine6,Uddin Md Sahab78ORCID,AZIZ Faissal12ORCID

Affiliation:

1. Laboratory of Water, Biodiversity & Climate Change, Cadi Ayyad University, B.P. 2390, 40000 Marrakech, Morocco

2. National Centre for Studies and Research on Water and Energy (CNEREE), Cadi Ayyad University, B. P 511, 40000 Marrakech, Morocco

3. Laboratory of Clinical, Experimental and Environmental Neurosciences, Cadi Ayyad University, Marrakech, Morocco

4. Materials Science and Nano-Engineering (MSN) Department, Mohammed VI Polytechnic University (UM6P), 43150, Benguerir, Morocco

5. Materials, Catalysis and Valorization of Natural Resources, Faculty of Sciences, University Ibn Zohr, BP 8106 Agadir, Morocco

6. Laboratory of Materials, Processes, Environment and Quality, Cadi Ayyad University, BP 63, 46000 Safi, Morocco

7. Department of Pharmacy, Southeast University, Dhaka, Bangladesh

8. Pharmakon Neuroscience Research Network, Dhaka, Bangladesh

Abstract

Nanomaterials have been widely used in many fields in the last decades, including electronics, biomedicine, cosmetics, food processing, buildings, and aeronautics. The application of these nanomaterials in the medical field could improve diagnosis, treatment, and prevention techniques. Graphene oxide (GO), an oxidized derivative of graphene, is currently used in biotechnology and medicine for cancer treatment, drug delivery, and cellular imaging. Also, GO is characterized by various physicochemical properties, including nanoscale size, high surface area, and electrical charge. However, the toxic effect of GO on living cells and organs is a limiting factor that limits its use in the medical field. Recently, numerous studies have evaluated the biocompatibility and toxicity of GO in vivo and in vitro. In general, the severity of this nanomaterial’s toxic effects varies according to the administration route, the dose to be administered, the method of GO synthesis, and its physicochemical properties. This review brings together studies on the method of synthesis and structure of GO, characterization techniques, and physicochemical properties. Also, we rely on the toxicity of GO in cellular models and biological systems. Moreover, we mention the general mechanism of its toxicity.

Funder

DUPC2: IHE Delft Partnership Programme for Water and Development

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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