Synthesis and characterization of fluorinated graphene oxide nanosheets derived from Lissachatina fulica snail mucus and their biomedical applications

Author:

Ganesan Manimegalai1,Muthaiah Chandran1,Wadaan Mohammad Ahmad2,Kumar Manimaran3ORCID,Yanto Dede Heri Yuli3,Kumar Selvaraj4,Selvankumar Thangasamy5ORCID,Arulraj Arunachalam6ORCID,Mangalaraja Ramalinga Viswanathan78ORCID,Suganthi Sanjeevamuthu9

Affiliation:

1. Department of Zoology Thiruvalluvar University Vellore Tamil Nadu India

2. Department of Zoology, College of Science King Saud University Riyadh Saudi Arabia

3. Research Center for Applied Microbiology National Research and Innovation Agency (BRIN) Cibinong Republic of Indonesia

4. State Key Laboratory of Fire Science University of Science and Technology of China Hefei Anhui China

5. Biomaterials Research Unit, Center for Global Health Research, Saveetha Medical College & Hospital Saveetha Institute of Medical and Technical Sciences (SIMATS) Chennai Tamil Nadu India

6. Departamento de Electricidad, Facultad de Ingeniería Universidad Tecnológica Metropolitana (UTEM) Ñuñoa Santiago Chile

7. Faculty of Engineering and Sciences Universidad Adolfo Ibáñez Peñalolén Santiago Chile

8. Vicerrectoría de Investigación e Innovación Universidad Arturo Prat Iquique Chile

9. Saveetha School of Engineering Saveetha Institute of Medical and Technical Sciences, Saveetha University Chennai Tamil Nadu India

Abstract

AbstractThe modern nanomedicine incorporates the multimodal treatments into a single formulation, offering innovative cancer therapy options. Nanosheets function as carriers, altering the solubility, biodistribution, and effectiveness of medicinal compounds, resulting in more efficient cancer treatments and reduced side effects. The non‐toxic nature of fluorinated graphene oxide (FGO) nanosheets and their potential applications in medication delivery, medical diagnostics, and biomedicine distinguish them from others. Leveraging the unique properties of Lissachatina fulica snail mucus (LfSM), FGO nanosheets were developed to reveal the novel characteristics. Consequently, LfSM was utilized to create non‐toxic, environmentally friendly, and long‐lasting FGO nanosheets. Ultraviolet–visible (UV–vis) spectroscopy revealed a prominent absorbance peak at 235 nm. The characterization of the synthesized FGO nanosheets involved X‐ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), Raman, scanning electron microscopy (SEM), X‐ray photoelectron spectroscopy (XPS), high‐resolution transmission electron microscopy (HR‐TEM), and atomic force microscopy (AFM) analyses. The antimicrobial activity data demonstrated a broad spectrum of antibacterial effects against Escherichia coli, Bacillus subtilis, Klebsiella pneumoniae, and Pseudomonas aeruginosa. The cytotoxicity efficacy of LfSM‐FGO nanosheets against pancreatic cancer cell line (PANC1) showed promising results at low concentrations. The study suggests that FGO nanosheets made from LfSM could serve as alternate factors for in biomedical applications in the future.

Funder

King Saud University

Publisher

Wiley

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