Abstract
This work intended to formulate bio-nanocomposites of zinc oxide (ZnO), titanium oxide (TiO2), chitosan, and escin, characterize their physical properties, and evaluate their antimicrobial and anticancer properties. X-ray diffractometers (XRD) and scanning and transmission electron microscopes were applied to characterize the morphology and ultrastructure of chemically synthesized bio-nanocomposites. To investigate the functional groups of bio-nanocomposites, we used Perkin-Elmer spectrometers for Fourier transform infrared (FTIR) analysis and photoluminescence (PL) spectroscopy for PL spectrum analysis. Antimicrobial activities against bacterial and fungal strains were tested with agar well diffusion. Bio-nanocomposites were tested for anticancer effects on a MOLT4 blood cancer cell line using morphological analysis, methyl thiazole tetrazolium assay, apoptosis by acridine orange/ethidium bromide, and mitochondrial membrane potential (Δψm). In XRD, FTIR, and PL, the active compounds of ZnO-TiO2, chitosan, and escin peaks were observed. Our bio-nanocomposites demonstrated antimicrobial activity against bacterial and fungal pathogens. The bio-nanocomposite was cytotoxic to MOLT4 cells at an IC50 concentration of 33.4 μg·mL-1. Bio-nanocomposites caused cytotoxicity, changes in cell morphology, and mitochondrial membrane potential degradation, all of which resulted in apoptotic cell death. MOLT4 cells were found to be responsive to bio-nanocomposites based on ZnO-TiO2-chitosan-escin.
Author supplied keywords
Cite
CITATION STYLE
Elderdery, A. Y., Alhamidi, A. H., Elkhalifa, A. M. E., Althobiti, M. M., Tebien, E. M. A., Omer, N. E., … Mok, P. L. (2022). Synthesis and characterization of ZnO-TiO2-chitosan-escin metallic nanocomposites: Evaluation of their antimicrobial and anticancer activities. Green Processing and Synthesis, 11(1), 1026–1039. https://doi.org/10.1515/gps-2022-0086
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.