All systems operational
Q1 2025

<i>Ginkgo biloba</i> -derived biogenic silver nanoparticles suppress the proliferation of C6 glioma cells via apoptosis, cell cycle arrest, and anti-migratory activity

Xu Chen · Xuedan Yuan · Zeran Yu · Wenqiang Huang · Ping Zeng · Zhengqiao Liu · Wedad Mawkili · Amirah Albaqami
10.25259/ajc_761_2025 384 Views 1 Citations
1
Citations
384
Views
Abstract


Glioma, an aggressive primary brain tumor, poses significant therapeutic challenges due to its invasive nature and resistance to conventional treatments. This study explores the anti-cancer potential of biogenic silver nanoparticles (GB-AgNPs) synthesized using
Ginkgo biloba
leaf extracts against C6 rat glioma cells. GB-AgNPs were synthesized via a green method and characterized using UV-Vis, field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), dynamic light scattering (DLS), transmission electron microscopy (TEM), Fourier-transform infrared (FTIR), and X-ray photoelectron spectroscopy (XPS), revealing spherical nanoparticles (15-35 nm) with a crystalline structure and bioactive surface functionalization.
In vitro
assays demonstrated selective cytotoxicity, with an IC
50
of 17.13 ± 1.08 µg/mL against C6 cells compared to 78.66 ± 8.31 µg/mL for L929 fibroblasts. GB-AgNPs induced apoptosis through a caspase-dependent mitochondrial pathway, significantly upregulating the expression of caspase-3, -7, and -9, and increasing both early and late apoptotic populations (58.06 ± 4.39% at 24 h). Cell cycle analysis showed G0/G1 phase arrest (90.01 ± 6.5% vs. 58.42 ± 3.0% in controls). Wound healing assays confirmed anti-migratory effects, with significantly reduced wound closure over 72 h. Real-time PCR revealed upregulated expression of p53, p21, and Bax, supporting p53-mediated apoptosis and cell cycle regulation. These findings provide the first detailed evidence that Ginkgo biloba-derived AgNPs exert selective anticancer effects against C6 glioma cells, a highly aggressive brain tumor model with an urgent therapeutic need. Unlike previous AgNP studies in other cancers, this work establishes glioma-specific mechanistic links, including caspase-dependent mitochondrial apoptosis, G0/G1 cell cycle arrest, migration inhibition, and p53/p21/Bax upregulation, highlighting GB-AgNPs as a promising nanotherapeutic candidate. Future
in vivo
studies are warranted to validate efficacy and optimize delivery across the blood-brain barrier, advancing their clinical potential.

Cite this Article (APA)
Xu, C., Xuedan, Y., Zeran, Y., Wenqiang, H., Ping, Z., Zhengqiao, L., Wedad, M., Amirah, A. (2025). Ginkgo biloba -derived biogenic silver nanoparticles suppress the proliferation of C6 glioma cells via apoptosis, cell cycle arrest, and anti-migratory activity. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_761_2025
Related Papers
9
cites
395
9
cites
395
Triazoles- A paradigm shift in drug discovery: A review on synthesis and therapeutic potential
Umme Farwa; Maimoona Arif; Mohd Farhan; Zeshan Ali Sandhu; Mohamed El Oirdi; Moh · 2025
6
cites
394
Light-controlled recovery and recycling of Pd nanoparticles with application in the semihydrogenatio…
Kaoxue Li; Rongshi Jing; Shaohui Ma; Yuanshuo Li; Xiaohui Tian; Shuhua Cao; Xing · 2025
5
cites
391
5
cites
393
Access
View Full Text via DOI
Published in
ISSN 1878-5352
Quartile Q1
AMS Score 100
Field Natural Sciences
Publisher Scientific Scholar
Country 🇸🇦 Saudi Arabia
View Journal Profile →
Authors
Publication Details
Year 2025
Language English
Added 01 Aug 2026