All systems operational
Q1 2026

<i>In vivo</i> and in silico efficacy of biosynthesized <i>camellia</i> sinensis mediated gold nano particles in reversing stress-induced physiological dysregulation

Najlaa S. Al-Radadi
10.25259/jksus_1687_2025 387 Views 0 Citations
0
Citations
387
Views
Abstract


In recent years, sustainable and eco-friendly approaches for synthesizing metallic nanoparticles have attracted considerable attention due to their reduced toxicity and environmental compatibility. In this study, we developed a green synthesis method to produce gold nanoparticles (AuNPs) using
Camellia sinensis
(
C. sinensis
) extract as a natural stabilizing and reducing agent. This approach enabled the formation of core–shell nanoparticles with enhanced stability, predominantly spherical morphology, and minimal size variation, alongside small pentagonal, triangular, and hexagonal shapes. The biosynthesized
C. sinensis
-AuNPs were comprehensively characterized using UV–visible spectroscopy, high-resolution transmission electron microscopy (HR-TEM), scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDX), Fourier-transform infrared spectroscopy (FT-IR), X-ray diffraction (XRD), and zeta potential analysis, confirming their structural integrity and physicochemical properties. To explore their therapeutic potential, we evaluated the anti-stress efficacy of both
C. sinensis
extract and its AuNP formulation in rats subjected to a resident–intruder stress model. Animals received 25 or 50 mg/kg of either the extract or nanoparticles as their sole fluid intake for eight days. Stress exposure significantly increased body and adrenal gland weights and elevated stress-related hormone levels compared to controls (p &lt; 0.05). Treatment with
C. sinensis
, its AuNP formulation, or diazepam markedly mitigated these stress-induced changes, with the 50 mg/kg nanoparticle dose showing the most pronounced effect, restoring parameters nearly to baseline. Additionally, ADMET profiling and molecular docking highlighted the promising therapeutic potential of key bioactive components. Collectively, these findings demonstrate that plant-based extracts and green-synthesized nanoparticles can offer enhanced protection against stress-induced physiological dysfunctions, presenting a sustainable and natural alternative to conventional pharmaceutical therapies.


GRAPHICAL ABSTRACT



Cite this Article (APA)
Najlaa, S. A. (2026). In vivo and in silico efficacy of biosynthesized camellia sinensis mediated gold nano particles in reversing stress-induced physiological dysregulation. Journal of King Saud University – Science. https://doi.org/10.25259/jksus_1687_2025
Related Papers
Short-term wind power prediction based on IBOA-AdaBoost-RVM
Yongliang Yuan; Qingkang Yang; Jianji Ren; Kunpeng Li; Zhenxi Wang; Yanan Li; Wu · 2024
33
cites
402
A parametrized approach to generalized fractional integral inequalities: Hermite–Hadamard and Maclau…
Abdelghani Lakhdari; Bandar Bin-Mohsin; Fahd Jarad; Hongyan Xu; Badreddine Mefta · 2024
20
cites
396
Modulatory effects of glutamic acid on growth, photosynthetic pigments, and stress responses in oliv…
Muhammad Hamzah Saleem; Sadia Zafar; Sadia Javed; Muhammad Anas; Temoor Ahmed; S · 2024
19
cites
401
Cloud spot instance price forecasting multi-headed models tuned using modified PSO
Mohamed Salb; Luka Jovanovic; Ali Elsadai; Nebojsa Bacanin; Vladimir Simic; Drag · 2024
17
cites
401
16
cites
401
Access
View Full Text via DOI
Published in
ISSN 1018-3647
Quartile Q1
AMS Score 100
Field Natural Sciences
Publisher King Saud University
Country 🇸🇦 Saudi Arabia
View Journal Profile →
Authors
Publication Details
Year 2026
Language English
Added 14 Jul 2026