Loading…

Shining insights: Deciphering the biogenic synthesis of Ajuga bracteosa‐mediated gold nanoparticles with advanced microscopy techniques

In this study, gold nanoparticles (AuNPs) were bioreduced from Ajuga bracteosa, a medicinal herb known for its therapeutic properties against various diseases. Different fractions of the plant extract were used, including the methanolic fraction (ABMF), the n‐hexane fraction (ABHF), the chloroform f...

Full description

Saved in:
Bibliographic Details
Published in:Microscopy research and technique 2024-08, Vol.87 (8), p.1984-1996
Main Authors: Afreen, Afshan, Hameed, Hajra, Tariq, Muhammad, Sharif, Muhammad Shakeeb, Ahmed, Rashid, Waheed, Abdul, Kousar, Momina Bint, Akram, Zeeshan
Format: Article
Language:English
Subjects:
Citations: Items that this one cites
Online Access:Get full text
Tags: Add Tag
No Tags, Be the first to tag this record!
Description
Summary:In this study, gold nanoparticles (AuNPs) were bioreduced from Ajuga bracteosa, a medicinal herb known for its therapeutic properties against various diseases. Different fractions of the plant extract were used, including the methanolic fraction (ABMF), the n‐hexane fraction (ABHF), the chloroform fraction (ABCF), and the aqueous extract for AuNPs synthesis. The characterization of AuNPs was performed using UV–Vis spectrophotometry, FT‐IR, XRD, EDX, and TEM. UV–Vis spectroscopy confirmed the formation of AuNPs, with peaks observed at 555 nm. FT‐IR analysis indicated strong capping of phytochemicals on the surface of AuNPs, which was supported by higher total phenolic contents (TPC) and total flavonoid contents (TFC) in AuNPs. XRD results showed high crystallinity and a smaller size distribution of AuNPs. TEM analysis revealed the spherical shape of AuNPs, with an average size of 29 ± 10 nm. The biologically synthesized AuNPs exhibited superior antibacterial, antioxidant, and cytotoxic activities compared to the plant extract fractions. The presence of active biomolecules in A. bracteosa, such as neoclerodan flavonol glycosides, diterpenoids, phytoecdysone, and iridoid glycosides, contributed to the enhanced biological activities of AuNPs. Overall, this research highlights the potential of A. bracteosa‐derived AuNPs for various biomedical applications due to their remarkable therapeutic properties and effective capping by phytochemicals. Research Highlights This research underscores the growing significance of herbal medicine in contemporary healthcare by exploring the therapeutic potential of Ajuga bracteosa and gold nanoparticles (AuNPs). The study highlights the notable efficacy of A. bracteosa leaf extracts and AuNPs in treating bacterial infections, demonstrating their bactericidal effects on a range of strains. The anti‐inflammatory properties of plant extracts and nanoparticles are evidenced through paw edema method suggesting their applicability in managing inflammatory conditions. These findings position A. bracteosa and AuNPs as potential candidates for alternative and effective approaches to modern medication. Examining the collection, processing, and outcomes of gold nanoparticles mediated by Ajuga bracteosa, this study delves into the intricacies of characterization, molecular capping, and the extraordinary biomedical potential. Utilizing advanced microscopy techniques, including both transmission electron microscopy and scanning electron micro
ISSN:1059-910X
1097-0029
1097-0029
DOI:10.1002/jemt.24571