OIPR



Antimicrobial capping agents on silver nanoparticles made via green method using natural products from banana plants weste

Auteur(s): jimmy kabeya kabengele, Ngombe Kabamba Nadege, Mutwale kapepula Paulin, Nkanga Isalomboto Christian
Nom de la revue/Journal: Artificial cells, nanomedicine, and Biotechnology
Mois: janvier
Volume: 53
Numéro: 1
Année: 2025
pages: 15
Résumé

<p>Herein, we investigated the phytochemical composition and antibacterial activities of the organic<br>layers from biosynthesized silver nanoparticles (AgNPs). AgNPs were synthesized using Musa<br>paradisiaca and Musa sapientum extracts. UV-vis absorption in the 400–450 nm range indicated<br>surface plasmonic resonance peak of AgNPs. Samples analyses using dynamic light scattering<br>and transmission electron microscopy revealed the presence of particles within nanometric<br>ranges, with sizes of 30–140 nm and 8–40 nm, respectively. Fourier transform infrared (FTIR)<br>unveiled the presence of several organic functional groups on the surface of AgNPs, indicating<br>the presence of phytochemicals from plant extracts. Thin layer chromatography (TLC) of the<br>phytochemicals (capping agents) from AgNPs identified multiple groups of secondary metabolites.<br>These phytochemical capping agents exhibited antibacterial activities against Staphylococcus<br>aureus, Escherichia coli, and Pseudomonas aeruginosa, with minimum inhibitory concentrations<br>ranging from 62.5 to 1000 μg/mL. Regardless of the bacterial species or plant parts (leaves or<br>pseudo-stems), capping agents from M. sapientum nanoparticles displayed significantly enhanced<br>antibacterial effectiveness compared to all other samples, including the raw plant extracts and<br>biosynthesized capped and uncapped AgNPs. These results suggest the presence of antimicrobial<br>phytochemicals on biosynthesized AgNPs, highlighting the promise of green nanoparticle<br>synthesis as a valuable approach in bioprospecting antimicrobial agents.</p>