Fauzia, Dini N. and Fahmi, Mochamad Z. and Taufikurohmah, Titik and Baktir, Afaf (2026) Pinostrobin-Functionalized Gold Nanoparticles with Enhanced Antibacterial and Antibiofilm Effects Against Pseudomonas aeruginosa. Tropical Journal of Natural Product Research, 10 (4). 8309 - 8316. ISSN 26160684
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Text (Article)
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Abstract
Pseudomonas aeruginosa is a clinically significant pathogen with strong biofilm-forming capacity, leading to persistent infections and high resistance toward conventional antibiotics. Nanotechnology based therapeutics have emerged as a promising solution to overcome these limitations. In this study, pinostrobin-functionalized gold nanoparticles (Pin-AuNPs) were evaluated for their antibacterial and antibiofilm activities against P. aeruginosa. Although gold nanoparticles and flavonoid compounds have individually demonstrated antibacterial activity, their integration as a synergistic antibiofilm nano-system against P. aeruginosa remains underexplored. Pin-AuNPs were prepared using a previously validated synthetic protocol. Pinostrobin was immobilized onto the surface of citrate-stabilized AuNPs via non-covalent physisorption, with Tween 20 employed as a non-ionic surfactant to enhance colloidal stability and ensure efficient surface functionalization. Pin-AuNPs exhibited significantly enhanced antibacterial activity compared to free pinostrobin and bare AuNPs, demonstrating the advantage of nanoparticle-based functionalization. Here, we investigated antibacterial potency, biofilm inhibition, biofilm eradication and morphological alterations. Pin-AuNPs exhibited superior antibiofilm efficacy against P. aeruginosa, inhibiting biofilm formation by more than 80 and significantly reducing bacterial viability in established biofilms. Notably, Pin-AuNPs achieved a substantially lower MBICâ â value (7.08 µg/mL, R² = 0.95) compared to bare AuNPs (25.79 µg/mL) and free pinostrobin (46.17 µg/mL), indicating markedly improved prevention of biofilm formation. In addition, Pin-AuNPs demonstrated the highest eradication potency against mature biofilms, with an MBECâ â of 10.01 µg/mL, underscoring their potential as an effective nano-antimicrobial strategy for controlling biofilm-associated P. aeruginosa infections. © 2026 the authors.
| Item Type: | Article | ||||||||||
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| Additional Information: | Cited by: 0; All Open Access; Gold Open Access; Green Open Access | ||||||||||
| Uncontrolled Keywords: | antibiotic agent; gold nanoparticle; organic compound; pinostrobin; unclassified drug; antibacterial activity; antibiofilm activity; Article; biofilm; Boesenbergia rotunda; centrifugation; colony forming unit; controlled study; disk diffusion; field emission scanning electron microscopy; Fourier transform infrared spectroscopy; IC50; minimum inhibitory concentration; nonhuman; plant; Pseudomonas aeruginosa; quality control; thin layer chromatography; transmission electron microscopy; ultraviolet visible spectrophotometry | ||||||||||
| Subjects: | Q Science | ||||||||||
| Divisions: | Artikel Ilmiah > SCOPUS INDEXED JOURNAL | ||||||||||
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| Depositing User: | Nurma Harumiaty | ||||||||||
| Date Deposited: | 01 Oct 2026 07:56 | ||||||||||
| Last Modified: | 01 Oct 2026 07:59 | ||||||||||
| URI: | http://repository.unair.ac.id/id/eprint/145965 | ||||||||||
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