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Formulation and evaluation of Argemone mexicana oil-based nano-emulsion using low-energy method and its antimicrobial assessment

Abstract

Background and objective: Argemone mexicana seed oil is a plant-derived bioactive known for its potent antimicrobial and anti-inflammatory properties. However, its clinical utility is hindered by poor water solubility, high viscosity, and chemical instability. Nano-emulsion technology provides a promising strategy to enhance the bioavailability and stability of such hydrophobic phytoconstituents. This study aimed to formulate and evaluate a stable nano-emulsion of Argemone mexicana oil using a low-energy method and assess its physicochemical properties and antimicrobial potential. Methods: A spontaneous emulsification technique was used for the development of oil-in-water nano-emulsions using Brij 30 as the primary surfactant. Pseudo-ternary phase diagrams were constructed to determine optimal composition ranges. The prepared formulations were characterized for droplet size, zeta potential, morphology (optical microscopy), viscosity, and physical stability. Antimicrobial activity was evaluated using agar well diffusion method against Escherichia coli. Results: The optimized nano-emulsion (AB1) exhibited a mean droplet size of

Essential Oils and Antimicrobial ActivityEmulsionAntimicrobialNano-Traditional medicineChromatographyMaterials scienceChemistryMedicineComposite materialOrganic chemistry

Funding

  • ITM University-Gwalior
Citations
0
FWCI
0.00
field-weighted impact
References
5
Percentile
21%
vs. same field & year
References
Nanoemulsions: formation, properties and applications
Soft Matter · 2016 · 1,491 citations
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