Open Access Health Scientific Journal
Vol. 7 No. 2 (2026): August 2026

Formulation and Characterization of Myricetin Solid Lipid Nanoparticles (SLNs) via Ultrasonication Method

Dewi Zulfa Rosida (Universitas STRADA Indonesia)
Muhammad Dzakwan (Universitas Setia Budi)
Hery Muhamad Ansory (Universitas Setia Budi)



Article Info

Publish Date
01 Aug 2026

Abstract

Background: Myricetin is a flavonol flavonoid with promising neuroprotective and antioxidant activities. However, its therapeutic application is severely limited by poor water solubility and a low dissolution rate. This study aimed to enhance the solubility and formulation stability of myricetin by developing a Solid Lipid Nanoparticle (SLN) delivery system.Methods: Myricetin-SLNs were prepared via the ultrasonication method using Tween 80 as a nonionic surfactant. Lipid screening was conducted using Imwitor 491, Dynasan 118, and Apifil at concentrations of 2%, 4%, and 6%. The selected lipid (Apifil at 2%, 3%, 4%, and 5%) was melted at 100 °C, homogenized with the aqueous phase using a magnetic stirrer at 2000 rpm for 1 hour, cooled to 35 °C, and subjected to probe ultrasonication at 35 kHz for 5 minutes. The SLNs were characterized using a particle size analyzer and a UV-Vis spectrophotometer to evaluate storage stability, particle size, polydispersity index (PDI), entrapment efficiency, zeta potential, and DPPH free radical scavenging activity.Results: Lipid screening revealed that Apifil-based formulations provided superior physical stability compared to Imwitor 491 and Dynasan 118. The optimized formulation, F7 (containing 2% Apifil), yielded the smallest particle size of 105.5±0.70 nm, a highly homogeneous PDI of 0.232, a zeta potential of -20.52 mV, and the highest entrapment efficiency at 73.56%. Furthermore, F7 demonstrated strong antioxidant activity with an IC50 value of 38.77 ppm, compared to pure myricetin (14.44 ppm).Conclusion: The formulation of myricetin into Solid Lipid Nanoparticles using 2% Apifil via ultrasonication effectively minimizes particle size and maximizes entrapment efficiency. Although it exhibits lower long-term storage stability at room temperature, it successfully preserves potent antioxidant activity, offering a promising approach for health sciences and advanced drug delivery applications

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Journal Info

Abbrev

oahsj

Publisher

Subject

Dentistry Health Professions Nursing Public Health Veterinary

Description

Open Access Health Scientific Journal (OAHSJ) is an international open access journal (e-journal) which publishes the scientific works for health practitioners and researchers. The focus and scopes of the journal include Nursing, Public Health, Medical Science, Pharmacist, Nutritionist, Health ...