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Formulation and Optimization of Curcumin-Loaded Chitosan Nanoparticles: A Systematic Study of Solubility Enhancement and Physicochemical Characterization

Formulation and Optimization of Curcumin-Loaded Chitosan Nanoparticles: A Systematic Study of Solubility Enhancement and Physicochemical Characterization

Original Research ArticleSep 8, 2026Online First Articles https://doi.org/10.55003/cast.2026.270910

Abstract

Curcumin, a polyphenolic compound derived from turmeric, has significantly therapeutic potential through its anti-inflammatory, antioxidant, and antimicrobial properties. However, its clinical application is severely limited by its poor aqueous solubility and low oral bioavailability. This study systematically evaluated the formulation and optimization of curcumin-loaded chitosan nanoparticles (CRCSNPs) via ionic gelation to overcome the limitations. Using a one-factor-at-a-time approach, critical parameters—including chitosan-to- sodium tripolyphosphate (TPP) mass ratio, pH, and curcumin loading—were methodically evaluated to identify optimal formulation conditions. The results demonstrated that a chitosan-to-TPP ratio of 4:1 at pH 5.0 with 5% w/w curcumin loading produced nanoparticles with a mean size of 211.9±10.6 nm and encapsulation efficiency of 96.88%. Fourier-transform infrared spectroscopy confirmed successful ionic crosslinking and specific interactions between curcumin and chitosan. Additionally, CRCSNPs achieved a 2.0-fold solubility enhancement in acetate buffer pH 4.5 and up to 2.8-fold enhancement in the presence of surfactants in comparison to free curcumin. Nanoparticle tracking analysis revealed a modal size of 162.5 nm, corroborating the dynamic light scattering data and supporting the presence of a well-dispersed nanoparticle population. These findings suggest a rational formulation strategy that supports improvements in curcumin's biopharmaceutical properties, offering further possibilities for pharmaceutical, nutraceutical, and cosmeceutical applications The systematic optimization approach provides a reproducible method for other poorly water-soluble bioactive compounds. Optimizing the chitosan-to-TPP ratio, pH, and curcumin loading allows for the fine-tuning of ionic crosslinking and hydrogen bonding. This results in a stable nanoparticle matrix that directly supports the improved solubility of the drug.

chitosan
nanoparticles
curcumin
ionic gelation
solubility enhancement

How to Cite

Fongsuk, C. ., Krisanapun, C. ., & Shuwisitkul, D. . (2026). Formulation and Optimization of Curcumin-Loaded Chitosan Nanoparticles: A Systematic Study of Solubility Enhancement and Physicochemical Characterization. Current Applied Science and Technology, e0270910. https://doi.org/10.55003/cast.2026.270910

References

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Author Information

Chayut Fongsuk

Department of Pharmaceutical Technology, Faculty of Pharmacy, Srinakharinwirot University, Ongkharak Campus, Nakhon Nayok, 26120, Thailand

Chutwadee Krisanapun

Department of Biopharmacy, Faculty of Pharmacy, Srinakharinwirot University, Ongkharak Campus, Nakhon Nayok, 26120, Thailand

Duangratana Shuwisitkul

Department of Pharmaceutical Technology, Faculty of Pharmacy, Srinakharinwirot University, Ongkharak Campus, Nakhon Nayok, 26120, Thailand

About this Article

Journal

Online First Articles

Type of Manuscript

Original Research Article

Published

8 September 2026