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March 29, 2026Bioresources and Bioprocessing0 citationsOpen Access

Development and evaluation of Sargassum polysaccharides–algal oil nanoemulsion for intranasal treatment of allergic rhinitis

SHShi-Yu HungHCHsiang-Wen ChanHKHao-Hsiang Ku

Key Points

  • The aim is to develop and evaluate a nanoemulsion integrating Sargassum polysaccharides and algal oil for better treatment of allergic rhinitis.
  • Developed a bioresource-based nanoemulsion using Sargassum polysaccharides and algal oil.
  • Conducted structural analysis of the polysaccharides.
  • Formulated the nanoemulsion with Tween 80 via ultrasonic emulsification.
  • Tested the efficacy in an ovalbumin-induced allergic rhinitis mouse model.
  • Nanoemulsion showed uniform spherical droplets with high stability during storage.
  • Intranasal administration significantly reduced nasal symptoms and inflammation markers.
  • Treatment decreased IgE levels in biological fluids and upregulated mucosal IgA.
  • Demonstrated modulation of cytokine expression, including downregulation of IL-4 and TNF-α.

Abstract

Allergic rhinitis (AR) is a prevalent inflammatory disorder of the upper respiratory tract, affecting 20-40% of the global population and severely impairing quality of life. Given the limitations and adverse effects associated with conventional pharmacotherapy, naturally derived bioactives with low toxicity are gaining prominence as alternative interventions. In this study, we developed a bioresource-based nanoemulsion (NE) by integrating Sargassum polysaccharides (SP) into algal oil (AO) to enhance intranasal delivery and therapeutic efficacy against AR. Structural analysis confirmed that SP comprised sulfated polysaccharides enriched in fucose, glucose, and galactose. The optimized SP-AO NE, formulated with Tween 80 and prepared via ultrasonic emulsification, exhibited uniform spherical droplets (53.4 ± 1.8 nm), a low polydispersity index (0.3 ± 0.1), and a negative zeta potential (- 29.1 ± 2.8 mV), indicating high colloidal stability and effective oxidative protection of AO during refrigerated storage. In an ovalbumin-induced AR mouse model, intranasal administration of SP-AO NE significantly alleviated nasal rubbing, epithelial hypertrophy, goblet cell hyperplasia, mast cell infiltration, and pulmonary inflammation. Intranasal SP-AO NE treatment decreased IgE levels in serum, nasal lavage, and bronchoalveolar lavage fluids, while enhancing mucosal IgA. In addition, SP-AO NE downregulated IL-4 and TNF-α expression and upregulated TGF-β1, demonstrating a robust immunomodulatory effect. Overall, this work presents a stable, biocompatible, and functional NE that improves intranasal delivery of algal bioactives, offering a promising natural therapeutic strategy for the management of AR.

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Cite This Study

Hung et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2b8de0f0f753b39d301https://doi.org/10.1186/s40643-026-01043-2
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