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May 14, 2026Journal of Nanobiotechnology0 citationsOpen Access

Self-adaptive nanozyme-loaded yeast microcapsules for multifunctional and precise therapy of colitis via intestinal microenvironment remodeling

WYWen YinSHS. HouYMYaohui Ma

Key Points

  • The aim is to develop a multifunctional therapy for inflammatory bowel disease (IBD) using nanozyme-loaded yeast microcapsules.
  • Developed iron-based nanozyme (DHM-Fe) by coordinating dihydromyricetin with iron ions.
  • Encapsulated DHM-Fe in yeast microcapsules for improved stability and targeting.
  • Evaluated biocompatibility and anti-inflammatory effects through oral administration in a DSS-induced colitis model.
  • DF@YM significantly alleviated colitis symptoms compared to controls, restoring barrier integrity and modulating gut microbiota.
  • Activation of the aryl hydrocarbon receptor (AhR)/IL22 pathway was observed, contributing to anti-inflammatory effects.
  • Tissue accumulation of DHM was enhanced, confirmed through mass spectrometry imaging.

Abstract

Inflammatory bowel disease (IBD) management remains a significant challenge due to its complex pathogenesis. While current therapies for IBD are effective in symptom management, a radical cure remains elusive. However, the high cost, adverse effects, and acquired drug resistance limit their long-term use, further highlighting the pressing need for safer, multifunctional, and precise therapeutic strategies. Herein, we developed a novel iron-based nanozyme (DHM-Fe) by coordinating dihydromyricetin (DHM) with iron ions. The DHM-Fe nanozyme confers antioxidant and anti-inflammatory effects by mimicking SOD/CAT activities and suppressing M1-like macrophage polarization. To improve gastric stability and targeting, the DHM-Fe nanozyme was encapsulated in yeast microcapsules (YM), forming the DF@YM oral delivery system. Oral administration of DF@YM exhibited good biocompatibility and alleviated DSS-induced colitis by suppressing pro-inflammatory responses, restoring barrier integrity, and modulating gut microbiota composition towards homeostasis. Metabolomic and molecular docking analyses revealed that DF@YM alleviates intestinal inflammation, potentially through activating the aryl hydrocarbon receptor (AhR)/IL22 pathway. Furthermore, direct visualization via mass spectrometry imaging confirmed that DF@YM markedly enhances the tissue-specific accumulation of DHM. As an oral delivery system for natural compounds, this multifunctional strategy enables precise targeting and synergistic regulation of the intestinal microenvironment, presenting a promising avenue for IBD treatment.

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Cite This Study

Yin et al. (2026) studied this question.

synapsesocial.com/papers/6a05659da550a87e60a1df6dhttps://doi.org/10.1186/s12951-026-04544-6
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