β-1,3-d-Glucan based yeast cell wall system loaded emodin with dual-targeting layers for ulcerative colitis treatment

Herein, a β-1,3-d-glucan based microcarrier, yeast cell wall microparticles (YPs), was used to develop a food-source-based nano-in-micro oral delivery system for ulcerative colitis (UC) treatment. Briefly, lactoferrin (Lf), which targets intestinal epithelial cells, was used to encapsulate emodin (E...

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Veröffentlicht in:Carbohydrate polymers 2021-12, Vol.273, p.118612-118612, Article 118612
Hauptverfasser: Pu, Xiulan, Ye, Naijing, Lin, Meisi, Chen, Qiyan, Dong, Lingling, Xu, Haiting, Luo, Ruifeng, Han, Xiaoqin, Qi, Shanshan, Nie, Wenbiao, He, Haoqi, Wang, Yanli, Dai, Linxin, Lin, Dasheng, Gao, Fei
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Sprache:eng
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Zusammenfassung:Herein, a β-1,3-d-glucan based microcarrier, yeast cell wall microparticles (YPs), was used to develop a food-source-based nano-in-micro oral delivery system for ulcerative colitis (UC) treatment. Briefly, lactoferrin (Lf), which targets intestinal epithelial cells, was used to encapsulate emodin (EMO) to form nanoparticles (EMO-NPs), and then loaded into YPs with the natural macrophages targeting ability, forming a final formula with two outer–inner targeting layers (EMO-NYPs). These dual-targeting strategy could enhance the dual-effects of EMO in anti-inflammatory and mucosal repair effects respectively. As expected, cell uptake assessment confirmed that EMO-NPs and EMO-NYPs could target on the Lf and dection-1 receptors on the membranes of Caco-2 cells and macrophages, respectively. Importantly, EMO-NYPs showed the best anti-UC effects compared to EMO-NPs and free EMO, by inhibiting NF-κB pathway to anti-inflammation and promoting intestinal mucosa repair via MLCK/pMLC2 pathway. The results show that EMO-NYPs are a promising food-based oral delivery system in anti-UC. •A yeast cell wall based oral delivery system with dual-targeting layers was developed.•Dual-targeting layers target intestinal epithelial cell and macrophages, respectively.•EMO-NYPs could be anti-UC by anti-inflammation and promote intestinal mucosa repair.•EMO can play a role in intestinal mucosa repair via the MLC2 signaling pathway
ISSN:0144-8617
1879-1344
DOI:10.1016/j.carbpol.2021.118612