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Fabrication of zein-tamarind seed polysaccharide-curcumin nanocomplexes: their characterization and impact on alleviating colitis and gut microbiota dysbiosis in mice.

Fan XieZengjin ZhuJingyi ZengYong-Jun XiaHui ZhangYan WuZibo SongLian-Zhong Ai
Published in: Food & function (2024)
In this work, a zein-tamarind seed polysaccharide (TSP) co-delivery system was fabricated using an anti-solvent precipitation method. The formation mechanism, characterization, and effect on alleviating colitis and gut microbiota dysbiosis in mice of zein-TSP-curcumin (Z/T-Cur) nanocomplexes were investigated. Hydrogen bonding and the hydrophobic effect played a key role in the formation of Z/T-Cur nanocomplexes, and the interactions were spontaneous and driven by enthalpy. The encapsulation efficiency, loading capacity, and bioavailability increased from 60.8% (Zein-Cur) to 91.7% (Z/T-Cur 1:1 ), from 6.1% (Zein-Cur) to 18.3% (Z/T-Cur 1:1 ), and from 4.7% (Zein-Cur) to 20.0% (Z/T-Cur 1:1 ), respectively. The Z/T-Cur significantly alleviated colitis symptoms in DSS-treated mice. Additionally, the prepared nanocomplexes rebalanced the gut microbiota composition of colitis mice by increasing the abundance of Akkermansia . Odoribacter and Monoglobus were rich in the Z-T-Cur treatment group, and Turicibacter and Bifidobacterium were rich in the zein-TSP treatment group. This study demonstrated that the TSP could be helpful in the targeted drug delivery system.
Keyphrases
  • high fat diet induced
  • ulcerative colitis
  • type diabetes
  • wild type
  • mass spectrometry
  • drug delivery
  • cancer therapy
  • combination therapy
  • tissue engineering