4.7 Article

The Protective Effect of Taurine on Oxidized Fish-Oil-Induced Liver Oxidative Stress and Intestinal Barrier-Function Impairment in Juvenile Ictalurus punctatus

期刊

ANTIOXIDANTS
卷 10, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/antiox10111690

关键词

channel catfish; oxidative damage; immune response; intestinal health; signaling pathway

资金

  1. National Natural Science Foundation of China [32172985, 32172986]
  2. National Key R&D Program of China [2019YFD0900200]
  3. Hunan Provincial Natural Science Foundation [2020JJ4044]

向作者/读者索取更多资源

The study demonstrated that taurine has a protective effect against oxidative stress and intestinal damage caused by oxidized fish oil. The addition of taurine can enhance growth and antioxidant ability, reduce lipid deposition, and improve intestinal health in Ictalurus punctatus.
Dietary lipids provide energy for growth and development and provide fatty acids necessary for normal structure and biological function. However, oxidized lipids cause oxidative stress and intestinal damage. An 8-week feeding trial with fresh fish oil (FFO, control group), oxidized fish oil (OFO), and taurine-supplemented diets (OFOT, OFO + 0.2% of taurine) was conducted to evaluate the protective effect of taurine on oxidized fish-oil-induced liver oxidative stress and intestine impairment in juvenile Ictalurus punctatus. The results showed that (1) Growth performance was significantly lower in fish fed OFO than in those fed other diets, whereas the opposite occurred in the hepatosomatic index. (2) OFO-feeding significantly increased lipid deposition compared with the FFO group. The addition of taurine ameliorated the OFO-induced increase in lipid vacuolization in the liver, significantly upregulated lpl mRNA expression, and downregulated fas and srebp1 mRNA expression. (3) OFO-feeding significantly reduced oxidative damage of liver. Compared with the OFO group, the OFOT group remarkably upregulated antioxidant enzyme mRNA expression through the Nrf2-Keap1 signaling pathway based on the transcriptional expression. (4) OFO diets induced intestinal physical and immune barrier damage. Compared with the OFO group, OFOT diets remarkably downregulated il-1 beta, il-6, tnf-alpha, and il-8 mRNA expression and upregulated tgf-beta mRNA expression through the NF-kappa B signaling pathway. Besides, the addition of taurine to OFO diets significantly upregulated zo-2 and zo-1 mRNA expression, and downregulated claudin-15 and claudin-12 mRNA expression. In conclusion, oxidized-fish-oil diets can cause negative physiological health effects in Ictalurus punctatus, while adding taurine can increase growth and antioxidant ability, reduce lipid deposition, and improve intestinal health.

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