牛磺酸
紧密连接
势垒函数
回肠
肠道通透性
十二指肠
空肠
肠粘膜
地穴
化学
生物
内科学
免疫学
细胞生物学
医学
生物化学
氨基酸
作者
Yi-di Ma,Qiufeng Lv,Dongdong Zhao,Jingjing Wang,Yu Fu,Chen Li,Guanghui Wu,Mei Liu,Jianmin Hu,Shumei Lin,Jiancheng Yang
标识
DOI:10.1007/978-3-030-93337-1_7
摘要
Taurine has the advantages of being safe, highly efficient, chemically stabile, and biologically active, together with having versatile functions. Presently, it is employed as a veterinary feed additive in animal research. The tight junctions that constitute the intestinal epithelial cells are the most critical structures for ensuring regular and uninterrupted digestion and absorption of food by the intestinal mucosa, while at the same time resisting invasions by toxins. The purpose of this study was to investigate the protective effect and mechanism of taurine action on intestinal mechanical barrier function of piglets that were infected with LPS. The results showed that 0.3% taurine inhibits LPS-driven increase in intestinal permeability and intestinal mucosal injury, the rise in the ratio of villus length to crypt depth within the duodenum, jejunum, and ileum, and the significant enhancement in the expression of tight junction protein-related genes. In summary, dietary taurine significantly reduces intestinal mucosal structural damage and intestinal mucosal permeability while increasing gene expression of tight junction proteins of the intestinal mucosa of piglets induced by LPS, thereby enhancing the effect of intestinal mucosal mechanical barriers.
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