Investigation into the signal transduction pathway via which heat stress impairs intestinal epithelial barrier function

被引:80
作者
Yang, Ping-Chang
He, Shao-Heng
Zheng, Peng-Yuan
机构
[1] McMaster Univ, HSC, Dept Pathol & Mol Med, Hamilton, ON L8N 3Z5, Canada
[2] Shantou Univ, Coll Med, Allergy & Inflammat Res Inst, Shantou, Peoples R China
[3] Zhengzhou Univ, Hosp 2, Dept Gastroenterol, Zhengzhou 450052, Peoples R China
关键词
epithelium; heat shock protein; heat stress; intestine; permeability;
D O I
10.1111/j.1440-1746.2006.04710.x
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
Background and Aims: Intact protein absorption is thought to be a causative factor in several intestinal diseases, such as food allergy, celiac disease and inflammatory bowel disease. However, the mechanism remains unclear. The aim of this study was to characterize a novel signal transduction pathway via which heat stress compromises intestinal epithelial barrier function. Methods: Heat stress was carried out by exposing confluent human intestinal epithelial cell line T84 cell monolayers to designated temperatures (37-43 degrees C) for 1 h. Transepithelial electric resistance (TER) and permeability to horseradish peroxidase (HRP, molecular weight = 44 000) were used as indicators to assess the intestinal epithelial barrier function. Phosphorylated myosin light chain (MLC), MLC kinase (MLCK) and protein kinase C (PKC) protein of the T84 cells were evaluated in order to identify the signal transduction pathway in the course of heat stress-induced intestinal epithelial barrier dysfunctions. Results: The results showed that exposure to heat stress significantly increased intact protein transport across the intestinal epithelial monolayer; the amount of phospho-PKC, phospho-MLCK and phospho-MLC proteins in T84 cells decreased significantly at 41 degrees C and 43 degrees C although they increased at 39 degrees C. The heat stress-induced T84 monolayer barrier dysfunction was inhibited by pretreatment with PKC inhibitor, MLCK inhibitor, or HSP70. Conclusion: Heat stress can induce intestinal epithelial barrier dysfunction via the PKC and MLC signal transduction pathway.
引用
收藏
页码:1823 / 1831
页数:9
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