نتایج جستجو برای: intestinal epithelial cell
تعداد نتایج: 1845839 فیلتر نتایج به سال:
BACKGROUND Campylobacter concisus is a Gram-negative bacterium that is associated with inflammatory bowel disease (IBD). Some C. concisus strains carry zonula occludens toxin (zot) gene which has polymorphisms. This study investigated the effects of C. concisus Zot on intestinal epithelial cells and macrophages using cell line models. METHODS Campylobacter concisus zot (808T) gene, a polymorp...
The cellular mechanisms that drive growth and remodeling of the early intestinal epithelium are poorly understood. Current dogma suggests that the murine fetal intestinal epithelium is stratified, that villi are formed by an epithelial remodeling process involving the de novo formation of apical surface at secondary lumina, and that radial intercalation of the stratified cells constitutes a maj...
Gastrointestinal infections with EHEC and EPEC are responsible for outbreaks of diarrheal diseases and represent a global health problem. Innate first-line-defense mechanisms such as production of mucus and antimicrobial peptides by intestinal epithelial cells are of utmost importance for host control of gastrointestinal infections. For the first time, we directly demonstrate a critical role fo...
Guo, Xin, Jaladanki N. Rao, Lan Liu, Mort Rizvi, Douglas J. Turner, and Jian-Ying Wang. Polyamines regulate -catenin tyrosine phosphorylation via Ca2 during intestinal epithelial cell migration. Am J Physiol Cell Physiol 283: C722–C734, 2002. First published April 24, 2002; 10.1152/ajpcell.00054.2002.—Polyamines are essential for early mucosal restitution that occurs by epithelial cell migratio...
The increase in the incidence of food allergy is a growing problem for the western world. This review will focus on the findings from several macromolecular epithelial transport experiments and drug permeability studies to provide a recent comprehension of food allergen intestinal epithelial cell transport and the allergen-epithelial relationship. Specifically, this review will aim to answer wh...
BACKGROUND We have previously reported that intestinal epithelium-specific TAK1 deleted mice exhibit severe inflammation and mortality at postnatal day 1 due to TNF-induced epithelial cell death. Although deletion of TNF receptor 1 (TNFR1) can largely rescue those neonatal phenotypes, mice harboring double deletion of TNF receptor 1 (TNFR1) and intestinal epithelium-specific deletion of TAK1 (T...
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