1982
DOI: 10.1007/bf01868490
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Structure and permeability of goblet cell tight junctions in rat small intestine

Abstract: Two major cell types, goblet and absorptive cells, dominate the epithelial lining of small intestinal villi. We used freeze-fracture replicas of rat ileal mucosa to examine the possibility that tight junction structure, known to relate to transepithelial resistance, might vary with cell type. Tight junctions between absorptive cells were uniform in structure while those associated with villus goblet cells displayed structural variability. In 23% of villus goblet cell tight junctions the strand count was less t… Show more

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Cited by 73 publications
(40 citation statements)
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References 34 publications
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“…Perez et al (2008) proposed that in stable and cohesive epithelia, PI3-K activity is downregulated to allow the maintenance of Ecad interactions at cell-cell junctions, whereas in more dynamic epithelia, actin cytoskeleton remodeling requires PI3-K activity to disrupt adherens junctions and allow the formation of new sites of Ecad homophilic interactions. Our in vivo findings fit with this model: luminal accessibility of Ecad correlates with high PI3-K activity in intestinal GCs, ECs, and EEFs, where adherens junctions are dynamic (Madara et al, 1980;Madara and Trier, 1982;Kölsch et al, 2007;Marchiando et al, 2011). Indeed, and found, as we previously reported , a significant role for InlA and InlB in third term placental villous explant invasion (Fig.…”
Section: Inlb Is Not Involved In Lm Crossing Of the Intestinal Barriersupporting
confidence: 88%
“…Perez et al (2008) proposed that in stable and cohesive epithelia, PI3-K activity is downregulated to allow the maintenance of Ecad interactions at cell-cell junctions, whereas in more dynamic epithelia, actin cytoskeleton remodeling requires PI3-K activity to disrupt adherens junctions and allow the formation of new sites of Ecad homophilic interactions. Our in vivo findings fit with this model: luminal accessibility of Ecad correlates with high PI3-K activity in intestinal GCs, ECs, and EEFs, where adherens junctions are dynamic (Madara et al, 1980;Madara and Trier, 1982;Kölsch et al, 2007;Marchiando et al, 2011). Indeed, and found, as we previously reported , a significant role for InlA and InlB in third term placental villous explant invasion (Fig.…”
Section: Inlb Is Not Involved In Lm Crossing Of the Intestinal Barriersupporting
confidence: 88%
“…In a similar fashion as extruding cells, mucus-producing GCs undergo extensive shape changes such as stretch and compression during mucus secretion. These shape changes are accompanied with junctional reorganization, notably variations in length and strand cross-linking and discontinuities (Hull and Staehelin, 1976;Madara and Trier, 1982;Porvaznik et al, 1983;Madara, 1990). Accordingly, we demonstrate here that TJs are disorganized between cells on which Ecad is luminally exposed and establish a correlation between mucus secretion and luminal access to Ecad.…”
Section: Lm Transcytoses Across Iecs and Exocytoses At Their Basal Polesupporting
confidence: 53%
“…Ecad luminal accessibility on GCs correlates with cell junction reorganization and mucus secretion Cell-cell junctions involving GCs have been described as heterogeneous and relatively weaker than those between classical enterocytes (Madara et al, 1980;Madara and Trier, 1982). Moreover, cell shape changes that GCs undergo during mucus secretion have been associated with the loosening of their TJs (Hull and Staehelin, 1976;Porvaznik et al, 1983).…”
Section: Lm Rapidly Translocates Across the Intestinal Epitheliummentioning
confidence: 99%
“…Fixation and processing protocols for light and electron microscopy and localization of horseradish peroxidase reaction product were carried out using methods previously detailed by us [10]. For routine electron microscopy, one can prescreen, l-txm sections and thus selectively sample specific sites, such as extrusion zones, for ultrastructural analysis even if they occur infrequently.…”
Section: Morphologymentioning
confidence: 99%