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Isolated brush cells of the rat stomach retain their structural polarity
Authors:L. Luciano  L. Armbruckner  K. -F. Sewing  E. Reale
Affiliation:(1) Abteilung Zellbiologie und Elektronenmikroskopie, Medizinische Hochschule, Postfach 610180, W-3000 Hannover 61, Germany;(2) Abteilung Allgemeine Pharmakologie, Medizinische Hochschule, Hannover, Germany
Abstract:Summary The brush cells (BC) are highly polarized elements occurring in epithelia of endodermal origin. They have a preferential topographical distribution in the organs in which they reside. In the stomach of the rat, BC prevail near the transitional zone separating the forestomach from the glandular stomach. Thus, a method was developed to isolate and recover BC from this organ with the aim of investigating the changes they may undergo after dissociation. Strips of the rat stomach were severed from the very proximal border of the glandular region and incubated in Hanks' balanced salt solution containing pronase. After sedimentation of the dissociated cells (crude sediment containing all stomach epithelial cell types) two successive cell fractions were prepared on preformed Percoll gradient in an attempt to enrich BC in a defined layer. BC were recovered in a fraction at a density close to 1.03 g/ml where they represented about 2% of all cells. The isolated BC changed their form from columnar to pear-shaped; however, they maintained their structural polarity over 2 h as demonstrated by light microscopy, transmission-and scanning-electron microscopy. The fine structure of BC was always satisfactorily preserved. Maintenance of the structural polarity of isolated BC is contrary to the general rule according to which all conventional epithelial cells examined to date lose their polarity after isolation. This result is discussed in relation to morphological findings in isolated sensory cells (hair cells, photoreceptor cells) leading to the suggestion that BC are more similar to these than to conventional epithelial cells.
Keywords:Brush cells  Cell isolation  Stomach  Polarity  Light microscopy  Electron microscopy  Rat (Wistar)
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