Mucosal surface morphology of the toad urinary bladder. Scanning electron microscope study of the natriferic and hydro-osmotic response to vasopressin
Open Access
- 1 May 1978
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 77 (2) , 598-610
- https://doi.org/10.1083/jcb.77.2.598
Abstract
The mucosal cell surface of the toad urinary bladder was examined by scanning electron microscopy, and changes in the structure of the surface of the granular cell were correlated with specific physiological responses to vasopressin. Survey views of the mucosal surface demonstrated that there was no consistent repeating anatomical relationship between the granular cell and the mitochondria-rich cell that would support the concept of cooperativeness in the response to vasopressin. During base-line states of Na+-transport and water flux, the microvilli on the mucosal surface of the granular cell are arranged in a ridge-like network with occasional individual projections. When water flux is increased by exposing the tissue to vasopressin, in the presence of an osmotic gradient across the tissue, the microvilli on the granular cell lose the ridge structure and appear predominantly as individual projections. Variability of this appearance points out the necessity of examining large areas and many samples before the significance of any morphological change can be assessed. Blocking the simultaneously occurring natrieferic response of the toad urinary bladder with 10-2 M ouabain does not prevent these changes in the microvilli. When the hydro-osmotic response is blocked by eliminating the osmotic gradient, the granular cell shows no consistent change in mucosal surface morphology even when fixed at the height of the natriferic response. The mitochondria-rich and mucous cells did not show any change in morphology throughout these studies. The changes in the mucosal surface morphology of the toad bladder seen after exposure to vasopressin apparently are a result of the increased water flux that occurs when an osmotic gradient exists across the tissue and are not related to the natriferic response or any specific alteration in the membrane properties.Keywords
This publication has 21 references indexed in Scilit:
- Study of enzymes regulating vasopressin-stimulated cyclic AMP metabolism in separated mitochondria-rich and granular epithelial cells of toad urinary bladderThe Journal of Membrane Biology, 1976
- A proposed function for microridges on epithelial cellsThe Anatomical Record, 1976
- The hydrosmotic effect of vasopressin: A scanning electron-microscope studyThe Journal of Membrane Biology, 1975
- Solute-solvent coupling in epithelia: a critical examination of the standing-gradient osmotic flow theoryProceedings of the Royal Society of London. B. Biological Sciences, 1975
- Localization of sodium pump sites in frog urinary bladderBiochimica et Biophysica Acta (BBA) - Biomembranes, 1975
- Modified Thiocarbohydrazide Procedure for Scanning Electron Microscopy: Routine use for Normal, Pathological, or Experimental TissuesStain Technology, 1975
- Urinary acidification and carbonic anhydrase distribution in bladders of Dominican and Colombian toadsThe Journal of Membrane Biology, 1974
- The membrane surfaces of the toad bladder: Scanning and transmission electron-microscopyThe Journal of Membrane Biology, 1974
- Partition of Tissue Functions in Epithelia: Localization of Enzymes in "Mitochondria-Rich" Cells of Toad Urinary BladderScience, 1974
- VASOPRESSIN-INDUCED CHANGES IN THE TOAD URINARY BLADDER EPITHELIAL SURFACEThe Journal of cell biology, 1974