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PMID: 484509 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Ultrastructural organization of the hamster renal pelvis.

The American journal of anatomy ·Vol. 155 ·No. 4 ·1979-08-00 ·Pages 403-23

Lacy ER, Schmidt-Nielsen B

Abstract

The renal pelvis of the hamster has been studied by light microscopy (epoxy resin sections), transmission electron microscopy, and morphometric analysis of electron micrographs. Three morphologically distinct epithelia line the pelvis, and each covers a different zone of the kidney. A thin epithelium covering the outer medulla (OM) consists of two cell types: (1) granular cells are most numerous and have apically positioned granules which stain intensely with toluidine blue, are membrane-bound, and contain a fine particulate matter that stains light grey to black in electron micrographs. (2) Basal cells do not have granules, are confined to the basal lamina region, and do not reach the mucosal epithelial surface. The inner medulla (IM) is covered by a pelvic epithelium morphologically similar to collecting duct epithelium of IM. Some cells in this portion of the pelvic epithelium (IM) stain intensely dark with toluidine blue, osmium tetroxide, lead, and uranyl acetate. Transitional epithelium, which separates cortex (C) from pelvic urine, has an asymmetric luminal plasma membrane and discoid vesicles, each of which is similar to those previously observed in mammalian ureter and urinary bladder epithelia. Based on morphological comparisons with other epithelia, the IM and OM pelvic epithelia would appear permeable to solutes and/or water, while the transitional epithelium covering the C appears relatively impermeable. It would also appear that the exchange of solutes and water between pelvic urine and OM would involve capillaries, primarily, since morphometric analysis showed that both fenestrated and continuous capillaries of the OM were extremely abundant (greater than 60% of OM pelvic surface area) just under the thin pelvic epithelium.

MeSH Terms
Animals Cricetinae/anatomy & histology Diet Epithelium/ultrastructure Female Kidney Pelvis/ultrastructure Male Mesocricetus/anatomy & histology Microscopy, Electron Organoids/ultrastructure Water Deprivation
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Lacy E R
Schmidt-Nielsen B
Article Info
Journal
The American journal of anatomy
Abbr.
Am J Anat
ISSN
0002-9106
Published
1979-08-00
Pages
403-23
Language
English
Region
United States
NLM ID
0376312
Subset
IM
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