Abstract
Radioautography of water-soluble substances has posed a major technical problem for the past decade. Utilizing silicone-impregnated plastic sections of frozen-dried tissue, a quantitative method was developed for studying distribution of (3)H-labeled galactose, mannitol, and phlorizin. The content of a 2-micro band may be measured with an accuracy of +/-20% by light microscopy; radioautographs may also be prepared for the electron microscope. Results with intestinal tissue incubated 1-10 min in vitro and, then, frozen rapidly indicate that the first step in galactose absorption is uphill transport into the brush border of the columnar epithelium. Correction of galactose content for the mannitol space in the brush border suggests that the sugar pump is located at the surface of the microvilli. Further evidence for the surface locus of the glucose-galactose pump was obtained with phlorizin (next paper, reference 40). The galactose content of columnar cell cytoplasm always equalled that of microvilli and no transcellular diffusion gradient could be detected; during the first minutes of incubation, however, a gradient did exist between nucleoplasm and cytoplasm. Downhill exit of galactose from columnar cells may have proceeded either directly across basal membranes to adjacent lamina propria or indirectly via open intercellular spaces. Lastly, even in the absence of muscularis, the connective tissue of the lamina propria constituted enough of a diffusion barrier so that it served as a secondary accumulating compartment for galactose under present in vitro conditions.
MeSH Terms
Animals
Autoradiography
Biological Transport, Active
Cricetinae
Freeze Drying/instrumentation
Galactose/metabolism
Intestinal Absorption/physiology
Intestine, Small/metabolism
Mannitol/metabolism
Microscopy, Electron
Phlorhizin/metabolism
Tritium
Chemicals
Tritium
Mannitol
Phlorhizin
Galactose
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Stirling C E
Kinter W B
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28 references, click to expand
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