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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Anatomy and embryology 163 (1981), S. 173-183 
    ISSN: 1432-0568
    Keywords: Freeze-fracture ; Mammary gland ; Apocrine process ; Membrane particles ; Granule fusion
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Thin section as well as freeze-fracture images of lactating mouse mammary glands were examined with the electron microscope. The well-developed tight junction, consisting of 5–8 strands, is present at the apical part of the lateral plasma membranes of the adjacent glandular cells. The secretory products in this cell are classified into two types, milk fat globules without cores and proteinous granules having dense cores. Some proteinous granules fuse with each other to become larger structures. Membrane particles of the limiting membranes of both adjacent granules are cleared off from the initial site of the fusion. A large apocrine process including a large fat droplet, a few small proteinous granules, and little cytoplasmic matrix is sometimes seen. In addition, some proteinous granules are released by exocytosis. At exocytosis, the membrane particles are cleared off from the fusion site of the plasma membrane and the granule limiting membrane just before the fusion occurs.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-0878
    Keywords: Thyroid ; Colloid reabsorption ; Actin filament ; Micropinocytosis ; Freeze-fracture ; Freeze substitution
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary The mechanism of the luminal colloid reabsorption and the fate of reabsorbed colloid droplets were studied ultracytochemically in epithelial cells of thyroid cells of TSH-treated mice. The luminal colloid is reabsorbed by micropinocytosis as well as phagocytosis into the follicle epithelial cell. Almost all the pinocytotic pits and vesicles are coated and often closely associated with actin filaments demonstrated by use of heavy meromyosin (HMM). This suggests the involvement of the actin filament system in making and transporting coated vesicles for micropinocytosis of the luminal colloid. Freeze-fracture images show aggregates of intramembrane particles on the P-face of the small depressions corresponding to the initial site for coated pits. The reabsorbed colloid droplets fuse with one another and with lysosomes. At the initial stage of this fusion, the limiting membranes of adjoining droplets fuse in a limited area to become pentalaminar, and then become trilaminar. Eventually, the membranes at the fusion point disappear, and the contents of both droplets become continuous. Freeze-fracture images reveal the disappearance of the intramembrane particles at the initial site where the fusion occurs. Examination of thin-sectioned tissue treated by rapid-freeze substitution fixation, shows clearly delineated cell organelles, and the rounded mitochondria have a characteristically high electron-dense matrix. Just beneath the limiting membrane of each colloid droplet, there always exists a low electron-dense layer about 10 nm thickness. The lysosomes are sometimes seen wrapped around the colloid droplet.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1432-0878
    Keywords: Tunicamycin ; Glycoprotein ; Intestinal epithelium ; Microvilli ; Freeze-fracture ; Mouse
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary The effect of tunicamycin, which is known to inhibit the synthesis of N-linked glycoprotein, on the duodenal absorptive epithelial cell of the mouse was studied in thin-section as well as freeze-fracture images. In tunicamycin-treated animals, the apical part of the epithelial cell was almost negative to the PAS reaction. Moreover, microvilli of the epithelial cell became shorter, larger in diameter, and fewer in number in tunicamycin-treated mice. In addition, freeze-fracture images revealed that the population density of membrane particles of the microvillus membrane was lowered by tunicamycin treatment. These results may indicate that the inhibition of synthesis of N-linked glycoprotein causes a decrease of membrane supply from the Golgi apparatus to the apical plasma membrane.
    Type of Medium: Electronic Resource
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