DIRECT VISUALIZATION OF THE MEMBRANE-ASSOCIATED COATED VESICLES AND CYTOSKELETON IN CULTURED MACROPHAGES BY A NEW MEANS OF DRY-BLOWING

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Published inACTA HISTOCHEMICA ET CYTOCHEMICA Vol. 19; no. 1; pp. 31 - 37
Main Authors ARAKI, NOBUKAZU, OGAWA, KAZUO
Format Journal Article
LanguageEnglish
Published Sendai JAPAN SOCIETY OF HISTOCHEMISTRY AND CYTOCHEMISTRY 1986
Japan Science and Technology Agency
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Author ARAKI, NOBUKAZU
OGAWA, KAZUO
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References 1. Aggeler, J. and Werb, Z.: Initial events during phagocytosis by macrophages viewed from outside and inside the cell: membrane-particle interactions and clathrin. J. Cell Biol. 94; 613-623, 1982.
3. Anderson, R. G. W. and Kaplan, J.: Receptor-mediated endocytosis. Modern Cell Biol. 1; 1-52, 1983.
6. Ishikawa, H., Bischoff, R. and Holtzer, H.: Formation of arrowhead complexes with heavy meromyosin in a variety of cell types. J. Cell Biol. 43; 312-328, 1969.
9. Mesland, D. A. M., Spiele, H. and Roos, E.: Membrane-associated cytoskeleton and coated vesicles in cultured hepatocytes visualized by dry-cleaving. Exp. Cell Res. 132; 169-184, 1981.
17. Willingham, M. C. and Pastan, I.: Formation of receptosome from plasma membrane coated pits during endocytosis: analysis by serial sections with improved membrane and preservation techniques. Proc. Natl. Acad. Sci. USA 80; 5617-5621, 1983.
5. Heuser, J.: Three-dimensional visualization of coated vesicle formation in fibroblasts. J. Cell Biol. 84; 560-583, 1980.
14. Schliwa, M. and Blerkom, J.: Structural interaction of cytoskeletal components. J. Cell Biol. 90; 222-235, 1981.
16. Willingham, M. C., Rutherford, A. V., Gallo, M. G., Wehland, J., Dickson, R. B., Schlegel, R. and Pastan, I. H.: Receptor-mediated endocytosis in cultured fibroblast : cryptic coated pits and formation of receptosomes. J. Histochem. Cytochem. 29; 1003-1013, 1981.
12. Nishihira, T., Kasai, M., Mori, S., Watanabe, T., Kuriya, Y., Suda, M., Kitamura, M., Hirayama, K., Akaishi, T. and Sasaki, T.: Characteristics of two cell lines (TE-1 and TE-2) derived from human squamous cell carcinoma of the esophagus. Gann 70; 575-584, 1979.
8. King, B. F.: The role of coated vesicles in selective transfer across yolk sac epithelium. J. Ultrastruct. Res. 79; 273-284, 1982.
15. Traas, J. A.: Visualization of the membrane bound cytoskeleton and coated pits of plant cells by means of dry cleaving. Protoplasma 119; 212-218, 1984.
7. Kanaseki, T. and Kadota, K.: The “vesicle in a basket.” a morphological study of the coated vesicle isolated from the nerve endings of the guinea pig brain, with special reference to the mechanism of membrane movements. J. Cell Biol. 42; 202-220, 1969.
4. Fine, R. E. and Ockleford, C. D.: Supramolecular cytology of coated vesicles. Int. Rev. Cytol. 91; 1-43, 1984.
10. Mizuhira, V. and Futaesaku, Y.: On the new fixation for biological membrane using tannic acid. Proc. 29th Ann. Meet., Electron Microsc. Soc. Am. 29; 494-495, 1971.
2. Aggeler, J., Takemura, R. and Werb, Z.: High-resolution three-dimensional view of membrane-associated clathrin and cytoskeleton in critical-point-dried macrophages. J. Cell Biol. 97; 1452-1458, 1983.
13. Paavola, L. G., Strauss, J. F., Boyd, C. O. and Nestler, J. F.: Uptake of gold and [3H] cholesteryl linoleate-labeled human low density lipoprotein by cultured rat granulosa cells: cellular mechanisms involved in lipoprotein metabolism and their importance to steroidogenesis. J. Cell Biol. 100; 1235-1247, 1985.
11. Mizuhira, V. and Futaesaku, Y.: Fine structure of the microtubles by means of the tannic acid fixation. Proc. 8th Internatl. Cong. Electron Microscopy 2; 340-341, Camberra, 1974.
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SubjectTerms cell membranes
cytoskeleton
electron microscopy
macrophages
membrane vesicles
Title DIRECT VISUALIZATION OF THE MEMBRANE-ASSOCIATED COATED VESICLES AND CYTOSKELETON IN CULTURED MACROPHAGES BY A NEW MEANS OF DRY-BLOWING
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