マクロファージ由来増殖因子の生化学的研究

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Published in動脈硬化 Vol. 13; no. 3; pp. 729 - 737
Main Author 下門, 顕太郎
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本動脈硬化学会 01.08.1985
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ISSN0386-2682
2185-8284
DOI10.5551/jat1973.13.3_729

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Author 下門, 顕太郎
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References 22) Raines, E. and Ross, R.: Platelet-derived growth factor, I. high yield purification and evidence for multiple forms. J. Biol. Chem., 257: 5154-5160 (1982).
13) Bitterman, P. B.: Mechanisms of pulmonary fibrosis: spontaneous release of alveolar macrophage-derived growth factor in the interstitial lung disorders. J. Clin. Invest., 70: 806-822 (1982).
8) Gerrity, R. G.: Transition of blood-borne monocytes into foam cells in fatty lesions. Am. J. Pathol., 103: 181-190 (1981).
24) Estes, J. E., Pledger, W. J. and Gillespie, G. Y.: Macrophage-derived growth factor for fibroblasts and interleukin I are distinct entities. J. Leukocyte Biol., 35: 115-129 (1984).
21) Gaffney, V. G., Tsai, S. C., Lingenfelter, S. E., Dell'Aquila, M. and Gonda, J.: Stimulation of diploid fibroblast growth with serum-free medium conditioned by mezerein-treated monocytic leukemia cells. J. Leukocyte Biol., 35: 489-500 (1984).
1) Pool, J. C. and Florey, H. W.: Changes in the endotherium of the aorta and the behavior of macrophages in experimental atheroma of rabbits. J. Path. Bact., 75: 245-252 (1985).
17) DeLustro, F., Shere, G. K. and DeRoy, E. C.: Human monocytes stimulation of fibroblast growth by a soluble mediators. J. Reticuloendo. Soci., 28: 519-532 (1980).
5) Gaton, E. and Wolman, M.: The role of smooth muscle cells and hematogenous macrophages in atheroma. J. Path., 123: 123-128 (1977).
16) Bowen-Pope, D. F. and Ross, R.: Radioreceptor assay for PDGF in Methods in Enzymology, Blinbauer et al. eds. (Academic Press N. Y.), vol. 69, 69-100 (1985).
18) Rutherford, B., Steffin, K. and Sexton, J.: Activated human mononuclear phagocytes release a substances that induce replication of quiescent human fibroblasts. J. Reticuloendo. Soci., 31: 281-293 (1982).
29) Polverini, P., Cotran, R. S., Gimbrone, M. A. and Unaue, E. R.: Activated macrophages induce vascular proliferation. Nature, 269: 804-806 (1977).
9) Gerrity, R. G.: Migration of foam cells from atherosclerotic lesions. Am. J. Pathol., 103: 191-200 (1981).
27) Nathan, C. F., Murray, H. W. and Cohn, Z. A.: The macrophage as an effector cell. New Eng. J. Med., 303: 622-626 (1980).
15) Raines, E. and Ross, R.: in preparation.
23) Schmidt, J. A., Nidel, S., Cohen, D. and Green, I.: Interleukin I, a potential regulator of fibroblast proliferation and collagen production. J. Immunol., 128: 2177-2182 (1982).
20) Wharton, W., Gillespie, G. Y., Russell, S. W. and Pledger, W. J.: Mitogenic activity elaborated by macrophage-like cell line acts as competence factors for Balb/c 3T3 cells. J. Cell. Physiol., 110: 93-100 (1982).
2) Geer, J. C., McGill, H. C. Jr. and Strong, J. P. the fine structure of human atherosclerotic lesions. Am. J. Pathol., 38: 263-275 (1961).
10) Leibovich, S. J. and Ross, R.: A macrophage dependent factor that stimulates the proliferation of fibroblasts in vivo. Am. J. Pathol., 84: 501-514 (1976).
28) Bitterman, P. B., Rennard, S. I., Adelberg, S. and Crystal, R. C.: Role of fibronectin as a growth factor for fibroblasts. J. Cell. Biol., 97: 1925-1932 (1983).
3) Stary, H. C. and Strong, J. P.: The fine structure of non-atherosclerotic intimal thickening of developing, and of regressing atherosclerotic lesions at the bifurcation of the left coronary artery. Adv. Exp. Med. Biol., 67: 89-108 (1976).
25) Libby, P., Wyler, D. J., Janicka, M. W. and Dinarello, C. A.: Differential effects of human interleukin I on growth of human fibroblasts and vascular smooth muscle cells. Arteriosclerosis, 5: 186-191 (1985).
6) 塚田豊弘, 沼野藤夫: Hybridomaとatherosclerosis, Hybri-clonal macrophage antibody (#75) による粥種内macrophage検索の試み. 動脈硬化, 11: 449-456 (1983).
19) Wharton, W.: Human macrophage-like cell line U937-1 elaborates mitogenic activity for fibroblasts. J. Reticuloendo. Soci., 33: 155-156 (1983).
11) Glenn, K. and Ross, R.: Human monocyte-derived growth factor (s) for mesenchymal cells; activation of secretion by endotoxin and concanavalin A. Cell, 25: 603-615 (1981).
30) Humes, R. J., Bonney, R., Pelas, L., Bahlgren, M., Sadowski, S., Knehl, F. and Davies, P.: Macrophages synthesize and release prostaglandins in response to inflammatory stimuli. Nature, 269: 149-151 (1977).
4) Adams, C. W. M. and Bayliss, O. B.: Detection of macrophages in atherosclerotic lesions with cytochrome oxidase. Br. J. Exp. Path., 57: 30-36 (1976).
26) Baird, A., Mormede, P. and Bohlen, P.: Immunoreactive fibroblast growth factor in cells of peritoneal exudate suggests its identity with macrophage-derived growth factor. Biochem. Biophys. Res. Comm., 126: 358-364 (1985).
7) Goldstein, J. L.: Binding site on macrophages that mediates uptake and degradation of acetylated low density lipoprotein, producing massive cholesterol deposition. Proc. Natl. Acad. Sci. U. S. A., 76: 333-337 (1979).
14) Ross, R.: The smooth muscle cell, II growth of smooth muscle in culture and formation of elastic fibers. J. Cell. Biol., 50: 172-186 (1971).
12) Martin, B. M., Gimbrone, M. A., Unaue, E. R. and Cotran, R. S.: Stimulation of nonlymphoid mesenchymal cell proliferation by a macrophage-derived growth factor. J. Immunol., 126: 1510-1515 (1981).
References_xml – reference: 4) Adams, C. W. M. and Bayliss, O. B.: Detection of macrophages in atherosclerotic lesions with cytochrome oxidase. Br. J. Exp. Path., 57: 30-36 (1976).
– reference: 14) Ross, R.: The smooth muscle cell, II growth of smooth muscle in culture and formation of elastic fibers. J. Cell. Biol., 50: 172-186 (1971).
– reference: 6) 塚田豊弘, 沼野藤夫: Hybridomaとatherosclerosis, Hybri-clonal macrophage antibody (#75) による粥種内macrophage検索の試み. 動脈硬化, 11: 449-456 (1983).
– reference: 23) Schmidt, J. A., Nidel, S., Cohen, D. and Green, I.: Interleukin I, a potential regulator of fibroblast proliferation and collagen production. J. Immunol., 128: 2177-2182 (1982).
– reference: 13) Bitterman, P. B.: Mechanisms of pulmonary fibrosis: spontaneous release of alveolar macrophage-derived growth factor in the interstitial lung disorders. J. Clin. Invest., 70: 806-822 (1982).
– reference: 24) Estes, J. E., Pledger, W. J. and Gillespie, G. Y.: Macrophage-derived growth factor for fibroblasts and interleukin I are distinct entities. J. Leukocyte Biol., 35: 115-129 (1984).
– reference: 10) Leibovich, S. J. and Ross, R.: A macrophage dependent factor that stimulates the proliferation of fibroblasts in vivo. Am. J. Pathol., 84: 501-514 (1976).
– reference: 1) Pool, J. C. and Florey, H. W.: Changes in the endotherium of the aorta and the behavior of macrophages in experimental atheroma of rabbits. J. Path. Bact., 75: 245-252 (1985).
– reference: 27) Nathan, C. F., Murray, H. W. and Cohn, Z. A.: The macrophage as an effector cell. New Eng. J. Med., 303: 622-626 (1980).
– reference: 12) Martin, B. M., Gimbrone, M. A., Unaue, E. R. and Cotran, R. S.: Stimulation of nonlymphoid mesenchymal cell proliferation by a macrophage-derived growth factor. J. Immunol., 126: 1510-1515 (1981).
– reference: 26) Baird, A., Mormede, P. and Bohlen, P.: Immunoreactive fibroblast growth factor in cells of peritoneal exudate suggests its identity with macrophage-derived growth factor. Biochem. Biophys. Res. Comm., 126: 358-364 (1985).
– reference: 8) Gerrity, R. G.: Transition of blood-borne monocytes into foam cells in fatty lesions. Am. J. Pathol., 103: 181-190 (1981).
– reference: 5) Gaton, E. and Wolman, M.: The role of smooth muscle cells and hematogenous macrophages in atheroma. J. Path., 123: 123-128 (1977).
– reference: 2) Geer, J. C., McGill, H. C. Jr. and Strong, J. P. the fine structure of human atherosclerotic lesions. Am. J. Pathol., 38: 263-275 (1961).
– reference: 16) Bowen-Pope, D. F. and Ross, R.: Radioreceptor assay for PDGF in Methods in Enzymology, Blinbauer et al. eds. (Academic Press N. Y.), vol. 69, 69-100 (1985).
– reference: 28) Bitterman, P. B., Rennard, S. I., Adelberg, S. and Crystal, R. C.: Role of fibronectin as a growth factor for fibroblasts. J. Cell. Biol., 97: 1925-1932 (1983).
– reference: 21) Gaffney, V. G., Tsai, S. C., Lingenfelter, S. E., Dell'Aquila, M. and Gonda, J.: Stimulation of diploid fibroblast growth with serum-free medium conditioned by mezerein-treated monocytic leukemia cells. J. Leukocyte Biol., 35: 489-500 (1984).
– reference: 3) Stary, H. C. and Strong, J. P.: The fine structure of non-atherosclerotic intimal thickening of developing, and of regressing atherosclerotic lesions at the bifurcation of the left coronary artery. Adv. Exp. Med. Biol., 67: 89-108 (1976).
– reference: 7) Goldstein, J. L.: Binding site on macrophages that mediates uptake and degradation of acetylated low density lipoprotein, producing massive cholesterol deposition. Proc. Natl. Acad. Sci. U. S. A., 76: 333-337 (1979).
– reference: 20) Wharton, W., Gillespie, G. Y., Russell, S. W. and Pledger, W. J.: Mitogenic activity elaborated by macrophage-like cell line acts as competence factors for Balb/c 3T3 cells. J. Cell. Physiol., 110: 93-100 (1982).
– reference: 22) Raines, E. and Ross, R.: Platelet-derived growth factor, I. high yield purification and evidence for multiple forms. J. Biol. Chem., 257: 5154-5160 (1982).
– reference: 19) Wharton, W.: Human macrophage-like cell line U937-1 elaborates mitogenic activity for fibroblasts. J. Reticuloendo. Soci., 33: 155-156 (1983).
– reference: 11) Glenn, K. and Ross, R.: Human monocyte-derived growth factor (s) for mesenchymal cells; activation of secretion by endotoxin and concanavalin A. Cell, 25: 603-615 (1981).
– reference: 15) Raines, E. and Ross, R.: in preparation.
– reference: 9) Gerrity, R. G.: Migration of foam cells from atherosclerotic lesions. Am. J. Pathol., 103: 191-200 (1981).
– reference: 29) Polverini, P., Cotran, R. S., Gimbrone, M. A. and Unaue, E. R.: Activated macrophages induce vascular proliferation. Nature, 269: 804-806 (1977).
– reference: 30) Humes, R. J., Bonney, R., Pelas, L., Bahlgren, M., Sadowski, S., Knehl, F. and Davies, P.: Macrophages synthesize and release prostaglandins in response to inflammatory stimuli. Nature, 269: 149-151 (1977).
– reference: 17) DeLustro, F., Shere, G. K. and DeRoy, E. C.: Human monocytes stimulation of fibroblast growth by a soluble mediators. J. Reticuloendo. Soci., 28: 519-532 (1980).
– reference: 25) Libby, P., Wyler, D. J., Janicka, M. W. and Dinarello, C. A.: Differential effects of human interleukin I on growth of human fibroblasts and vascular smooth muscle cells. Arteriosclerosis, 5: 186-191 (1985).
– reference: 18) Rutherford, B., Steffin, K. and Sexton, J.: Activated human mononuclear phagocytes release a substances that induce replication of quiescent human fibroblasts. J. Reticuloendo. Soci., 31: 281-293 (1982).
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