頭頸部扁平上皮癌細胞のBasic Fibroblast Growth Factor産生と血管新生

頭頸部扁平上皮癌培養細胞を用いて血管新生促進因子であるbasic fibroblast growth factor (bFGF) の産生能をみるとともに, 抗bFGF中和抗体の腫瘍細胞増殖抑制を検討した。またbFGF産生値と組織検体のF VIII RAG染色を用いた血管新生との相関性について検討した。 培養腫瘍細胞12株全ての培養上清中にbFGF産生が認められた。培養腫瘍細胞4種中2種で抗bFGF中和抗体による著明な増殖抑制を認めたが, recombinant human bFGFは腫瘍細胞の増殖には影響しなかった。培養腫瘍細胞のbFGF産生能と血管数とには相関性が認められ, bFGFは生体内...

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Published in耳鼻咽喉科展望 Vol. 36; no. 6; pp. 685 - 695
Main Author 三上, 康和
Format Journal Article
LanguageJapanese
Published 耳鼻咽喉科展望会 15.12.1993
Online AccessGet full text
ISSN0386-9687
1883-6429
DOI10.11453/orltokyo1958.36.685

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Abstract 頭頸部扁平上皮癌培養細胞を用いて血管新生促進因子であるbasic fibroblast growth factor (bFGF) の産生能をみるとともに, 抗bFGF中和抗体の腫瘍細胞増殖抑制を検討した。またbFGF産生値と組織検体のF VIII RAG染色を用いた血管新生との相関性について検討した。 培養腫瘍細胞12株全ての培養上清中にbFGF産生が認められた。培養腫瘍細胞4種中2種で抗bFGF中和抗体による著明な増殖抑制を認めたが, recombinant human bFGFは腫瘍細胞の増殖には影響しなかった。培養腫瘍細胞のbFGF産生能と血管数とには相関性が認められ, bFGFは生体内の血管新生に関与する因子の一つであると考えられた。 以上のことからbFGFは血管新生因子の重要な一つであり, 腫瘍が産生するbFGFは, 腫瘍の増殖を増強する可能性があることが示唆された。
AbstractList 頭頸部扁平上皮癌培養細胞を用いて血管新生促進因子であるbasic fibroblast growth factor (bFGF) の産生能をみるとともに, 抗bFGF中和抗体の腫瘍細胞増殖抑制を検討した。またbFGF産生値と組織検体のF VIII RAG染色を用いた血管新生との相関性について検討した。 培養腫瘍細胞12株全ての培養上清中にbFGF産生が認められた。培養腫瘍細胞4種中2種で抗bFGF中和抗体による著明な増殖抑制を認めたが, recombinant human bFGFは腫瘍細胞の増殖には影響しなかった。培養腫瘍細胞のbFGF産生能と血管数とには相関性が認められ, bFGFは生体内の血管新生に関与する因子の一つであると考えられた。 以上のことからbFGFは血管新生因子の重要な一つであり, 腫瘍が産生するbFGFは, 腫瘍の増殖を増強する可能性があることが示唆された。
Author 三上, 康和
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References 21) Okamura K, Sato Y, Matsuda T, et al: Endogenous basic fibroblast growth factordependent induction of collagenase and interleukin-6 in tumor necrosis factortreated human microvascular endothelial cells. J Biol Chem 266: 19162-49165, 1991.
7) 西川克三, 吉竹佳乃, 峯村正実, 他: 腫瘍由来ヘパリン結合性増殖因子の機能. 蛋白質核酸酵素36: 1364-1370, 1991.
16) Hayek A, Culler FL, Beattie GM, et al: An in vivo model for study of the angiogenic effects of basic fibroblast growth factor. Biochem Biophys Res Commun 147: 876-880, 1987.
17) Abraham JA, Mergia A, Whang JL, et al: Nucleotide sequence of a bovine clone encoding the angiogenic protein, basic fibroblast growth factor. Science 233: 545-548, 1986.
23) Chin JE, Hatfield CA, Krzesicki RF, et al: Interactions between interleukin-1 and basic fibroblast growth factor on articular chondrocytes. Arthritis Rheum 34: 314-324, 1991.
32) Takahashi JA, Fukumoto M, Igarashi K, et al: Correlation of basic fibroblast growth factor expression levels with the degree of malignancy and vascularity in human gliomas. J Neurosurg 76: 792-798, 1992.
24) BenEzra D, Hemo I, Maftzir G: In vivo angiogenic activity of interleukins. Arch Ophthalmol 108: 573-576, 1990.
6) Weidner N, Semple JP, Welch WR, et al: Tumor angiogenesis and metastasis-correlation in invasive breast carcinoma. N Engl J Med 324: 1-8, 1991.
9) 笹野公伸, 宮崎修吉, 伊達文子, 他: AgNORs-病理組織診断への応用. 病理と臨床9: 890-893, 1991.
25) Gay CG, Winkles JA: Interleukin 1 regulates heparin-binding growth factor 2 gene expression in vascular smooth muscle cells. Proc Natl Acad Sci USA 88: 296-300, 1991.
12) Gospodarowicz D: Localisation of a fibroblast growth factor and its effect alone and with hydrocortisone on 3 T 3 cell growth. Nature 249: 123-127, 1974.
15) Montesano R, Vassalli JD, Baird A, et al: Basic fibroblast growth factor induces angiogenesis in vitro. Proc Natl Acad Sci USA 83: 7297-7301, 1986.
4) Gimbrone MA, Cotran RS, Leapman SB, et al: Tumor growth and neovascularization: An experimental model using the rabbit cornea. J Natl Cancer Inst 52: 413-427, 1974.
11) Howell WM, Black DA: Controlled silverstaining of nucleolus organizer regions with a protective colloidal developer: a 1-step method. Experientia 36: 1014-1015, 1980.
10) Hirsch SM, DuCanto J, Caldarelli DD, et al: Nucleolar organizer regions in squamous cell carcinoma of the head and neck. Laryngoscope 102: 39-44, 1992.
3) Knighton D, Ausprunk D, Tapper D, et al: Avascular and vascular phases of tumor growth in the chick embryo. Br J Cancer 35: 347-356, 1977.
26) Hori A, Sasada R, Matsutani E, et al: Suppression of solid tumor growth by immunoneutralizing monoclonal antibody against human basic fibroblast growth factor. Cancer Res 51: 6180-6184, 1991
13) Sato Y, Rifkin DB: Autocrine activities of basic fibroblast growth factor: regulation of endothelial cell movement, plasminogen activator synthesis, and DNA synthesis. J Cell Biol 107: 1199-1205, 1988.
20) Frater-Schroder M, Risau W, Hallmann R, et al: Tumor necrosis factor type α, a potent inhibitor of endothelial cell growth in vitro, is angiogenic in vivo. Proc Natl Acad Sci USA 84: 5277-5281, 1987.
2) Folkman J: Tumor angiogenesis. N Engl J Med 285: 1182-1186, 1971.
19) Friesel R, Komoriya A, Maciag T: Inhibition of endothelial cell proliferation by gamma-interferon. J Cell Biol 104: 689-696, 1987.
18) Watanabe H, Hori A, Seno M, et al: A sensitive enzyme immunoassay for human basic fibroblast growth factor. Biochem Biophys Res Commun 175: 229-235, 1991.
1) Folkman J: What is the evidence that tumors are angiogenesis dependent? J Natl Cancer Inst 82: 4-6, 1990.
27) Takahashi JA, Fukumoto M, Kozai Y, et al: Inhibition of cell growth and tumorigenesis of human glioblastoma cells by a neutralizing antibody against human basic fibroblast growth factor. FEBS Lett 288: 65-71, 1991.
31) 三上康和, 佃守, 持松いつみ, 他: 頭頸部腫瘍における血管新生についての研究. 日耳鼻96: 645-650, 1993.
5) Srivastava A, Laidler P, Davies RP, et al: The prognostic significance of tumor vascularity in intermediate-thickness (0.76-4.0 mm thick) skin melanoma. Am J Pathol 133: 419-423, 1988.
14) Mignatti P, Tsuboi R, Robbins E, et al: In vitro angiogenesis on the human amniotic membrane: Requirement for basic fibroblast growth factor-induced proteinases. J Cell Biol 108: 671-682, 1989.
28) Gross JL, Herblin WF, Dusak BA, et al: Effects of modulation of basic fibroblast growth factor on tumor growth in vivo. J Natl Cancer Inst 85: 121-131, 1993.
22) Cozzolino F, Torcia M, Aldinucci D, et al: Interleukin 1 is an autocrine regulator of human endothelial cell growth. Proc Natl Acad Sci USA 87: 6487-6491, 1990.
8) Sato Y, Murphy PR, Sato R, et al: Fibroblast growth factor release by bovine endothelial cells and human astrocytoma cells in culture is density dependent. Mol Endocrinol 3: 744-748, 1989.
29) 吉竹佳乃, 西川克三: 腫瘍中のFGFとFGF遺伝子導入による発癌. 実験医学10: 351-355, 1992.
30) Weidner N, Folkman J, Pozza F, et al: Tumor angiogenesis: a new significant and independent prognostic indicator in earlystage breast carcinoma. J Natl Cancer Inst 84: 1875-1887, 1992.
References_xml – reference: 23) Chin JE, Hatfield CA, Krzesicki RF, et al: Interactions between interleukin-1 and basic fibroblast growth factor on articular chondrocytes. Arthritis Rheum 34: 314-324, 1991.
– reference: 5) Srivastava A, Laidler P, Davies RP, et al: The prognostic significance of tumor vascularity in intermediate-thickness (0.76-4.0 mm thick) skin melanoma. Am J Pathol 133: 419-423, 1988.
– reference: 21) Okamura K, Sato Y, Matsuda T, et al: Endogenous basic fibroblast growth factordependent induction of collagenase and interleukin-6 in tumor necrosis factortreated human microvascular endothelial cells. J Biol Chem 266: 19162-49165, 1991.
– reference: 10) Hirsch SM, DuCanto J, Caldarelli DD, et al: Nucleolar organizer regions in squamous cell carcinoma of the head and neck. Laryngoscope 102: 39-44, 1992.
– reference: 6) Weidner N, Semple JP, Welch WR, et al: Tumor angiogenesis and metastasis-correlation in invasive breast carcinoma. N Engl J Med 324: 1-8, 1991.
– reference: 12) Gospodarowicz D: Localisation of a fibroblast growth factor and its effect alone and with hydrocortisone on 3 T 3 cell growth. Nature 249: 123-127, 1974.
– reference: 9) 笹野公伸, 宮崎修吉, 伊達文子, 他: AgNORs-病理組織診断への応用. 病理と臨床9: 890-893, 1991.
– reference: 4) Gimbrone MA, Cotran RS, Leapman SB, et al: Tumor growth and neovascularization: An experimental model using the rabbit cornea. J Natl Cancer Inst 52: 413-427, 1974.
– reference: 16) Hayek A, Culler FL, Beattie GM, et al: An in vivo model for study of the angiogenic effects of basic fibroblast growth factor. Biochem Biophys Res Commun 147: 876-880, 1987.
– reference: 15) Montesano R, Vassalli JD, Baird A, et al: Basic fibroblast growth factor induces angiogenesis in vitro. Proc Natl Acad Sci USA 83: 7297-7301, 1986.
– reference: 29) 吉竹佳乃, 西川克三: 腫瘍中のFGFとFGF遺伝子導入による発癌. 実験医学10: 351-355, 1992.
– reference: 25) Gay CG, Winkles JA: Interleukin 1 regulates heparin-binding growth factor 2 gene expression in vascular smooth muscle cells. Proc Natl Acad Sci USA 88: 296-300, 1991.
– reference: 20) Frater-Schroder M, Risau W, Hallmann R, et al: Tumor necrosis factor type α, a potent inhibitor of endothelial cell growth in vitro, is angiogenic in vivo. Proc Natl Acad Sci USA 84: 5277-5281, 1987.
– reference: 32) Takahashi JA, Fukumoto M, Igarashi K, et al: Correlation of basic fibroblast growth factor expression levels with the degree of malignancy and vascularity in human gliomas. J Neurosurg 76: 792-798, 1992.
– reference: 2) Folkman J: Tumor angiogenesis. N Engl J Med 285: 1182-1186, 1971.
– reference: 28) Gross JL, Herblin WF, Dusak BA, et al: Effects of modulation of basic fibroblast growth factor on tumor growth in vivo. J Natl Cancer Inst 85: 121-131, 1993.
– reference: 19) Friesel R, Komoriya A, Maciag T: Inhibition of endothelial cell proliferation by gamma-interferon. J Cell Biol 104: 689-696, 1987.
– reference: 3) Knighton D, Ausprunk D, Tapper D, et al: Avascular and vascular phases of tumor growth in the chick embryo. Br J Cancer 35: 347-356, 1977.
– reference: 30) Weidner N, Folkman J, Pozza F, et al: Tumor angiogenesis: a new significant and independent prognostic indicator in earlystage breast carcinoma. J Natl Cancer Inst 84: 1875-1887, 1992.
– reference: 13) Sato Y, Rifkin DB: Autocrine activities of basic fibroblast growth factor: regulation of endothelial cell movement, plasminogen activator synthesis, and DNA synthesis. J Cell Biol 107: 1199-1205, 1988.
– reference: 27) Takahashi JA, Fukumoto M, Kozai Y, et al: Inhibition of cell growth and tumorigenesis of human glioblastoma cells by a neutralizing antibody against human basic fibroblast growth factor. FEBS Lett 288: 65-71, 1991.
– reference: 17) Abraham JA, Mergia A, Whang JL, et al: Nucleotide sequence of a bovine clone encoding the angiogenic protein, basic fibroblast growth factor. Science 233: 545-548, 1986.
– reference: 31) 三上康和, 佃守, 持松いつみ, 他: 頭頸部腫瘍における血管新生についての研究. 日耳鼻96: 645-650, 1993.
– reference: 22) Cozzolino F, Torcia M, Aldinucci D, et al: Interleukin 1 is an autocrine regulator of human endothelial cell growth. Proc Natl Acad Sci USA 87: 6487-6491, 1990.
– reference: 14) Mignatti P, Tsuboi R, Robbins E, et al: In vitro angiogenesis on the human amniotic membrane: Requirement for basic fibroblast growth factor-induced proteinases. J Cell Biol 108: 671-682, 1989.
– reference: 8) Sato Y, Murphy PR, Sato R, et al: Fibroblast growth factor release by bovine endothelial cells and human astrocytoma cells in culture is density dependent. Mol Endocrinol 3: 744-748, 1989.
– reference: 24) BenEzra D, Hemo I, Maftzir G: In vivo angiogenic activity of interleukins. Arch Ophthalmol 108: 573-576, 1990.
– reference: 1) Folkman J: What is the evidence that tumors are angiogenesis dependent? J Natl Cancer Inst 82: 4-6, 1990.
– reference: 18) Watanabe H, Hori A, Seno M, et al: A sensitive enzyme immunoassay for human basic fibroblast growth factor. Biochem Biophys Res Commun 175: 229-235, 1991.
– reference: 7) 西川克三, 吉竹佳乃, 峯村正実, 他: 腫瘍由来ヘパリン結合性増殖因子の機能. 蛋白質核酸酵素36: 1364-1370, 1991.
– reference: 26) Hori A, Sasada R, Matsutani E, et al: Suppression of solid tumor growth by immunoneutralizing monoclonal antibody against human basic fibroblast growth factor. Cancer Res 51: 6180-6184, 1991
– reference: 11) Howell WM, Black DA: Controlled silverstaining of nucleolus organizer regions with a protective colloidal developer: a 1-step method. Experientia 36: 1014-1015, 1980.
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Snippet 頭頸部扁平上皮癌培養細胞を用いて血管新生促進因子であるbasic fibroblast growth factor (bFGF) の産生能をみるとともに, 抗bFGF中和抗体の腫瘍細胞増殖抑制を検...
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