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| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.author | Tsai Ya-Lee | en |
| dc.contributor.author | 蔡雅麗 | zh_TW |
| dc.date.accessioned | 2021-07-01T08:13:27Z | - |
| dc.date.available | 2021-07-01T08:13:27Z | - |
| dc.date.issued | 1983 | |
| dc.identifier.citation | 1. Lo. T.B., Chen. Y.H., and Lee, C.Y. J. Chineses Chem. Soci. 13, 25-37 (1966). 2. Davis, B.J., N.Y. Acad. Annals 121, 404-427. (1964) 3. David A. Johnson and Palmer Taylor 3. Biol. Chem. 257. 5632-5636 (1982). 4. Chen. Y. H. and Mien-Chie Hung Int. J. Peptide Protein Res. 10. 277-285. (1977). 5. Ouchterlong, O Progr. In Allergy 5, 1-78 (1958) 6. Stryer, L., (1968), Science, 162, 526. 7. Weber, G., and Lourence, D.J.R., (1954). Biochem. J., 56. 8. Edelman, G.M., and McClure. W.O., (1968), Accounts chem. Res., 1, 65. 9. Norbert Bohm, Ernst Sprenger, and Walter Sandritter (1973). Fluorescence Techniques in Cell Biology, PP. 311-331. 10. G. Sessa. 3. H. Freer, G. Colacicco and G. Weissmon, 3. Biol. Chem. 244, 3575 (1969). 11. J.C. Williams and R, M, Bell. Biochem. Biophys. Acta. 288, 255 (1972). 12. Natrita, K., and Lee. C.Y. Biochem. Biology. 13. Hayashi, K., Takechi, M., Kandeda, N., and Sasaki, T. Febs Letter 66, 210-214 (1976). 14. Mien-Chie Hung, Yung-hsin Pan, King-lan Cheng and Yee-huiung Chen. Biochem. Biology, Acta. 535, 178-187 (1978). 15. Bin-Tao Pan, Yee-hsiung Chen. Master Thesis N.T.U. Graduate Instistute of Biochemical Science (1977). 16. Gou-Su Lee, Yee-hsiung Chen. Master Thesis NTU. (1981) 17. Chignell, C.F., (1970c), Molec, Pharmac., 6.1. 18. Chen. R.F. and Kernohan, J.C., (1967), J. Biol. Chem., 242. 5813. 19. Chignell, C.F. (1970a), Advan. Drug Res., 5, 55. 20. Chignell, C.F. (1970b), Fluorescence News. American Instrument Company, Silver Spring. Md., 5.1. 21. Seymour S. West and Andrew E. Lorincz (1972) In: Fluorescence Techiques in Cell Biology, PP.395-407. 22. West, S.S., (1965) Acta Histochem., Suppl. 6, 135. 23. West. S.S., (1969), In: Physical Techiques in Biological Research, Vol.3C, Academic Press, New York, 253-321. 24. Peter Rardin and Danicl Axelrod. (1977), Analytical Biochemistry 80, 585-592 (1977). 25. Sungzong Kang and Alfred Maelicke (1980) 3. Biol. Chem. 255, 7326-7332. 26. M.J. Anderson and M.W. Cohen (1974). J. Phsiol. 237, 385-400. 27. Kinzo Nagasawa and Hideki Uchiyama (1978), Biochemical Biophysica Acta, 544, 430-440. 28. Suszkiw, J.B., and lchiki, M. (1976) Anal. Biochem. 73, 109-114. 29. Karlsson, E., Arnberg, H., and Eaker, D. (1971) Eur. J. Biochem. 30. Karlsson, E., Eaker, D., and Ponterius. G. (1972) Biochem Biology. Acta 257, 235-248. 31. Alonson, J.F. Deter, A.M. Morales, M.F. 1967. J. Roy. Microsc. Soc. 88: 389-397. 32. Yguerabide, J., Stryer, L. 1971. Proc. Nat. Acad. Sci. U.S.A. 68: 1217-1221. 33. Cheung, H.C., Morales, M.F. 1969. Biochemistry 8: 2177-82. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/75484 | - |
| dc.description.abstract | 心臟毒素以異硫氰酸熒光素標誌成?熒光毒素混合物之後,以Sephadex G-25及CM Cellulose C-52柱形層析法製備及純化,可以得到二個不同標誌程度的熒光衍生物。以Ⅰ及Ⅱ代表其一些性質,比較如下: FTH-CTX(Ⅰ) FTH-CTX(Ⅱ) NATIVE CTX 接以FITC程度〔FITC〕/〔CTX〕 1.45 0.99 電泳移動快慢 最慢 次之 最快 溶血作用活性(以六小時?準) 50.9% 71.5% 90.1% 免疫活性 + + + 熒光強度 1.23 0.61 | zh_TW |
| dc.description.abstract | Taiwan Cobra Cardiotoxin (CTX) was reacted with near stoichiometric quantities of Fluorescein-isothiocyanate (FITC) in 0.1 H. borate buffer at room temperature for 15 min. to yield the correspoding N-fluoresceinylthiocarbamoyl CTX. The reaction products were characterized by biological, biochemical, and spectroscopic methods. These were summarized below. 1. Spectrophotometric analysis at 495 mu and protein content measurement indicated that a monofluorescein CTX was separated from unconjugated CTX and other reaction products by ion exchange chromatography. (degree of substitution I 0.99 and II 1.45, respectively) 2. Dye-toxin conjugates had the same hemolytic properties as native toxin, but their potencies were lower. (activity, 71.6% and 50.9%, respectively) 3. Like a pronounced decrease in hemolytic activity was observed, the integrity of antigenic specificity also altered. But the cross-reaction with anti-native CTX antibody to Dye-toxins both remains. 4. The emission maximum of the fluorescent cardiotoxin shifted, from 530 to 519 mu. This suggested a hydrophobic environment of the FITC binding sites. 5. When excited at 280 nm, the fluorescence of the dye bound increases dromatically but the fluorescence of conjugated CTX decrease. According to Forster, resonance transfer of energy could take place between the dye and the protein tyrosine. | en |
| dc.description.provenance | Made available in DSpace on 2021-07-01T08:13:27Z (GMT). No. of bitstreams: 0 Previous issue date: 1983 | en |
| dc.description.tableofcontents | 簡寫表 論文提要(中文)……………………………………………………1 壹.引言……………………………………………………2 貳.實驗程式……………………………………………………5 1.材料……………………………………………………5 2.心臟毒素的分離與純化……………………………………………………5 3.柱膠電泳法……………………………………………………6 4.飯匙倩心臟毒熒光衍生物之製法……………………………………………………7 5.心臟毒接以N-fluoresceinyl thiocarbamoyl groups多寡的量度方法…………………………………………8 6.吸收光譜……………………………………………………8 7.熒光光譜……………………………………………………9 8.生物活性之分析……………………………………………………9 9.免疫活性的分析……………………………………………………10 三.結果……………………………………………………11 1.心臟毒素的分離與純化……………………………………………………11 2.心臟毒熒光衍生物之製備……………………………………………………11 3.電泳移動的比較……………………………………………………12 4.吸收光譜之特性……………………………………………………13 5.心臟毒修飾程度的測定……………………………………………………14 6.生物活性的比較……………………………………………………14 7.免疫活性的比較……………………………………………………15 8.心臟毒熒光衍生物的熒光研究……………………………………………………15 肆.討論與展望……………………………………………………17 附圖1-11……………………………………………………20-41 摘要(英文)……………………………………………………42 參考資料……………………………………………………43 謝辭……………………………………………………46 | |
| dc.language.iso | zh-TW | |
| dc.title | 台灣飯匙倩心臟毒熒光衍生物的製備與性質 | zh_TW |
| dc.title | Preparation and Property of a Fluorescent Derivative of Taiwan Cobra Cardiotoxin | en |
| dc.date.schoolyear | 71-2 | |
| dc.description.degree | 碩士 | |
| dc.relation.page | 46 | |
| dc.rights.note | 未授權 | |
| dc.contributor.author-dept | 生命科學院 | zh_TW |
| dc.contributor.author-dept | 生化科學研究所 | zh_TW |
| 顯示於系所單位: | 生化科學研究所 | |
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