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    رسالة جامعية

    المؤلفون: 劉俊傑, Chun-chieh Liu

    المساهمون: 王貞雅, 唐自強, 嘉南藥理科技大學:生物科技研究所

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    العلاقة: 校內馬上公開,校外一年後公開; 1. Han GR, Mu CL, Cheng XF. Arginine thiazolidinecarboxylate. Acta Pharm. Sin. 1995; 30: 226-233。 2. 李建良。液態培養生產冬蟲夏草菌絲體與冬蟲夏草多醣之研究。交通大學生物科技研究所碩士論文。2000。 3. 雪蝎說C人工培養冬蟲夏草屬之性質及代謝之探討。台大農化所碩士論文。1984。 4. 劉訕坤。冬蟲夏草及菌絲體藥理研究近況。山東中醫雜誌。1991; 10(5): 42-44。 5. 林清淵。是蟲?是草?冬蟲夏草。科學發展。2003; 364: 6~9。 6. Zhu JS, Halpern GM and Jones K. The scientific rediscovery of an ancient Chinese herbal regimen:Cordyceps sinensis:partⅠ. J Altern. Complement Med. 1998a; 4: 289-303. 7. Zhu JS, Halpern GM, Jones K. The scientific rediscovery of a precious ancient Chinese herbal regimen:Cordyceps sinensis:partⅡ. J Altern. Complement Med. 1998b; 4(3): 289-303. 8. Halperm GM. Cordyceps: China’s healing mushroom. Avery Publishing Group. New York, USA. 1999. 9. Kuznetsov DA, Musajev NI. The molecular mode of brain mRNA damage followed by the suppression of posttranscriptional poly(A) synthesis with cordycepin. Int. J.Neurosci. (Eng). 1990; 51(1-2): 53-67. 10. Kobayasi Y. Key to the taxa of the genea Cordyceps and Torrubiella. Tran. Mycol. Soc. Japan. 1982; 23: 329-364. 11. Zhang Q, Wu J, Li D. Induction of HL-60 apoptosis by ethyl acetate extract of Cordycyceps sinensis fungal mycelium. Life Sciences. 2004; 75:2911-2921. 12. 尹定華、唐雪梅。冬蟲夏草人工培養研究的進展。中國中藥雜誌。1995; 20(12): 707-709。 13. 陳明、張榮。冬蟲夏草中核苷及鹼基含量測定分法的研究。中成藥。1995; 17(4): 40-41。 14. 陳召南。細腳擬青黴(固培物)與冬蟲夏草化學成分的初步比較。中成藥。1992; 14(2): 36-37。 15. 李曉明、戴如琴、蘭江麗及陳偉華。冬蟲夏草菌絲體中腺核苷的提取。中國中藥雜誌。1990; 15(1): 40-41。 16. Kiho T, Ballou CE. Thermodynamic parameters and shape of the mycobacterial polymethylpolysaccharide-fatty acid complex. Biochemistry. 1988; 26:27(15): 5824-8. 17. Kiho T, et al. Polysaccharides in fungi. XXXⅡ. Hypoglycemic activity and Chemical properties of a polysaccharides from the cultural mycelium of Cordyceps sinenesis. Bio. Pharm. Bull. 1993; 16(12): 1291-1293. 18. Thorens B, Sharkar HK, Lodish HF. Cloning and functional expression in bacteria of a novel glucose transporter present in liver, intestine, kidney, and β pancreatic islet cells. Cell. 1988; 55: 281-290. 19. LO HC, Tu ST, Lin KC, Lin SC. The anti-hyperglycemic activity of the fruiting body of Cordyceps in diabetic rats induced by nicotinamide and streptozotocin. Life Sciences. 2004; 74:2897-2908. 20. 王志欣、王興民、王同忠、王群。冬蟲夏草與蟲草菌株體的藥理研究現況。中國中西醫結合雜誌。1995; 15(4): 255-256。 21. 徐文豪、薛智、馬建民。冬蟲夏草的水溶性成份–核苷類化合物的研究。中藥通報。1988。13(4): 34-36。 22. Furuya T, Hirotani M, Matsuzawa M. N6-(2-hydroxyethyl)adenosine, a biologically active compound from cultured mycelium of Cordyceps and Isaria species. Phytochemistry. 1983; 22(5): 2509-2512. 23. Kuo YC, Lin CY, Tsai WJ, Wu CL, Chen CF, Shiao M S. Growth inhibitors against tumor cell in Cordyceps sinensis other than cordycepin and polysaccharides. Caner Investigation. 1994; 12: 611-615. 24. Hsu CC, Huang YL, Tsai CC, Huang BM. In vivo and in vitro stimulatory effects of Cordyceps sinensis on testosterone production in mouse Leydig cells. Life Sciences. 2003; 73: 2127-2136. 25. Cuningham KG, Hutchinson SA, Manson W, Spring FS. Cordycepin a metabolic product from cultures of Cordyceps militaris Link. Natural(London) 1950; 166: 949-951. 26. 魏玲、趙應華、郭遂。冬蟲夏草活性成份的含量研究概況。華西藥學雜誌。2003; 18(5): 359-360。 27. 如雲工作室/編。冬蟲夏草奇蹟的力量。1996; 23-34。 28. Chatterjee R, Srinivasan KS, Maiti PC. Cordyceps sinensis : structure of cordycepic acid. J Am Pharm Assoc. 1957; 46: 114. 29. Sprecher M, Sprinson DB. A reinvestigation of the “ Cordycepic acid”. J Org Chem. 1963; 28(9): 2490. 30. 詹松、李凡。冬蟲夏草與蔗娥蟲草化學成分的比較。中國中藥雜誌。1990; 15(10): 35-37。 31. 孫成秀、廖悄碌、尤小慧。甘露醇的臨床新用途。新醫學。1996; 27(1): 41。 32. Lee HL, Chen SC. Microchip capillary electrophoresis with amperometric detection for several carbohydrates. Talanta. 2004; 64: 210-216. 33. Paulus A, Klockow A. Determination of carbohydrates by capillary electrophoresis. Journal of Chromatography A. 1996; 720: 353-376. 34. Huang XJ, Wim Th. Kok. Determination of sugars by capillary electrophoresis with electrochemical detection using cuprous oxide modified electrodes. Journal of Chromatography A. 1995; 707: 335-342. 35. Andersen R, Sorensen A. Separation and determination of alditols and sugars by high-pH anion-exchange chromatography with pulsed amperometric detection. J Chromatogr A. 2000; 897(1): 195-204. 36. Adams MA, Chen Z, Landman P, Colmer TD. Simultaneous determination by capillary gas chromatography of organic acids, sugars, and sugar alcohols in plant tissue extracts as their trimethylsilyl derivatives. Anal Biochem. 1999; 266(1): 77-84. 37. 王志成,劉淑卿,李茂榮。科儀新知。1994; 15: 24。。 38. 陳紹光。科儀新知。1996; 17: 73 。 39. Camilleri P. Capillary Electrophoresis: Theory and Practice. Boca Raton; 1998. 40. Mikkers FEP, Everaerts FM, Verheggen ThPEM. High-performance zone electrophoresis. J Chromatogr. 1979; 169: 11-20. 41. Jorgenson JW, Lukacs KD. Zone electrophoresis in open-tubular glass capillaries. Anal Chem. 1981; 53: 1298-1302. 42. 白志虹。毛細管電泳電化學偵測法使用金汞膜微電極分析三有機錫化合物之研究。中山大學化學所碩士論文。2000。 43. 洪千惠。毛細管電泳電化學偵測法使用銅微電極分析尿液中胱胺酸及半胱胺酸之研究。中山大學化學所碩士論文。1996。 44. Wang Q, Fang Y. Analysis of sugars in traditional Chinese drugs. Journal of Chromatography B. 2004; 812: 309-324. 45. Mario CM, Teresa FA, Agust CG. Amperometric detector designs for capillary electrophoresis microchips. Journal of Chromatography A. 2006; 1109: 291-299. 46. 石瑩潔。毛細管電層析之研究與牛奶中色素之分析。中原化學所碩士論文。2002。 47. Foret F, Krivankova L, Bocek P. "Capillary Zone Electrophoresis". Germany: VCH Weinheim; 1993. 48. Melanson JE, Baryla NE, Lucy CA. Double-chained surfactants far semipermanent wall coatings in capillary electrophoresis. Anal Chem. 2000; 72: 581. 49. 黃柏興。毛細管電層析電化學偵測法分析電活性陰離子之研究。中山大學化學所碩士論文。2001。 50. 李英信。以毛細管區帶電泳法分析食品中之單糖、雙糖以及醣醇。台灣大學食品科技所碩士論文。2002。 51. 鄭惇文。毛細管電泳電化學偵測系統:以商業化元件光纖連接器改善毛細管與電極對準的問題。中山大學化學所碩士論文。2002。 52. John RP, Anthony OO, Amin M, Debroah AP. Capillary electrophoresis and its application in the clinical laboratory. Clinica Chimica Acta. 2003; 330: 1-30. 53. Qi SD, Li YQ, Deng YR, Cheng YQ, Chen XG, Hu ZD. Simultaneous determination of bioactive flavone derivatives in Chinese herb extraction by capillary electrophoresis used different electrolyte systems—Borate and ionic liquids. Journal of Chromatography A. 2006; 1109: 300-306. 54. Li S, Li F, Li Y. Capillary Electrophoresis:Principles, Practice and Application. Netherlands: Elsevier Amsterdam; 1992. 55. Frank MM. Capillary batch injection–A new approach for sample introduction into short-length capillary electrophoresis with electrochemical detection. Electrochemistry Communications. 2006; 8: 1011-1015. 56. Otsuka K, Terabe S, Ando T. Electrokinetic chromatography with micellar solutions: Separation of phenylthiohydantoin-amino acids. J Chromatography A. 1985; 332: 219-226. 57. Terabe S, Otsuka K, Ichikawa K, Tsuchiya A, Ando T. Electrokinetic separations with micellar solutions and open-tubular capillaries. Anal Chem. 1984; 56: 111-113. 58. Liu YM, Sheu SJ. Determination of ephedrine alkaloids by capillary electrophoresis. J Chromatography A. 1992; 600: 370-372. 59. Landers JP, Oda RP, Schuchard MD. Separation of boron-complexed diol compounds using high-performance capillary electrophoresis. Anal Chem. 1992; 64: 2846-2851. 60. Hjertén S, Elenbring K, Kilár F, et al. Carrier-free zone electrophoresis, displacement electrophoresis and isoelectric focusing in a high-performance electrophoresis apparatus. J Chromatography A. 1987; 403: 47-61. 61. Wanders BJ, Everaerts FM. Modified methods for off- and on-line determination of electroosmosis in capillary electrophoretic separations. J Chromatography A. 1989; 470: 95-104. 62. Gozel P, Gassmann E, Michelsen H, Zare RN. Electrokinetic resolution of amino acid enantiomers with copper(II)-aspartame support electrolyte. Anal Chem. 1987; 59: 44-49. 63. Cormick RMMC. Capillary zone electrophoretic separation of peptides and proteins using low pH buffers in modified silica capillaries. Anal Chem. 1988; 60: 2322-2328. 64. Garner TW, Yeung ES. Absorption detection in capillary electrophoresis by fluorescence energy transfer. Anal Chem. 1990; 62: 2193-2198. 65. Drossman H, Luckey JA, Kostichka AJ, Cunha JD, Smith LM. High-speed separations of DNA sequencing reactions by capillary electrophoresis. Anal Chem. 1990; 62: 900-903. 66. Gross L, Yeung ES. Indirect fluorometric detection of cations in capillary zone electrophoresis. Anal Chem. 1990; 62: 427-431. 67. Liu J, Shirota O, Novotny M. Capillary electrophoresis of amino sugars with laser-induced fluorescence detection. Anal Chem. 1991; 63: 413-417. 68. Hernandez L, Escalona J, Joshi N, Guzman N. Laser-induced fluorescence and fluorescence microscopy for capillary electrophoresis zone detection. J Chromatography A. 1991; 559: 183-196. 69. Lee TT, Yeung ES. High-sensitivity laser-induced fluorescence detection of native proteins in capillary electrophoresis. J Chromatography A. 1992; 595: 319-325. 70. Olivares JA, Nguyen NT, Yonker CR, Smith RD. On-line mass spectrometric detection for capillary zone electrophoresis. Anal Chem. 1987; 59: 1230-1232. 71. Smith RD, Loo JA, Edmonds CG, Barinaga CJ, Udseth HR. Sensitivity considerations for large molecule detection by capillary electrophoresis-electrospray ionization mass spectrometry. J Chromatography A. 1990; 516: 157-165. 72. Deterding LJ, Parker CE, Perkins JR, Moseley MA, Jorgenson JW. Nanoscale separations : Capillary liquid chromatography-mass spectrometry and capillary zone electrophoresis-mass spectrometry for the determination of peptides and proteins. J Chromatography A. 1991; 554: 329-338. 73. Moseley MA, Deterding LJ, Tomer KB, Jorgenson JW. Determination of bioactive peptides using capillary zone electrophoresis/mass spectrometry. Anal Chem. 1991; 63: 109-114. 74. Huang X, Pang TJ, Gordon MJ, Zare RN. On-column conductivity detector for capillary zone electrophoresis. Anal Chem. 1987; 59: 2747-2749. 75. Huang X, Zare R N. Improved end-column conductivity detector for capillary zone electrophoresis. Anal Chem. 1991; 63: 2193-2196. 76. Huang X, Zare RN, Sloss S, Ewing AG. End-column detection for capillary zone electrophoresis. Anal Chem. 1991; 63: 189-192. 77. Sloss S, Ewing AG. Improved method for end-column amperometric detection for capillary electrophoresis. Anal Chem. 1993; 65: 577-581. 78. Wallingford RA, Ewing AG. Capillary zone electrophoresis with electrochemical detection. Anal Chem. 1987; 59: 1762-1766. 79. Huang X, Zare RN. Use of an on-column frit in capillary zone electrophoresis: sample collection. Anal Chem. 1990; 62: 443-446. 80. Yik YF, Lee HK, Li SFY, Khoo SB. Micellar electrokinetic capillary chromatography of vitamin B6 with electrochemical detection. J Chromatography A. 1991; 585: 139-144. 81. Colon LA, Dadoo R, Zare RN. Determination of carbohydrates by capillary zone electrophoresis with amperometric detection at a copper microelectrode. Anal Chem. 1993; 65: 476-481. 82. Carlos DG, Charles SH. Enhanced determination of glucose by microchip electrophoresis with pulsed amperometric detection. Analytica Chimica Acta. 2004; 508: 1–9. 83. Walter R, Stephanie A, David J, Celeste N, Susan ML. Recent developments in electrochemical detection for microchip capillary electrophoresis. Electrophoresis. 2004; 25: 3528–3549. 84. Luo MZ, Baldwin RP. Characterization of carbohydrate oxidation at copper electrodes. J Electroanal Chem. 1995; 387: 87-94. 85. Marioli JM, Kuwana T. Electrochemical characterization of carbohydrate oxidation at copper electrodes. Electrochimica Acta. 1992; 37: 1187-1197. 86. Chen G, Zhang LY, Wu XL, Ye JN. Determination of mannitol and three sugars in Ligustrum lucidum Ait. by capillary electrophoresis with electrochemical detection. Analytica Chimica Acta. 2005; 530: 15-21. 87. Cao YH , Wang Y, Chen XL, Ye JN. Study on sugar profile of rice during ageing by capillary electrophoresis with electrochemical detection. Food Chemistry. 2004; 86: 131-136. 88. Peng YY, Liu FH, Ye JN. Determination of polyphenols in apple juice and cider by capillary electrophoresis with electrochemical detection. Food Chemistry. 2005; 92: 169-175. 89. Torto N, Ruzgas T, Gorton L. Electrochemical oxidation of mono-and disaccharides at fresh as well as oxidized copper electrodes in alkaline media. J Electroanal Chem. 1999; 464: 252-258. 90. Gould RF. Carbohydrate in Solution. Washington D C: American Chemical Society. 1973. 91. Ambrose J, Barradas RG, Shoesmith DW. Investigations of copper in aqueous alkaline solutions by cyclic voltammetry. J Electroanal Chem. 1973; 47: 47-64. 92. Paixao TRLC, Bertotti M. Development of a breath alcohol sensor using a copper electrode in an alkaline medium. J Electroanal Chem. 2004; 571: 101-109. 93. Ye J, Baldwin RP. Determination of carbohydrates, sugar acids and alditols by capillary electrophoresis and electrochemical detection at acopper electrode. J Chromatography A. 1994; 687: 141-148. 94. Luo P, Prabhu SV, Baldwin RP. Constant potential amperometric detection at a copper-eased electrode: electrode formation and operation. Anal Chem. 1990; 62: 752-755. 95. Heiger DN. Germany: Agilent Technologies. High performance capillary electrophoresis. 1993. 96. 莊清訓。結合毛細管電泳分離及電化學偵測法對醣類之分析研究。私立 嘉南藥理科技大學生物科技研究所碩士論文。2006。; https://ir.cnu.edu.tw/handle/310902800/9165Test; https://ir.cnu.edu.tw/bitstream/310902800/9165/1/etd-0118107-162653.pdfTest; https://ir.cnu.edu.tw/bitstream/310902800/9165/-1/index.htmlTest

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    رسالة جامعية

    المؤلفون: 莊清訓, Ching-Hsun Chuang

    المساهمون: 唐自強, 嘉南藥理科技大學:生物科技研究所

    وصف الملف: application/pdf; 0 bytes

    العلاقة: 校內外均一年後公開; 1.雪蝎說C人工培養冬蟲夏草屬之性質及代謝之探討。台灣大學農化所碩士論文。1984。 2.黃懷玉。補充冬蟲夏草配合重量訓練對於身體組成、血液生化值及最大總肌力之影響。國立體育學院運動科學研究所碩士論文 2000。 3.李建良。液態培養生產冬蟲夏草菌絲體與冬蟲夏草多醣之研究。交通大學生物科技研究所碩士論文 2000。 4.程麗菁。冬蟲夏草發酵菌絲體之免疫調節作用成。成奶j學微生物暨免疫學研究所碩士論文 1999。 5. Kobayasi Y. Key to the taxa of the genea Cordyceps and Torrubiella. Tran Mycol Soc Japan. 1982;23: 329-364. 6. Mains EB. North American entomogeneous epecies of Cordyceps. Mycologia. 1958;50: 169-222. 7.尹定華、唐雪梅。冬蟲夏草人工培養研究的進展。中國中藥雜誌 20(12): 707-709。1995。 8.楊世海、張紅兵、越英。冬蟲夏草研究的新進展。中草藥 25(9): 488-492。1994。 9.林清淵。是蟲?是草?冬蟲夏草。科學發展。364: 6~9。2003。 10.陳明、張榮。冬蟲夏草中核苷及鹼基含量測定分法的研究。中成藥17(4): 40-41。1995。 11.黃起鵬、李德河、梁吉春、療森泰、梁淑娃。冬蟲夏草弱極性部份的化學成分研究。中藥材14(11): 35-37。1991。 12.陳召南。細腳擬青黴(固培物)與冬蟲夏草化學成分的初步比較。中成藥14(2): 36-37。1992。 13.孫云議。冬蟲夏草及人工蟲草菌絲研究概況。中藥通報10(12): 531-533。1985。 14.楊大榮、沈發榮、龍勇誠、楊躍雄、喻潤清。蟲草蝙蝠蛾幼蟲和冬蟲夏草胺基酸的研究。昆蟲知識4: 239-240。1987。 15.詹松、李凡。冬蟲夏草與蔗娥蟲草化學成分的比較。中國中藥雜誌15(10): 35-37。1990。 16.丘翠嫦、戴斌、王少珩。新疆蟲草的生藥鑑定及胺基酸分析。中藥材14(12): 20-22。1991。 17.張甲生、王寶珍、王曉光、丁長江、李亞平、孫平、夏愛華。蛋蛹蟲草和冬蟲夏草中游離胺基酸的比較分析。白求恩醫科大學學報20(1): 24-25。1994。 18.李雲準、李修祿。用高效液相色譜法測定冬蟲夏草及蟲草烏雞膠丸中麥角固醇的含量。藥學學報26(10): 768-771。1991。 19.Miyazaki T, Oikawa N, Yamada H. Studies on fungal polysaccharides. XX. Galactomannan of Cordyceps sinensis. Chem Pharm Bull. 1977;25(12): 3324-3328. 20.李曉明、戴如琴、朱勤。冬蟲夏草菌發效濾液多醣的組成分析。中國中藥雜誌14(2): 31-33。1989。 21.蘇慶華。利用分子篩-高效液態層析儀(SE-HPLC)分析真菌中藥材之1-3-BETA 多糖體。行政院衛生署中醫藥年報。10(2): 477-499。1993。 22. Kiho T, Hui JI , Yamane A, Ukai S. Polysaccharides in fungi. XXXⅡ. Hypoglycemic activity and Chemical properties of a polysaccharides from the cultural mycelium of Cordyceps sinensis. Biol Pharm Bull. 1993;16(12): 1291-1293. 23. Kiho T, Yamane A, Hui J, Usui S, Ukai S. Polysaccharide in fungi XXXVI. Hypolglycemic activity of a polysaccharide(CS-30)from the cultural mycelium of Cordyceps sinensis and its effects on glucose metabolism in mouse liver. Biol Pharm Bull. 1996;19(2):294-296. 24.鄧計廷、昊林、燕婉如、吳國傳、謝以俊。可博利(冬蟲夏草多糖脂質體)治療乙型肝炎97例療效分析。現代診斷與治療6(3): 178-179。1995。 25.劉訕坤。冬蟲夏草及菌絲體藥理研究近況。山東中醫雜誌10(5): 42-44。1991。 26.馬玲、劉春光、姚小曼。蟲草多糖對小鼠免疫弁鄋獐v響。衛生毒理學雜誌9(3): 162-167。1995。 27. Kuo YC, Lin CY, Tsai WJ, Wu CL, Chen CF, Shiao M S. Growth inhibitors against tumor cell in Cordyceps sinensis other than cordycepin and polysaccharides. Caner Investigation. 1994 ;12:611-615. 28. Furuya T, Hirotani M, Matsuzawa M. N6-(2-hydroxyethyl)adenosine, a biologically active compound from cultured mycelium of Cordyceps and Isaria species. Phytochemistry. 1983;22(5):2509-2512. 29.陳長安。常用藥物治療手冊。全國藥品年鑑雜誌社。台北。台灣。P534、592、706。1998。 30. Cuningham KG, Hutchinson SA, Manson W, Spring FS. Cordycepin a metabolic product from cultures of Cordyceps militaris Link. Natural(London) 1950;166:949-951. 31.解軍、郭欣、李培毅。冬蟲夏草及人工菌絲體中蟲草素的定性定量研究。山西中醫10(4): 36-38。1994。 32.蕭麗華。冬蟲夏草藥材真偽品與發酵培養製備物之結構特徵與成份分析比較。大葉食品工程所碩士論文。1997。 33. Chatterjee R, Srinivasan KS, Maiti PC. Cordyceps sinensis : structure of cordycepic acid. J Am Pharm Assoc. 1957;46:114. 34. Sprecher M, Sprinson DB. A reinvestigation of the “ Cordycepic acid”. J Org Chem. 1963;28(9):2490. 35.孫成秀、廖悄碌、尤小慧。甘露醇的臨床新用途。新醫學。27(1):41。1996。 36.汪寶琪、龐志央C西藏冬蟲夏草中D-甘露醇的薄層掃描分析。中草藥26(4): 189-190。1995。 37.王志成,劉淑卿,李茂榮。科儀新知。15: 24。1994。 38.陳紹光。科儀新知。17: 73 1996。 39. Camilleri P. Capillary Electrophoresis: Theory and Practice. Boca Raton; 1998. 40. Mikkers FEP, Everaerts FM, Verheggen ThPEM. High-performance zone electrophoresis. J Chromatogr. 1979;169:11-20. 41. Jorgenson JW, Lukacs KD. Zone electrophoresis in open-tubular glass capillaries. Anal Chem. 1981;53:1298-1302. 42.石瑩潔。毛細管電層析之研究與牛奶中色素之分析。中原化學所碩士論文。2002。 43.洪千惠。毛細管電泳電化學偵測法使用銅微電極分析尿液中胱胺酸及半胱胺酸之研究。中山大學化學所碩士論文。1996。 44. Foret F, Krivankova L, Bocek P. "Capillary Zone Electrophoresis". Germany: VCH Weinheim; 1993. 45. Melanson JE, Baryla NE, Lucy CA. Double-chained surfactants far semipermanent wall coatings in capillary electrophoresis. Anal Chem. 2000;72:581. 46.黃柏興。毛細管電層析電化學偵測法分析電活性陰離子之研究。中山大學化學所碩士論文。2001。 47.李英信。以毛細管區帶電泳法分析食品中之單糖、雙糖以及醣醇。台灣大學食品科技所碩士論文。2002。 48.鄭惇文。毛細管電泳電化學偵測系統:以商業化元件光纖連接器改善毛細管與電極對準的問題。中山大學化學所碩士論文。2002。 49. Li S, Li F, Li Y. Capillary Electrophoresis:Principles, Practice and Application. Netherlands: Elsevier Amsterdam; 1992. 50. Otsuka K, Terabe S, Ando T. Electrokinetic chromatography with micellar solutions : Separation of phenylthiohydantoin-amino acids. J Chromatography A. 1985;332:219-226. 51. Terabe S, Otsuka K, Ichikawa K, Tsuchiya A, Ando T. Electrokinetic separations with micellar solutions and open-tubular capillaries. Anal Chem. 1984;56:111-113. 52. Liu YM, Sheu SJ. Determination of ephedrine alkaloids by capillary electrophoresis. J Chromatography A. 1992;600: 370-372. 53. Landers JP, Oda RP, Schuchard MD. Separation of boron-complexed diol compounds using high-performance capillary electrophoresis. Anal Chem. 1992;64:2846-2851. 54. Hjertén S, Elenbring K, Kilár F, et al. Carrier-free zone electrophoresis, displacement electrophoresis and isoelectric focusing in a high-performance electrophoresis apparatus. J Chromatography A. 1987;403:47-61. 55. Wanders BJ, Everaerts FM. Modified methods for off- and on-line determination of electroosmosis in capillary electrophoretic separations. J Chromatography A. 1989;470:95-104. 56. Gozel P, Gassmann E, Michelsen H, Zare RN. Electrokinetic resolution of amino acid enantiomers with copper(II)-aspartame support electrolyte. Anal Chem. 1987;59:44-49. 57. Cormick RMMC. Capillary zone electrophoretic separation of peptides and proteins using low pH buffers in modified silica capillaries. Anal Chem. 1988;60:2322-2328. 58. Garner TW, Yeung ES. Absorption detection in capillary electrophoresis by fluorescence energy transfer. Anal Chem. 1990;62:2193-2198. 59. Drossman H, Luckey JA, Kostichka AJ, Cunha JD, Smith LM. High-speed separations of DNA sequencing reactions by capillary electrophoresis. Anal Chem. 1990;62:900-903. 60. Gross L, Yeung ES. Indirect fluorometric detection of cations in capillary zone electrophoresis. Anal Chem. 1990;62:427-431. 61. Liu J, Shirota O, Novotny M. Capillary electrophoresis of amino sugars with laser-induced fluorescence detection. Anal Chem. 1991;63:413-417. 62. Hernandez L, Escalona J, Joshi N, Guzman N. Laser-induced fluorescence and fluorescence microscopy for capillary electrophoresis zone detection. J Chromatography A. 1991;559:183-196. 63. Lee TT, Yeung ES. High-sensitivity laser-induced fluorescence detection of native proteins in capillary electrophoresis. J Chromatography A. 1992;595:319-325. 64. Olivares JA, Nguyen NT, Yonker CR, Smith RD. On-line mass spectrometric detection for capillary zone electrophoresis. Anal Chem. 1987;59:1230-1232. 65. Smith RD, Loo JA, Edmonds CG, Barinaga CJ, Udseth HR. Sensitivity considerations for large molecule detection by capillary electrophoresis-electrospray ionization mass spectrometry. J Chromatography A. 1990;516:157-165. 66. Deterding LJ, Parker CE, Perkins JR, Moseley MA, Jorgenson JW. Nanoscale separations : Capillary liquid chromatography-mass spectrometry and capillary zone electrophoresis-mass spectrometry for the determination of peptides and proteins. J Chromatography A. 1991;554:329-338. 67. Moseley MA, Deterding LJ, Tomer KB, Jorgenson JW. Determination of bioactive peptides using capillary zone electrophoresis/mass spectrometry. Anal Chem. 1991;63:109-114. 68. Nann A, Simon W. On-column detection in capillary zone electrophoresis with ion-selective microelectrodes in conical capillary apertures. J Chromatography A. 1993;633:207-211. 69. Huang X, Pang TJ, Gordon MJ, Zare RN. On-column conductivity detector for capillary zone electrophoresis. Anal Chem. 1987;59:2747-2749. 70. Huang X, Zare R N. Improved end-column conductivity detector for capillary zone electrophoresis. Anal Chem. 1991;63:2193-2196. 71. Huang X, Zare RN, Sloss S, Ewing AG. End-column detection for capillary zone electrophoresis. Anal Chem. 1991;63:189-192. 72. Sloss S, Ewing AG. Improved method for end-column amperometric detection for capillary electrophoresis. Anal Chem. 1993;65:577-581. 73. Wallingford RA, Ewing AG. Capillary zone electrophoresis with electrochemical detection. Anal Chem. 1987;59:1762-1766. 74. Huang X, Zare RN. Use of an on-column frit in capillary zone electrophoresis: sample collection. Anal Chem. 1990;62:443-446. 75. Yik YF, Lee HK, Li SFY, Khoo SB. Micellar electrokinetic capillary chromatography of vitamin B6 with electrochemical detection. J Chromatography A. 1991;585:139-144. 76. Colon LA, Dadoo R, Zare RN. Determination of carbohydrates by capillary zone electrophoresis with amperometric detection at a copper microelectrode. Anal Chem. 1993;65:476-481. 77.Ye J, Baldwin RP. Determination of carbohydrates, sugar acids and alditols by capillary electrophoresis and electrochemical detection at acopper electrode. J Chromatography A. 1994;687:142-148. 78.Luo P, Prabhu SV, Baldwin RP. Constant potential amperometric detection at a copper-eased electrode: electrode formation and operation. Anal Chem. 1990;62:752-755. 79. Heiger DN. High performance capillary electrophoresis. Germany: Agilent Technologies; 1993. 80. Gould RF. Carbohydrate in Solution. Washington D C: American Chemical Society; 1973. 81. Torto N, Ruzgas T, Gorton L. Electrochemical oxidation of mono-and disaccharides at fresh as well as oxidized copper electrodes in alkaline media. J Electroanal Chem. 1999;464:252-258. 82. Luo MZ, Baldwin RP. Characterization of carbohydrate oxidation at copper electrodes. J Electroanal Chem. 1995;387:87-94. 83. Prabhu SV, Baldwin RP. Electrocatalysis and Detection of Amino Sugars, Alditols, and Acidic Sugars at a Copper-Containing Chemically Modified Electrode. Anal Chem. 1989;61:2258-2263. 84. Ambrose J, Barradas RG, Shoesmith DW. Investigations of copper in aqueous alkaline solutions by cyclic voltammetry. J Electroanal Chem. 1973;47:47-64. 85. Marioli JM, Kuwana T. Electrochemical characterization of carbohydrate oxidation at copper electrodes. Electrochimica Acta. 1992;37:1187-1197. 86. Paixao TRLC, Bertotti M. Development of a breath alcohol sensor using a copper electrode in an alkaline medium. J Electroanal Chem. 2004;571:101-109. 87. Ye J, Baldwin RP. Amperometrlc Detection In Capillary Electrophoresis With Normal Size Electrodes. Anal Chem. 1993;65:3525-3527. 88.Chen ZL, Hibbert DB. Simultaneous amperometric and potentiometric detection of sugar polyols and carboxylic acids in flow systems using copper wire electrodes. J Chromatography A. 1997;766:27-33. 89. Fu C, Song L, Fang Y. Simultaneous determination of sugars and organic acids by co-electroosmotic capillary electrophoresis with amperometric detection at a disk-shaped copper electrode. Analytica Chimica Acta. 1998;371:81-87. 90. Zhang X, Cao Y, Ye J. Determination of lactose in sugar-free milk powder by capillary electrophoresis with electrochemical detection. Food Chem. 2001;72:385-388. 91. Hu Q, Zhou T, Hu G, Fang Y. Determination of sugars in Chinese traditional drugs by CE with amperometric detection. J Pharmaceutical and Biomedical Analysis. 2002;30:1047-1053. 92.Wang Q, Yu H, Zong J, He P, Fang Y. Determination of the composition of Chinese ligustrum lucidum polysaccharide by capillary zone electrophoresis with amperometric detection. J of Pharmaceutical and Biomedical Analysis. 2003;31:473-480. 93.Cao Y, Wang Y, Chen X, Ye J. Study on sugar profile of rice during ageing by capillary electrophoresis with electrochemical detection. Food Chem. 2004;86:131-136. 94.Chen G, Zhang L, Wu X, Ye J. Determination of mannitol and three sugars in Ligustrum lucidum Ait. by capillary electrophoresis with electrochemical detection. Analytica Chimica Acta. 2005;530:15-21. 95.Chuang CH, Yu HM, Huang SC, Wang TC, Chen CL, Ling K, Tang, TC. Determination of mannitol in Cordyceps militaris capillary electrophoresis with electrochemical detection. 第20屆天然藥物分析研討會。2005;P-73. 96.Chuang CH, Yu HM, Huang SC, Wang TC, Chen CL, Tang, TC. Determination of mannitol, mannose, glucose, galactose in Cordyceps militaris by capillary electrophoresis with electrochemical detection. 94年度中國藥學年會暨學術研討會。2005;PB-81.; https://ir.cnu.edu.tw/handle/310902800/9071Test; https://ir.cnu.edu.tw/bitstream/310902800/9071/3/index.htmlTest