Publication:
刺五加對柔道運動員抗氧化能力的影響

dc.contributor.advisor張振崗
dc.contributor.advisorChang, Chen-Kang
dc.creator林鼎政
dc.creatorLing, Ting-Cheng
dc.date2005
dc.date.accessioned2017-02-22T15:09:30Z
dc.date.accessioned2025-07-30T15:17:55Z
dc.date.available2017-02-22T15:09:30Z
dc.date.issued2017-02-22T15:09:30Z
dc.description學位類別:碩士
dc.description校院名稱:國立臺灣體育學院
dc.description系所名稱:體育研究所
dc.description畢業學年度:93年
dc.description論文頁數:81頁
dc.description.abstract  劇烈的運動可能會導致氧化傷害,如能攝取相關的抗氧化食品,可能將有助於提高體內抗氧化能力及運動表現。本研究旨在探討在訓練期間補充刺五加4週對柔道運動員抗氧化能力及運動能力的影響。以大專男子優秀柔道運動員18人為受試者分為兩組,採雙盲法實驗設計,實驗組每天服用刺五加1500mg,控制組服用安慰劑。實驗期間對全體受試者施以4週之柔道集訓。分析受試者服用前與4週後之血清麩胱甘肽轉硫酶(glutathione S-transferase,GST)、超氧化物歧化酶(superoxide dismutase,SOD)、麩胱甘肽過氧化物酶(glutathione peroxidase,GPX)活性,以及丙二醛(malondialdehyde,MDA)濃度及心肺耐力,並以划船器進行5分鐘上肢間歇肌耐力運動能力測試。SOD達顯著訓練效應,安慰劑組後測顯著低於前測(76.92±7.96 vs 74.37±8.18 U/mg protein,前測vs後測),但無顯著組間效應,最大耗氧量(VO2max)及最大換氣量(VE)均呈現顯著訓練效應,安慰劑組及刺五加組後測皆顯著高於前測(VO2max:安慰劑組51.14±6.78 vs 55.47±6.89,刺五加組44.07±7.99 vs 51.23±6.68 ml/kg/min,VE:安慰劑組119.91±22.26 vs 131.36±23.23,刺五加組108.96±21.68 vs 129.91±24.19 L/min,前測vs後測),但無顯著組間效應。肌耐力作功指數在第1、3、15階段的訓練效應達顯著差異,安慰劑組後測明顯高於前測,但無顯著組間效應,疲勞指數在第3、4、5、6、9、10階段的訓練效應達顯著差異,刺五加組後測明顯高於前測,並在第3階段達顯著組間效應。其餘GST、GPX、MDA、下肢最大肌力、爆發力在訓練效應及組間效應皆未達顯著差異,此研究顯示,柔道訓練期間攝取刺五加對抗氧化能力以及氧化傷害並無顯著的影響,而柔道運動訓練雖然顯著降低安慰劑組SOD活性,但對總體氧化傷害並無顯著影響,攝取刺五加對柔道運動員之心肺能力、爆發力、下肢最大肌力以及上肢肌耐力並無顯著的影響。
dc.description.abstract  The intensive exercise may cause oxidative stress. The supplements with antioxidatve capacity may help to reduce oxidative stress and improve exercise performance. The objective of this research is to investigate the effect of 4-week supplementation of ciwajia on antioxidant capacity and exercise performance in judo athletes during the training period. Eighteen elite male judo athletes from universities were divided into two groups. The study is double blinded. The subjects in the experiment group consume 1500mg of ciwajia daily, and the subjects in the control group consumed placebo. During the study period, all subjects underwent the concentrative judo trainin. The following variables were measured: glutathione S-transferase (GST), superoxide dismutase (SOD), glutathione peroxidase (GPX) activity, and malondialdehyde (MDA) concentration in serum, cardio-respiratory endurance, leg muscle strength, and lower body explosive power before and after the study period. In addition, upper extremity muscular strength and endurance was mausred using a 5-min intermittent rowing test. Results showed that there was significant training effect on SOD. In control group, SOD was significantly lower after the study (76.92±7.96 vs. 74.37±8.18 U/mg protein,before vs after). No significant difference was found between the groups. On the contrary, VO2max and VE showed significant increases in both groups after the study (VO2max: control: 51.14±6.78 vs. 55.47±6.89,ciwajia 44.07±7.99 vs. 51.23±6.68 ml/kg/min. VE: control: 119.91±22.26 vs. 131.36±23.23, ciwajia 108.96±21.68 vs. 129.91±24.19 L/min,before vs after). Similarly, no significant difference was found between the groups. In the 5-min intermittent rowing test, significant differences were present in muscular endurance workloads during the training stages of the first, third and fifteenth. Results suggested that workloads were significantly higherr in Placebo Group. No significant effect occurred between the groups. Significant differencse were present in the Degree of Fatigue during the third, fourth, fifth, sixth, ninth and tenth stages. The degree of fatigue was significantly higher after the study in Ciwujia group, and the significant group effect was present at the third stage. As for the maximum muscular strength of lower limbs, explosive power, GST, GPX, and MDA, no significant training and supplementation effect was found. This study suggested that there was no significant effect of 4-week ciwajia supplementation on antioxidant enzyme activities and oxidative stress during judo training. In addition, there is no significant effect of ciwajia supplementation on cardio-respiratory endurance, explosive power, maximum muscle force of lower extremity and upper body muscle endurance in judo athletes during training.
dc.description.tableofcontents目 次 第壹章 緒論…………………………………………………01  第一節 研究背景…………………………………………01  第二節 研究目的…………………………………………02  第三節 研究問題…………………………………………02  第四節 研究假設…………………………………………02 第貳章 文獻探討……………………………………………03  第一節 關於刺五加的研究………………………………03   一、刺五加簡介…………………………………………03   二、刺五加的藥理作用…………………………………05   三、刺五加對運動表現的影響…………………………07   四、小結…………………………………………………09  第二節 自由基與抗氧化防禦系統………………………09   一、自由基形成…………………………………………09   二、生物體內的抗氧化系統……………………………13  第三節運動對體內抗氧化系統之影響……………………17   一、中低強度運動對抗氧化的影響……………………18   二、高強度運動對抗氧化的影響………………………20   三、長期運動訓練對抗氧化的影響……………………22   四、柔道運動訓練對抗氧化壓力的影響………………28   五、小結…………………………………………………30 第參章 研究方法……………………………………………31  第一節 研究對象…………………………………………31  第二節 實驗設計…………………………………………31  第三節 實驗步驟與器材…………………………………31   一、實驗步驟……………………………………………31   二、刺五加膠囊製造過程………………………………33  第四節 血液分析方法……………………………………33   一、GST活性測定………………………………………33   二、SOD活性測定………………………………………34   三、GPX活性測定………………………………………35   四、MDA含量性測定……………………………………36  第五節 運動能力測試方法………………………………36   一、最大攝氧量VO2max檢測……………………………36   二、上肢肌耐力運動指標………………………………37   三、下肢最大肌力………………………………………38   四、爆發力………………………………………………38  第六節 實驗時間與地點…………………………………38  第七節 資料分析…………………………………………38 第肆章 結果與討論…………………………………………39  第一節 結果………………………………………………39   一、受試者基本資料……………………………………39   二、血液生化……………………………………………39   三、運動能力……………………………………………40  第二節 討論………………………………………………46   一、柔道運動訓練對個體抗氧化能力與     氧化壓力的作用分析………………………………47   二、刺五加對個體抗氧化能力與氧化壓     力的作用分析………………………………………49   三、刺五加對個體運動能力表現的作用分析…………50 第伍章 結論與建議…………………………………………53  第一節 結論………………………………………………53  第二節 建議………………………………………………53 參考文獻………………………………………………………54  一、中文部分………………………………………………54  二、英文部分………………………………………………58
dc.format.extent1173275 bytes
dc.format.mimetypeapplication/pdf
dc.identifier.urihttps://ir.ntus.edu.tw/handle/987654321/70477
dc.languagezh-TW
dc.publisher體育研究所
dc.relation.isbasedon一、中文部分: 王筠默(1985)。中藥藥理與臨床。創刊號,176。 王重仁(2003)。中藥微波萃取液抗氧化活性及抑制酪胺酸酶性質之探討。未出版的碩士論文,嘉南藥理科技大學生物科技研究所碩士論文,嘉義縣,臺灣。 中國醫學科學院藥物研究所(1981)。中藥志(第一冊)。中國。 中國醫藥委員會(1991)。中國藥典中藥彩色圖集。台北:旺文社。 史久良、高奎憲(1987)。近五年來我國刺五加研究和發展概況簡介。哈爾濱:黑龍江省中醫研究院。 吳秉純(1984)。刺五加國內外研究的概況。中國:黑龍江省祖國醫藥研究所中藥研究室。 林正常、郭育圻、黃國晉(2001)。阻抗運動對肌酸激酶及丙二醛的影響。體育學報,31,35-46。 林亞貞(1998)。補充刺五加對羽球選手運動時體內能量代謝利用及運動表現之影響。未出版的碩士論文,輔仁大學食品營養學系碩士論文,台北縣,臺灣。 林學宜、林培元、徐廣明、徐台閣(2000)。不同強度運動對抗氧化酵素及丙二醛的影響。體育學報,29,137-148。 徐台閣、徐廣明、林明鉐、李建明、林孝義、謝伸裕(1999)。中等強度運動對脂質過氧化的影響。大專體育學刊,1(1),29-37。 曹國華(1991)。運動、鋅和銅營養與自由基代謝游泳對小老鼠體內自由基生成與清除的影響。中國運動醫學雜誌,10(2),65。 曹國華、胡其緘、黃志全(1991)。運動、鋅和銅營養與自由基代謝(4)運動員體內自由基水平與其與鋅和銅營養狀態關係。中國運動醫學雜誌,10(3),132。 郭婕(1995) 。刺五加對人體心肺功能、肌力與血液生化之影響。未出版的碩士論文,國立體育學院運動科學研究所碩士論文,桃園縣,台灣。 馮連世、楊奎生、宗丕芳、郭軍(1994)。急性運動對血漿超氧化物歧化酵素的影響及其與有氧能力的關係。中國運動醫學雜誌,13(3),129-132。 馮煒權(1996)。運動生物化學原理。北京體院。 黃培泉(1998) 。臺灣市售生藥刺五加、金線連及絞股藍之抗氧化及保肝活性藥效評估。未出版的碩士論文,高雄醫學院天然藥物研究所碩士論文,高雄市,台灣。 廖家祺(2001)。中等強度有氧舞蹈訓練對女性身體組成、血液生化值及抗氧化能力之影響。未出版的碩士論文,國立體育學院教練研究所,桃園縣,臺灣。 楊玲玲(1991)。中藥食補與體質。中國飲食文化學術研討會刊物。 趙一、黃國鈞(1989)。實用補養中藥。中國廣西科學技術出版社。 關宏宜(1999)。馬拉松賽的飲料攝取。國民體育季刊,28,95-102。 劉秀麗(2002)。補充抗氧化營養素對運動員體內抗氧化狀態之影響-以柔道選手為探討對象。未出版的碩士論文,中山醫學大學營養科學研究所,台中,臺灣。 錢桂玉(1998)。二週常壓低氧適應及刺五加液對大白鼠生理血液生化值及運動表現之影響。未出版的碩士論文,國立體育學院運動科學研究所碩士論文,桃園縣,臺灣。 謝錦城(1997a)。耐力運動對人體骨骼肌抗氧化酶的影響。中華民國體育學會學報,22,237-248。 謝錦城(1997b)。人體骨骼肌抗氧化系統對於耐力運動與訓練的反應。中華民國大專院校八十六年度體育學術研討會專刊,382-397。 鍾子雯、陳福財、劉方珍(1999)。接受耐力訓練之運動選手其飲食狀況與體內抗氧化力之評估。中華民國營養學會雜誌,24(4),339-350。 顧榮瑞、郭林(1994)。動脈粥樣硬化的機制及不同運動強度對其影響的研究。中國運動醫學雜誌,13(2),65-67。 二、外文部分: Akerboom, T.P. & Sies, H. (1994). Transport of glutathione disulfide and glutathione S-conjugates in hepatocyte plasma membrane vesicles. Methods in Enzymology. 233, 416-425. Alessio, H. M., & Goldfarb, A. H. (1988). Lipid peroxidation and scavenger enzymes during exercise: Adaptive response to training. Journal of Applied Physiology, 64. 1333-1336. Asano,K., Takahashi, M.M., Misao, M., Akira, M., Shigeji, M.,Morio, K., Haruhiko, K. & Jiro, I. (1986). Effect of Eleutherococcus senticosus Extract on Human Physical Working Capacity. Planta Medica, 3, 175-177. Balakrishnanr,H. & Anuradha,T. (1998). The effects of strength training on endurance performance and muscle characteristics. Medicine and Science in Sports and Exercise, 31(6),886-891. Bezdetko, G.N., Dardymov, I.V. & Speranskaya, N. Y. (1980). Effect of ginseng and eleutherococcus on the constent of cyclic-nucleotides. FarmakologiaI. Toksikologia 43(4), 448. Bonorden, W.R., & Pariza, M.W. (1994). Antioxidant nutrients and protection from free radicals. Kotsonis, F. N., Mackey, M and Hjelle, J. Des. Nutritional Toxicology. New York: Raven. 19-48. Braekhman, I.I. & Dardymov, I.V. (1969). New substances of plant origin which increase nonspecific resistance. Annual Review of Pharmacology. 9, 419-428 Braekhman, I.I. & Kirillov, O.I. (1969). Effect of Eleutherococcus on alarm-phase of stress. Life Sciences, 8, 113-121. Breen, A.P. & Murphy, J.A. (1995). Reactions of oxyl radicals with DNA. Free Radical Biology and Medicine. 18(6),1033-1077. Brites, F.D., Evelson, P.A., Christiansen, M.G., Nicol, M.F., Basilico, M.J., Wikinski, R.W. & Llesuy, S.F. (1999) Soccer players under regular training show oxidative stress but an improved plasma antioxidant status. Clinical Science. 96(4), 381-385. Cejkova, J., Stipek, S., Crkovska, J. & Ardan, T. (2000). Changes of superoxide dismutase, catalase and glutathione peroxidase in the corneal epithelium after UVB rays. Histochemical and biochemical study. Histology & Histopathology, 15(4), 1043-1050. Chance B., Sies H. & Boveris A. (1979). Hydroperoxide metabolism in mammalian organs. Physiological Reviews, 59: 527-625. Child, R.B., Wilkinson, D.M., Fallowfield, J.L. & Donnelly, A.E. (1998). Elevated serum antioxidant capacity and plasma malondialdehyde concentration in response to a simulated half-marathon run. Medicine & Science in Sports & Exercise, 30(11), 1603-1607. Chung, S. C. (1997). Estrogenic effects on exercise-induced oxidative stress.Unpublished dissertation, University of North Carolina at Greensboro. Cotgreave I. A., Moldeus P. & Orrenius S. (1988). Host biochemical defense mechanisms against prooxidants. Annu Rev. Pharmacol. Toxicol. 28,189-212. Cross, C.E. (1997). General biological consequences of inhaled environmental toxicology. In The Lung: Scientific Foundations,2421. Raven Press, Philaphia. Dambueva,E. A. & Salnik,B. (1967). Effect of extracts of eleutherococcus and leuzea on lipid metabolism during physical stress. CA - a Cancer Journal for Clinicians , 66, 907. Dambueva,I.V. & Khasina. E.I. (1972). Effect of ginseng and eleutherococcus glycolysis on hexokinase activity. In medicinal sgents of the Far Easterm book publishers. Vladivostok, 11, 56-59. Dardymov,I.V. (1976). Ginseng and eleuterococcus. Nauka Publishers, Mascow. Das, D.K., Engelman, R.M., Rousou, J.A., Breyer, R.H., Otani, H. & Lemeshow, S. (1986). Pathophysiology of superoxide radical as potential mediator of reperfusion injury in pig heart. Basic Research in Cardiology, 81(2), 155-166. Dillard,C.J., Litov,R.E., Savin,R.E. ,Dumelin,E.E., & Tappel,A.L.(1978).Effect of exercise, vitamin E and ozone on pulmonary function and lipid peroxidation. Journal of Applied Physiology, (45), 927-934. Dowling EA, Redondo DR, Branch JD, Jones S, McNabb G, & Williams MH.(1996).Effect of Eleutherococcus senticosus on submaximal and maximal exercise performance. Medicine and Science in Sports and Exercise, 28(4), 482-489. Dufaux, B., Heine, O., Kothe, A., Prinz, U. & Rost, R. (1997) Blood glutathione status following distance running. International Journal of Sports Medicine, 18(2),89-93. Duprat, F., Guillemare, E., Romey, G., Fink, M., Lesage, F., Lazdunski, M. & Honore, E. (1995) Susceptibility of cloned K+ channels to reactive oxygen species. Proceedings of the National Academy of Sciences of the United States of America. 92(25), 11796-11800. Dusinska M, Ficek A, Horska A, Raslova K, Petrovska H, Vallova B, Drlickova M, Wood SG, Stupakova A, Gasparovic J, Bobek P, Nagyova A, Kovacikova Z, Blazicek P, Liegebel U, & Collins AR. (2001). Glutathione S-transferase polymorphisms influence the level of oxidative DNA damage and antioxidant protection in humans. Mutation Research, 482(1-2), 47-55. Ernster,L.(1986).Oxygen as an environmental poison. Cemical Scripta,(26), 525-534. Farnsworth,N.R., Kinghorn, A.d., Soejarto, d.d. & Waller, D. (1989). Siberian ginseng(Elentherococcus Senticoccus):Current status as an adaptogen. Etonomic and Medicinal Plant Reserch.1,146-217. Francisco BM, Alicia S, Manuel D-L, & Francisco R. (1996) Lipid peroxidation products in human subretinal fluid. Free radical biology and medicine, 20, 899-903. Frolova, G. M., Ovodov, y.s & Soprunov,N.I. (1971). Tritepene glycodsides from the leaves of elentherococcus senticosus. Isolation and general characteristics. Khumia prirodnykh soedinenii, 5, 618-622. Gaffney BT, Hugel HM, & Rich PA.(2001). The effects of Eleutherococcus senticosus and Panax ginseng on steroidal hormone indices of stress and lymphocyte subset numbers in endurance athletes. Life Sciences, 70(4), 431-442. Gilbert W. (1981). DNA sequencing and gene structure. Science 214,1305-1312. Gonenc, S., Acikgoz, O., Semin, I. & Ozgonul, H. (2000) The effect of moderate swimming exercise on antioxidant enzymes and lipid eroxidation levels in children. Indian Journal of Physiology and Pharmacology. 44(3), 340-344. Halliwell, B. & Gutteridge, J. M. (1985). Lipid peroxidative: a radical chain reaction. Free Radicals in Biology and Medicine , 188- 218. Halliwell, B. & Chirico, S. (1993) Lipid peroxidation: its mechanism measurement and significance. The American Journal of Clinical Nutrition, 57, 715-725. Halliwell, B., & Gutteridge, J.M.C. (1990). Role of free radicals and catalytic metal Irons in human disease: a overview. Method Enzymol. 186, 59-85. Halliwell, B., Gutteridge, J.M. C. & Cross, E. E. (1992). Free radicals, antioxidants And human disease. Journal of laboratory and linical medicine, 119, 598-620. Hammeren, J., Powers, S., Lawaer, J., Criswell, D., Lowenthal, D. & Pollock, M. (1993) Exercise training-induced alterations in skeletal muscle oxidative and antioxidant enzyme activity in senescent rats. International Journal of Sports Medicine, (13), 412-416. Hiroshi, H., Michiko, T., Kazako, O. & Chohachi,K. (1986). Isolation and A,B,C,D,E,F and G. Glycans of eleutsenticosus roots. Journal of Natural Products, 49(2), 293-297. Inayama, T., Kumagai, Y., Sakane, M., Saito, M. & Matsuda, M. (1996) Plasma protein-bound sulfhydryl group oxidation in humans following a fullmarathon race. Life Sciences 59, 573-578. Jacob R. A. (1995). The integrated antioxidant system. International Journal for Vitamin and Nutrition Research, 15, 755-766. Jenkins, R.R., Friedland, R. & Howald, H. (1984). The relationship of oxygen uptake to superoxide dismutase and catalase activity in human muscle. International Journal of Sports Medicine, 5(1), 11-14. Ji, L.L., Stratman, F. W. & Lardy, H. A.(1988). Enzymatic down regulation with exercise in rat skeletal muscle. Archives of Biochemistry and Biophysics,263, 137-160. Ji, L.L., Wu,E.& Thomas, D.P. (1991). The effect of exercise training on metabolic and antioxidant functions in senescent rat skeletal muscle. Gerontology, 37, 317- 325. Jones, O.T. (1994). The regulation of superoxide production by the NADPH oxidase of neutrophils and other mammalian cells.BioEssays, 16(12), 919-923. Kanter, M. M.(1994). Free radical, exercise and antionxudant supplementation. International Journal of Nutrition, 4, 205-220. Kanter, M.M., Hamlin, R.I., Unverferth, D.V., Davies, H.W. & Merola, A.J. (1985). Effects of exercise training on antioxidant enzymes and cardiotoxicity of doxoroudicin Journal of Applied Physiology, 59, 1298-1303. Kanter, M.M., Lesmes, G.R., Neguin, N.D., Kaminsky, L.A. LaHam-Saeger,J., & Nequin,N.D.(1988). Serum creatine kinase and lactate dehydrogenase change following an eighty kilometer race. European Journal of Applied Physiology, 57, 60-63. Kanter, M.M., Nolte, L.A. & Holloszy, J.O. (1993) Effects of an antioxidant vitamin mixture on lipid peroxidation at rest and postexercise. Journal of Applied Physiological, 74(2), 965-969. Knight, J. A. (1997) Reactive oxygen species and the neurodegenerative disorders. Annals of Clinical and Laboratory Science, 27, 11-25. Lawson, DL, Chen, L & Mehta, J.L. (1997) Effects of exercise-induced oxidative stress on nitric oxide release and antioxidant activity. The American Journal of Cardiology 80, 1640-1642. Leeuwenburgh, C., Fiebig, R., Chandwanney, R. & Ji, L.L. (1994). Aging and exercise training in skeletal muscle: Responses of glutathione and antioxidant enzyme system. American Journal of Physiology, 30(1), 67-72. Lin CC, Huang PC.(2000). Antioxidant and hepatoprotective effects of Acathopanax senticosus. Phytotherapy Research : PTR, 14(7), 489-494. Liu, S.S. (1999). Cooperation of a "reactive oxygen cycle" with the Q cycle and the proton cycle in the respiratory chain—superoxide generating and cycling mechanisms in mitochondria. Journal of Bioenergetics and Biomembranes, 31(4), 367-376. Lovlin, R., Cottle, W. P., Kavanagh, M., & Belcastro, A. A.(1987). Are Indices of free radical damage related to exercise intensity. European Journal of Applied Physiology,56, 313-316. Mates, J. M., & Sanchez-Jimen’ez, F. M. (2000). Role of reactive oxygen species in Apoptosis: implications for cancer therapy. The international Journal of Biochemistry and Cell Biology 32, 157-170. Maughan,R.J.,Donnelly, A.E.,Gleeson,M.,Whiting,P.H., Walker.K.A.,& Clough,P.J.(1989).Delayed-onset muscle damage and lipid peroxidation in man after a downhill run. Muscle and Nerve,12(4), 332-336. Mena, P., Manynar, M., Gutierrez, J.M., Tiimon,J. & Campillo,J.E. (1991) Erythrocyte and radical scavenger enzymes in bicycle professional racers adaptation to training. International of Sports Medicine, 12 (6), 563-566. Meydani,M., Evans,W.J., & Handelman,G.(1993).Protective effect of vitamin E on exercise-induced oxidative damage in young and older adults. American Journal of Physiology,264, 992-998. National Coaching Certification Programme (NCCP). (1990). Level III: Judo technical manual. Gloucester, Ontario: Judo Cannada. Niess, A.M., Hartmann, A., Grunert-Fuch, M., Poch, B. & Speit, G. (1996). DNA damage after exhaustive treadmill running in trained and untrained men. International Journal of Sports Medicine, 17, 397-404. Ohno, H., Sato, Y. & Yamashita, K. (1986). The effect of brief physical exercise on free radical scavenging enzyme system in human red blood cells. Canadian Journal of Physiology and Pharmacology, 64, 1263-1265. Ortenblad, N., Madsen, K. & Djurhuus, M.S.(1997). Antioxidant status and lipid peroxidation after short-term maximal exercise in trained and untrained humans. American Journal of Physiology, 272, 1258- 1263. Packer, L. (1997). Oxidants, antioxidant nutrients and athletes. Journal of Sports Science, 15, 353-363. Powers, S.K. & Lennon, S.L. (1999) Analysis of cellular responses to free radicals: focus on exercise and skeletal muscle. Proceedings of the Nutrition Society. 58(4), 1025-1033. Powers, S.K., Criswell, D. & Lawler, J . (1994 ) . Influence of exercise and fiber type on antioxidant enzyme activity in rats keletal muscle. American Journal of Physiology, 266, 375- 380. Sen, C. K. (1995 ). Oxidant and antioxidant in exercise. Journal of Applied Physiology, 79(3), 675- 686. Sen, C. K., Atalay,M., & Hanninen, O.(1994). Exercise-induced oxidative stress: glutathione supplementation and deficiency. Journal of Applied Physiology, 77(5), 2177-2187. Sjodin, B., Westing, Y.H. & Apple, F.S. (1990). Biochemical mechanisms for oxygen free radical formation during exercise.Sports Medicine, 10(4), 236-254. Skinner, J.S. & Mclellan, T.M. (1982). Blood lactate removal during active recovery related to the aerobic threshold. International Journal of Sports Medicine, 4, 224- 229. Smith, J. A., Kolbuch-Braddon, M., Gillam, I., Telford, R. D., & Weidemann, M. J. (1995). Changes in the susceptibility of red blood cells to oxidative and osmotic stress following submaximal exercise. European Journal of Applied Physiology, 70(5), 427-436. Starke, P.E., Oliver, C.N. & Stadtman, E.R. (1987). Modification of hepatic proteins in rats exposed to high oxygen concentration. The FASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology, 1(1), 36-39. Subudhi, A.W., Davis, S.L., Kipp, R.W. & Askew, E.W. (2001) Antioxidant Status and Oxidative Stress in Elite Alpine Ski Racers. International Journal of Sport Nutrition and Exercise Metabolism, 11, 32-41. Sundberg AG. & Nilsson R, (1993). Appelkvist EL. Dallner G.. Immunohistochemical localoization of alpha and pi class glutathione transferases in normal human tissues. Pharmacology and toxicology, 72, 311-3318. Tessier, F., Margaritis, I., Richard, M.J., Moynoy, T. & Marconnet, P. (1995). Selenium and training effects on the glutathione system and aerobic performance. Medicine and Science in Sports and Exercise, 27(3), 390-395. Tharp, G.D., Weir, J.P. & Stout, J. (1995). Effect of aerobic training on malodialdehyde excretion. Journal of Strength and Conditioning Research, 9(4), 237- 239. Tiidus, P.M. & Houston, M.E. (1994). Antioxidant and oxidative enzyme adaptations to vitamin E deprivation and training. Medicine and Science in Sports and Exercise, 26(3),p235-239. Tiidus, P.M., Pushkarenko, J., & Houston, M.E. (1996). Lack of antioxidation adaptation to short-term aerobic training in human muscle. American Journal of Physical, 271, 832-836. Venditti, P. & Meo, S.D. (1996). Antioxidants, Tissue Damage, and Endurance in Trained and Untrained Young Males Rats. Archives of Biochemistry and Biophysics, 331(1), 63-68. Vina, J., Gomez-Cabrera, M. C., Lloret, A., Marquez, R., Minana, J. B., Pallardo, F. V., & Sastre, J. (2000). Free radicals in exhaustive physical exercise: mechanism of production, and protection by antioxidants. I.U.B.M.B. Life, 50(4-5), 271 - 277. Waxman, D., J. (1990). Glutathione S-transferases: role in alkylating agent resistance and possible target for modulation chemotherapy--a review. Cancer Research. 50(20), 6449-6454. Westhuyzen, J. (1997). The oxidation hypothesis of atherosclerosis. an updata. Ann. Clin. Lab. Sci,27,1-10 Yu C.Y, Kim S.H, Lim J.D, Kim M.J, & Chung I.M.(2003). Intraspecific relationship analysis by DNA markers and in vitro cytotoxic and antioxidant activity in Eleutherococcus senticosus. Toxicology in Vitro : an International Journal Published in Association with BIBRA, 17(2), 229-36. Zwart, L.L.D., Meerman, J.H.N., Commandeur, J.N.M. & Vermeulen, N.P.E. (1999). Biomarkers of free radicals damage application in experimental animals and in human. Free Radical Biology and Medicine. 26, 202-226.
dc.subject刺五加;柔道;抗氧化酵素;氧化傷害
dc.subjectCiwajia;antioxidant enzyme;judo;oxidative stress
dc.title刺五加對柔道運動員抗氧化能力的影響
dc.titleTHE EFFECT OF CIWAJIA ON ANTIOXIDATIVE CAPABILITY IN MALE JUDO ATHLETE
dc.typethesis
dspace.entity.typePublication

Files

Original bundle
Now showing 1 - 1 of 1
Loading...
Thumbnail Image
Name:
3105-13474901.pdf
Size:
1.12 MB
Format:
Adobe Portable Document Format