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研究生: 蘇玫尹
Mei-Yin Su
論文名稱: 腎上腺素對H460肺癌細胞之AMPK路徑的影響
The Effects of Epinephrine on AMPK-activated Protein Kinase in H460 Lung Cancer Cells
指導教授: 謝伸裕
Hsieh, Shen-Yu
張嘉銘
Chang, Jia-Ming
學位類別: 博士
Doctor
系所名稱: 體育學系
Department of Physical Education
論文出版年: 2011
畢業學年度: 99
語文別: 中文
論文頁數: 67
中文關鍵詞: 運動荷爾蒙能量代謝
英文關鍵詞: exercise, hormone, energy metabolism
論文種類: 學術論文
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  • 運動有益於癌症的效果已被許多研究證實,但其中的機轉卻一直沒有被建立。AMPK (AMP-activated protein kinase) 為能量恆定的重要調節者,由於其抑制腫瘤生長的效果已應用於抗癌藥物的發展,因此運動活化AMPK的作用被認為是運動有益於癌症的機轉。在本論文中,我們先建立葡萄糖與血清的刺激和AMPK活性反應之間的關係,結果發現AMPK活性的反應會出現完全不同的變化。因此我們進一步使用運動時負責調節能量代謝作用的荷爾蒙代表運動的刺激,從細胞模式建立荷爾蒙、AMPK與肺癌細胞之間的關係,進而了解運動透過AMPK影響癌症的可能性。本論文的目的為探討荷爾蒙在細胞模式中對於H460肺癌細胞內AMPK活性與細胞生長情況的影響。研究的方法以腎上腺素、生長激素、胰島素和昇糖素作為刺激原,將H460肺癌細胞培養於含10 % 血清的DMEM培養基,以固定濃度的荷爾蒙作用3、6、12、24與48小時後,進行各時間點的細胞存活分析,並測量細胞內AMPK的蛋白質表現量與活性。結果顯示荷爾蒙的作用與細胞生長情況之間沒有時間依存的關係,腎上腺素在第3小時、生長激素在第24小時皆可顯著增加約7 %的細胞 (p < .05),胰島素的作用在第3、12、24與48小時顯著增加約7 ~ 11 % 的細胞 (p < .05),而昇糖素分別在第3與12小時增加約8 % 與5 % 的細胞 (p < .05)。此外,荷爾蒙的作用與AMPK活性的變化之間也沒有時間上的依存關係,但荷爾蒙皆可在第3小時抑制AMPK活性約26 ~ 50 %,在第48小時則引起AMPK活性增加約57 ~ 148 %。上述的結果證明腎上腺素的作用在第3小時會顯著增加H460肺癌細胞的生長,同時抑制細胞內AMPK的活性,推測高濃度腎上腺素在3小時內的作用可能會因抑制AMPK活性而造成腫瘤生長。

    For improving the cancer disease, exercise has been widely accepted with its benefit, but the mechanism of action between exercise and cancer has not been elucidated yet. AMPK (AMP-activated protein kinase) is an important regulator in energy homeostasis. According to the published literatures, activated AMPK suppresses the growth of tumor, which is potential to develop as a drug target for developing anticancer drug. Therefore, an increased AMPK activity by exercise is speculated as key role between exercise and cancer. In this thesis, we first established the AMPK responses with different stimulation of glucose and serum. Results appeared that there is different patent on AMPK activity following serum (containing with growth factors) stimulation compared with glucose stimulation. Furthermore, we used different hormones, which are generated during exercise, as stimulator in cell culture to establish the relationship among hormone, AMPK and lung cancer cell, and then investigate whether exercise influences cancer development through alteration of AMPK activity. The purpose in this thesis is to investigate the effects of hormone on AMPK activity and cell growth in H460 lung cancer cells. H460 lung cancer cells were incubated with DMEM medium including 10 % serum, and then epinephrine, growth hormone, insulin and glucagon were added to H460 cell culture, respectively, for analyzing the cell viability, AMPK activity and AMPK protein amount at 3, 6, 12, 24, 48 h. We found that there was no time-dependant relationship between the effect of hormone and cell growth. Epinephrine and growth hormone significantly increased cell viability about 7 % at 3 h and 24 h, respectively (p < .05). Insulin significantly increased cell viability from 7 to 11 % at 3, 12, 24 and 48 h (p < .05). Glucagon significantly increased cell viability 8 % and 5% at 3 and 12 h separately (p < .05). Furthermore, there was no time-dependant relationship between the effect of hormone and AMPK activity. We found all hormones suppress AMPK activity from 26 to 50 % at 3 h, but enhance AMPK activity from 57 to 148 % at 48 h. In conclusion, epinephrine significantly increases cell viability, which was coincident with a decreased AMPK activity. These data suggest that high level of epinephrine could cause the tumor growth mediated by a decreased AMPK activity within 3 hours.

    中文摘要……………………………………………………………… I 英文摘要……………………………………………………………… II 謝誌…………………………………………………………………… III 目次…………………………………………………………………… IV 圖次…………………………………………………………………… VI 第壹章 緒論 一、研究背景………………………………………………………… 1 二、研究目的………………………………………………………… 3 三、研究假設………………………………………………………… 3 第貳章 文獻探討 一、運動與癌症……………………………………………………… 4 二、能量代謝與癌症………………………………………………… 8 三、AMPK與癌症…………………………………………………… 15 四、運動與荷爾蒙…………………………………………………… 21 第參章 研究方法 一、實驗設計………………………………………………………… 25 二、細胞培養………………………………………………………… 25 三、細胞內能量狀態指標分析……………………………………… 26 四、AMPK活性分析………………………………………………… 26 五、細胞存活分析…………………………………………………… 27 六、蛋白質備製……………………………………………………… 27 七、蛋白質定量……………………………………………………… 27 八、蛋白質電泳……………………………………………………… 28 九、西方點墨法……………………………………………………… 28 十、統計分析………………………………………………………… 29 第肆章 結果 一、葡萄糖與血清對H460肺癌細胞內 AMPK活性與能量狀態的影響……………………………… 30 二、荷爾蒙對H460 肺癌細胞生長情況的影響………………… 33 三、荷爾蒙對H460肺癌細胞內AMPK 蛋白質表現量與活性變化的影響…………………………… 39 第伍章 討論與結論 一、荷爾蒙對於癌細胞生長情況的影響…………………………… 46 二、荷爾蒙對於AMPK的影響…………………………………… 47 三、荷爾蒙引起的AMPK反應與H460肺癌 細胞生長情況的關係………………………………………… 48 四、結論…………………………………………………………… 49 引用文獻 一、期刊文獻……………………………………………………… 51 二、研究報告……………………………………………………… 64 附錄一 材料………………………………………………………… 65 個人小傳……………………………………………………………… 67

    一、期刊文獻
    Abbassioun, K., Amirjamshidi, M., Mehrazin, A., Khalatbary, I., Keynama, M., Bokai, H., et al. (2006). A prospective analysis of 151 cases of patients with acromegaly operated by one neurosurgeon: A follow-up of more than 23 years. Surgical Neurology, 66(1), 26-31.
    Al-Wadei, H. A., & Schuller, H. M. (2009). Nicotinic receptor-associated modulation of stimulatory and inhibitory neurotransmitters in NNK-induced adenocarcinoma of the lungs and pancreas. Journal of Pathology, 218(4), 437-445.
    Albanes, D., Blair, A., & Taylor, P. R. (1989). Physical activity and risk of cancer in the NHANES I population. American Journal of Public Health, 79(6), 744-750.
    Alfano, C. M., Klesges, R. C., Murray, D. M., Bowen, D. J., McTiernan, A., Vander Weg, M. W., et al. (2004). Physical activity in relation to all-site and lung cancer incidence and mortality in current and former smokers. Cancer Epidemiology, Biomarkers and Prevention, 13(12), 2233-2241.
    Algire, C., Zakikhani, M., Blouin, M. J., Shuai, J. H., & Pollak, M. (2008). Metformin attenuates the stimulatory effect of a high-energy diet on in vivo LLC1 carcinoma growth. Endocrine-Related Cancer, 15(3), 833-839.
    Alkemade, A. (2010). Central and peripheral effects of thyroid hormone signalling in the control of energy metabolism. Journal of Neuroendocrinology, 22(1), 56-63.
    Almeida, P. W., Gomes-Filho, A., Ferreira, A. J., Rodrigues, C. E., Dias-Peixoto, M. F., Russo, R. C., et al. (2009). Swim training suppresses tumor growth in mice. Journal of Applied Physiology, 107(1), 261-265.
    Anisimov, V. N., Berstein, L. M., Egormin, P. A., Piskunova, T. S., Popovich, I. G., Zabezhinski, M. A., et al. (2005). Effect of metformin on life span and on the development of spontaneous mammary tumors in HER-2/neu transgenic mice. Experimental Gerontology, 40(8-9), 685-693.
    Anisimov, V. N., Egormin, P. A., Bershtein, L. M., Zabezhinskii, M. A., Piskunova, T. S., Popovich, I. G., et al. (2005). Metformin decelerates aging and development of mammary tumors in HER-2/neu transgenic mice. Bulletin of Experimental Biology and Medicine, 139(6), 721-723.
    Ashrafian, H. (2006). Cancer's sweet tooth: The Janus effect of glucose metabolism in tumorigenesis. Lancet, 367(9510), 618-621.
    Bak, H., Christensen, J., Thomsen, B. L., Tjonneland, A., Overvad, K., Loft, S., et al. (2005). Physical activity and risk for lung cancer in a Danish cohort. International Journal of Cancer, 116(3), 439-444.
    Bansal, P., & Wang, Q. (2008). Insulin as a physiological modulator of glucagon secretion. American Journal of Physiology Endocrinology and Metabolism, 295(4), E751-761.
    Bellance, N., Benard, G., Furt, F., Begueret, H., Smolkova, K., Passerieux, E., et al. (2009). Bioenergetics of lung tumors: Alteration of mitochondrial biogenesis and respiratory capacity. International Journal of Biochemistry & Cell Biology, 41(12), 2566-2577.
    Ben Sahra, I., Laurent, K., Loubat, A., Giorgetti-Peraldi, S., Colosetti, P., Auberger, P., et al. (2008). The antidiabetic drug metformin exerts an antitumoral effect in vitro and in vivo through a decrease of cyclin D1 level. Molecular Cancer Therapeutics, 27(25), 3576-3586.
    Ben Sahra, I., Le Marchand-Brustel, Y., Tanti, J. F., & Bost, F. (2010). Metformin in cancer therapy: A new perspective for an old antidiabetic drug? Mol Cancer Ther, 9(5), 1092-1099.
    Birk, J. B., & Wojtaszewski, J. F. (2006). Predominant alpha2/beta2/gamma3 AMPK activation during exercise in human skeletal muscle. The Journal of Physiology, 577(Pt 3), 1021-1032.
    Bodmer, M., Meier, C., Krahenbuhl, S., Jick, S. S., & Meier, C. R. (2010). Long-term metformin use is associated with decreased risk of breast cancer. Diabetes Care, 33(6), 1304-1308.
    Bosco, J. L., Antonsen, S., Sorsensen, H. T., Pedersen, L., & Lash, T. L. (2010). Metformin and incident breast cancer among diabetic women: a population-based case-control study in Denmark. Cancer Epidemiology, Biomarkers and Prevention, 20(1), 101-111.
    Budanov, A. V., & Karin, M. (2008). p53 target genes sestrin1 and sestrin2 connect genotoxic stress and mTOR signaling. Cell, 134(3), 451-460.
    Buzzai, M., Jones, R. G., Amaravadi, R. K., Lum, J. J., DeBerardinis, R. J., Zhao, F., et al. (2007). Systemic treatment with the antidiabetic drug metformin selectively impairs p53-deficient tumor cell growth. Cancer Research, 67(14), 6745-6752.
    Byers, T., Nestle, M., McTiernan, A., Doyle, C., Currie-Williams, A., Gansler, T., et al. (2002). American Cancer Society guidelines on nutrition and physical activity for cancer prevention: Reducing the risk of cancer with healthy food choices and physical activity. CA: A Cancer Journal for Clinicians, 52(2), 92-119.
    Cesario, A., Ferri, L., Galetta, D., Pasqua, F., Bonassi, S., Clini, E., et al. (2007). Post-operative respiratory rehabilitation after lung resection for non-small cell lung cancer. Lung Cancer, 57(2), 175-180.
    Chen, S., Rehman, S. K., Zhang, W., Wen, A., Yao, L., & Zhang, J. (2010). Autophagy is a therapeutic target in anticancer drug resistance. Biochimica et Biophysica Acta, 1806(2), 220-229.
    Colbert, L. H., Mai, V., Perkins, S. N., Berrigan, D., Lavigne, J. A., Wimbrow, H. H., et al. (2003). Exercise and intestinal polyp development in APCMin mice. Medicine & Science in Sports & Exercise, 35(10), 1662-1669.
    Colbert, L. H., Mai, V., Tooze, J. A., Perkins, S. N., Berrigan, D., & Hursting, S. D. (2006). Negative energy balance induced by voluntary wheel running inhibits polyp development in APCMin mice. Carcinogenesis, 27(10), 2103-2107.
    DeBerardinis, R. J. (2008). Is cancer a disease of abnormal cellular metabolism? New angles on an old idea. Genetics in Medicine, 10(11), 767-777.
    DeBerardinis, R. J., & Cheng, T. (2010). Q's next: The diverse functions of glutamine in metabolism, cell biology and cancer. Oncogene, 29(3), 313-324.
    DeBerardinis, R. J., Lum, J. J., Hatzivassiliou, G., & Thompson, C. B. (2008). The biology of cancer: Metabolic reprogramming fuels cell growth and proliferation. Cell Metabolism, 7(1), 11-20.
    Demetrius, L. A., Coy, J. F., & Tuszynski, J. A. (2010). Cancer proliferation and therapy: The Warburg effect and quantum metabolism. Theoretical Biology and Medical Modelling, 7, 2.
    Donadio, A. C., Lobo, C., Tosina, M., de la Rosa, V., Martin-Rufian, M., Campos-Sandoval, J. A., et al. (2008). Antisense glutaminase inhibition modifies the O-GlcNAc pattern and flux through the hexosamine pathway in breast cancer cells. Journal of Cellular Biochemistry, 103(3), 800-811.
    Dowling, R. J., Zakikhani, M., Fantus, I. G., Pollak, M., & Sonenberg, N. (2007). Metformin inhibits mammalian target of rapamycin-dependent translation initiation in breast cancer cells. Cancer Research, 67(22), 10804-10812.
    Duncan, K., Harris, S., & Ardies, C. M. (1997). Running exercise may reduce risk for lung and liver cancer by inducing activity of antioxidant and phase II enzymes. Cancer Letters, 116(2), 151-158.
    Evans, J. M., Donnelly, L. A., Emslie-Smith, A. M., Alessi, D. R., & Morris, A. D. (2005). Metformin and reduced risk of cancer in diabetic patients. British Medical Journal, 330(7503), 1304-1305.
    Fantin, V. R., St-Pierre, J., & Leder, P. (2006). Attenuation of LDH-A expression uncovers a link between glycolysis, mitochondrial physiology, and tumor maintenance. Cancer Cell, 9(6), 425-434.
    Fialka-Moser, V., Crevenna, R., Korpan, M., & Quittan, M. (2003). Cancer rehabilitation: Particularly with aspects on physical impairments. Journal of Rehabilitation Medicine, 35(4), 153-162.
    Fogarty, S., & Hardie, D. G. (2010). Development of protein kinase activators: AMPK as a target in metabolic disorders and cancer. Biochimica et Biophysica Acta, 1804(3), 581-591.
    Friedenreich, C. M. (2001). Physical activity and cancer prevention: From observational to intervention research. Cancer Epidemiology, Biomarkers and Prevention, 10(4), 287-301.
    Friedenreich, C. M., & Orenstein, M. R. (2002). Physical activity and cancer prevention: Etiologic evidence and biological mechanisms. Journal of Nutrition, 132(11 Suppl), 3456S-3464S.
    Friedmann, B., & Kindermann, W. (1989). Energy metabolism and regulatory hormones in women and men during endurance exercise. European Journal of Applied Physiology and Occupational Physiology, 59(1-2), 1-9.
    Fruman, D. A., & Edinger, A. L. (2008). Cancer therapy: Staying current with AMPK. Biochemical Journal, 412(2), e3-5.
    Griguer, C. E., Oliva, C. R., & Gillespie, G. Y. (2005). Glucose metabolism heterogeneity in human and mouse malignant glioma cell lines. Journal of Neuro-Oncology, 74(2), 123-133.
    Halle, M., & Schoenberg, M. H. (2009). Physical activity in the prevention and treatment of colorectal carcinoma. Deutsches Ärzteblatt International, 106(44), 722-727.
    Hanahan, D., & Weinberg, R. A. (2000). The hallmarks of cancer. Cell, 100(1), 57-70.
    Hardie, D. G. (2004). The AMP-activated protein kinase pathway--new players upstream and downstream. Journal of Cell Science, 117(Pt 23), 5479-5487.
    Hardie, D. G., Scott, J. W., Pan, D. A., & Hudson, E. R. (2003). Management of cellular energy by the AMP-activated protein kinase system. FEBS Letters, 546(1), 113-120.
    Harrison, L. E., Blumberg, D., Berman, R., Ng, B., Hochwald, S., Brennan, M. F., et al. (1996). Effect of human growth hormone on human pancreatic carcinoma growth, protein, and cell cycle kinetics. Journal of Surgical Research, 61(2), 317-322.
    Hasegawa, H., Onda, M., Matsukura, N., Naito, Z., Maruyama, H., & Tokunaga, A. (2001). Hemorrhagic gastric carcinoma in an acromegalic patient. Journal of Nihon Medical School, 68(3), 266-270.
    Hattori, A., Mawatari, K., Tsuzuki, S., Yoshioka, E., Toda, S., Yoshida, M., et al. (2010). Beta-adrenergic-AMPK pathway phosphorylates acetyl-CoA carboxylase in a high-epinephrine rat model, SPORTS. Obesity, 18(1), 48-54.
    Hoffman-Goetz, L., MacNeil, B., Arumugam, Y., & Randall Simpson, J. (1992). Differential effects of exercise and housing condition on murine natural killer cell activity and tumor growth. International Journal of Sports Medicine, 13(2), 167-171.
    Hohla, F., Schally, A. V., Szepeshazi, K., Varga, J. L., Buchholz, S., Koster, F., et al. (2006). Synergistic inhibition of growth of lung carcinomas by antagonists of growth hormone-releasing hormone in combination with docetaxel. Proceedings of the National Academy of Sciences of the United States of America, 103(39), 14513-14518.
    Hoyer-Hansen, M., & Jaattela, M. (2007). AMP-activated protein kinase: a universal regulator of autophagy? Autophagy, 3(4), 381-383.
    Huang, X., Wullschleger, S., Shpiro, N., McGuire, V. A., Sakamoto, K., Woods, Y. L., et al. (2008). Important role of the LKB1-AMPK pathway in suppressing tumorigenesis in PTEN-deficient mice. The Biochemical Journal, 412(2), 211-221.
    Hwang, J. T., Kwon, D. Y., & Yoon, S. H. (2009). AMP-activated protein kinase: A potential target for the diseases prevention by natural occurring polyphenols. New Biotechnology, 26(1-2), 17-22.
    Ibrahim, E. M., & Al-Homaidh, A. (2010). Physical activity and survival after breast cancer diagnosis: Meta-analysis of published studies. Medical Oncology, 28(3), 753-765..
    Igata, M., Motoshima, H., Tsuruzoe, K., Kojima, K., Matsumura, T., Kondo, T., et al. (2005). Adenosine monophosphate-activated protein kinase suppresses vascular smooth muscle cell proliferation through the inhibition of cell cycle progression. Circulation Research, 97(8), 837-844.
    Imamura, K., Ogura, T., Kishimoto, A., Kaminishi, M., & Esumi, H. (2001). Cell cycle regulation via p53 phosphorylation by a 5'-AMP activated protein kinase activator, 5-aminoimidazole- 4-carboxamide-1-beta-D-ribofuranoside, in a human hepatocellular carcinoma cell line. Biochemical and Biophysical Research Communications, 287(2), 562-567.
    Israel, B. A., & Schaeffer, W. I. (1987). Cytoplasmic suppression of malignancy. In Vitro Cellular and Developmental Biology, 23(9), 627-632.
    Jalving, M., Gietema, J. A., Lefrandt, J. D., de Jong, S., Reyners, A. K., Gans, R. O., et al. (2010). Metformin: Taking away the candy for cancer? European Journal of Cancer, 46(13), 2369-2380.
    Jansen, M., Ten Klooster, J. P., Offerhaus, G. J., & Clevers, H. (2009). LKB1 and AMPK family signaling: The intimate link between cell polarity and energy metabolism. Physiological Reviews, 89(3), 777-798.
    Jeon, J. H., Kim, S. K., Kim, H. J., Chang, J., Ahn, C. M., & Chang, Y. S. (2008). Insulin-like growth factor-1 attenuates cisplatin-induced gammaH2AX formation and DNA double-strand breaks repair pathway in non-small cell lung cancer. Cancer Letters, 272(2), 232-241.
    Jiang, W., Zhu, Z., & Thompson, H. J. (2008). Modulation of the activities of AMP-activated protein kinase, protein kinase B, and mammalian target of rapamycin by limiting energy availability with 2-deoxyglucose. Molecular Carcinogenesis, 47(8), 616-628.
    Jones, L. W., Eves, N. D., Peddle, C. J., Courneya, K. S., Haykowsky, M., Kumar, V., et al. (2009). Effects of presurgical exercise training on systemic inflammatory markers among patients with malignant lung lesions. Applied Physiology, Nutrition, and Metabolism, 34(2), 197-202.
    Jones, L. W., Peppercom, J., Scott, J. M., & Battaglini, C. (2010). Exercise therapy in the management of solid tumors. Current Treatment Options in Oncology, 11(1-2), 45-58.
    Kasymjanova, G., Correa, J. A., Kreisman, H., Dajczman, E., Pepe, C., Dobson, S., et al. (2009). Prognostic value of the six-minute walk in advanced non-small cell lung cancer. Journal of Thoracic Oncology, 4(5), 602-607.
    Kayano, K., Takeo, M., Morisue, S., Yamamoto, M., Mizuno, Y., & Meguro, F. (1995). [A case of human growth hormone (h-GH)-producing adenocarcinoma of the lung]. Journal of the Japanese Association for Thoracic Surgery, 43(4), 538-542.
    Kimball, S. R., Siegfried, B. A., & Jefferson, L. S. (2004). Glucagon represses signaling through the mammalian target of rapamycin in rat liver by activating AMP-activated protein kinase. Journal of Biological Chemistry, 279(52), 54103-54109.
    King, A., Selak, M. A., & Gottlieb, E. (2006). Succinate dehydrogenase and fumarate hydratase: Linking mitochondrial dysfunction and cancer. Oncogene, 25(34), 4675-4682.
    Kisfalvi, K., Eibl, G., Sinnett-Smith, J., & Rozengurt, E. (2009). Metformin disrupts crosstalk between G protein-coupled receptor and insulin receptor signaling systems and inhibits pancreatic cancer growth. Cancer Research, 69(16), 6539-6545.
    Kjaer, M. (1998). Hepatic glucose production during exercise. Advances in Experimental Medicine and Biology, 441, 117-127.
    Knox, W. E., Horowitz, M. L., & Friedell, G. H. (1969). The proportionality of glutaminase content to growth rate and morphology of rat neoplasms. Cancer Research, 29(3), 669-680.
    Koh, H. J., Hirshman, M. F., He, H., Li, Y., Manabe, Y., Balschi, J. A., et al. (2007). Adrenaline is a critical mediator of acute exercise-induced AMP-activated protein kinase activation in adipocytes. Biochemical Journal, 403(3), 473-481.
    Koike, N., Hatori, T., Imaizumi, T., Harada, N., Fukuda, A., Takasaki, K., et al. (2003). Malignant glucagonoma of the pancreas diagnoses through anemia and diabetes mellitus. Journal of Hepato-Biliary-Pancreatic Surgery, 10(1), 101-105.
    Koura, M., Isaka, H., Yoshida, M. C., Tosu, M., & Sekiguchi, T. (1982). Suppression of tumorigenicity in interspecific reconstituted cells and cybrids. Gann, 73(4), 574-580.
    Kroemer, G., & Pouyssegur, J. (2008). Tumor cell metabolism: Cancer's Achilles' heel. Cancer Cell, 13(6), 472-482.
    Krotkiewski, M., Bjorntorp, P., Sjostrom, L., & Smith, U. (1983). Impact of obesity on metabolism in men and women. Importance of regional adipose tissue distribution. Journal of Clinical Investigation, 72(3), 1150-1162.
    Kruk, J., & Aboul-Enein, H. Y. (2006). Physical activity in the prevention of cancer. Asian Pac J Cancer Prev, 7(1), 11-21.
    Kubik, A., Zatloukal, P., Tomasek, L., Dolezal, J., Syllabova, L., Kara, J., et al. (2008). A case-control study of lifestyle and lung cancer associations by histological types. Neoplasma, 55(3), 192-199.
    Kubik, A., Zatloukal, P., Tomasek, L., Pauk, N., Petruzelka, L., & Plesko, I. (2004). Lung cancer risk among nonsmoking women in relation to diet and physical activity. Neoplasma, 51(2), 136-143.
    Kumar, R., Halanaik, D., & Malhotra, A. (2010). Clinical applications of positron emission tomography-computed tomography in oncology. Indian Journal of Cancer, 47(2), 100-119.
    Laderoute, K. R., Amin, K., Calaoagan, J. M., Knapp, M., Le, T., Orduna, J., et al. (2006). 5'-AMP-activated protein kinase (AMPK) is induced by low-oxygen and glucose deprivation conditions found in solid-tumor microenvironments. Molecular and Cellular Biology, 26(14), 5336-5347.
    Lage, R., Dieguez, C., Vidal-Puig, A., & Lopez, M. (2008). AMPK: A metabolic gauge regulating whole-body energy homeostasis. Trends in Molecular Medicine, 14(12), 539-549.
    Laukkanen, J. A., Rauramaa, R., Makikallio, T. H., Toriola, A. T., & Kurl, S. (2009). Intensity of leisure-time physical activity and cancer mortality in men. British Journal of Sports Medicine, 45(2), 125-129..
    LeBrasseur, N. K., Kelly, M., Tsao, T. S., Farmer, S. R., Saha, A. K., Ruderman, N. B., et al. (2006). Thiazolidinediones can rapidly activate AMP-activated protein kinase in mammalian tissues. American Journal of Physiology Endocrinology and Metabolism, 291(1), E175-181.
    Lechin, F., van der Dijs, B., Lechin, A. E., Multhoff, G., Pfister, K., Hromadnikova, I., et al. (2004). Natural killer cells activity and neuroimmunological treatment of cancer. Clinical Cancer Research, 10(23), 8120-8121.
    Lee, I. M. (2003). Physical activity and cancer prevention--data from epidemiologic studies. Medicine & Science in Sports & Exercise, 35(11), 1823-1827.
    Lee, I. M., Sesso, H. D., & Paffenbarger, R. S., Jr. (1999). Physical activity and risk of lung cancer. International Journal of Epidemiology, 28(4), 620-625.
    Leitzmann, M. F., Koebnick, C., Abnet, C. C., Freedman, N. D., Park, Y., Hollenbeck, A., et al. (2009). Prospective study of physical activity and lung cancer by histologic type in current, former, and never smokers. American Journal of Epidemiology, 169(5), 542-553.
    Li, J., & McCullough, L. D. (2010). Effects of AMP-activated protein kinase in cerebral ischemia. Journal of Cerebral Blood Flow and Metabolism, 30(3), 480-492.
    Liang, J., Shao, S. H., Xu, Z. X., Hennessy, B., Ding, Z., Larrea, M., et al. (2007). The energy sensing LKB1-AMPK pathway regulates p27(kip1) phosphorylation mediating the decision to enter autophagy or apoptosis. Nature Cell Biology, 9(2), 218-224.
    Libby, G., Donnelly, L. A., Donnan, P. T., Alessi, D. R., Morris, A. D., & Evans, J. M. (2009). New users of metformin are at low risk of incident cancer: A cohort study among people with type 2 diabetes. Diabetes Care, 32(9), 1620-1625.
    Lim, C. T., Kola, B., & Korbonits, M. (2010). AMPK as a mediator of hormonal signalling. Journal of Molecular Endocrinology, 44(2), 87-97.
    Linder-Horowitz, M., Knox, W. E., & Morris, H. P. (1969). Glutaminase activities and growth rates of rat hepatomas. Cancer Research, 29(6), 1195-1199.
    Lobo, C., Ruiz-Bellido, M. A., Aledo, J. C., Marquez, J., Nunez De Castro, I., & Alonso, F. J. (2000). Inhibition of glutaminase expression by antisense mRNA decreases growth and tumourigenicity of tumour cells. Biochemical Journal, 348 Pt 2, 257-261.
    Luctkar-Flude, M., Groll, D., Woodend, K., & Tranmer, J. (2009). Fatigue and physical activity in older patients with cancer: A six-month follow-up study. Oncology Nursing Forum, 36(2), 194-202.
    Luo, Z., Saha, A. K., Xiang, X., & Ruderman, N. B. (2005). AMPK, the metabolic syndrome and cancer. Trends in Pharmacological Sciences, 26(2), 69-76.
    Luo, Z., Zang, M., & Guo, W. (2010). AMPK as a metabolic tumor suppressor: control of metabolism and cell growth. Future Oncology, 6(3), 457-470.
    MacNeil, B., & Hoffman-Goetz, L. (1993a). Effect of exercise on natural cytotoxicity and pulmonary tumor metastases in mice. Medicine & Science in Sports & Exercise, 25(8), 922-928.
    MacNeil, B., & Hoffman-Goetz, L. (1993b). Exercise training and tumour metastasis in mice: Influence of time of exercise onset. Anticancer Research, 13(6A), 2085-2088.
    Magkos, F., Wang, X., & Mittendorfer, B. (2010). Metabolic actions of insulin in men and women. Nutrition, 26(7-8), 686-693.
    Mao, Y., Pan, S., Wen, S. W., & Johnson, K. C. (2003). Physical activity and the risk of lung cancer in Canada. American Journal of Epidemiology, 158(6), 564-575.
    Mazzeo, R. S. (1991). Catecholamine responses to acute and chronic exercise. Medicine & Science in Sports & Exercise, 23(7), 839-845.
    McBride, D. (2010). ACSM releases new guidelines for physical activity for patients with cancer. Oncology Nursing Society Connect, 25(9), 16.
    McGee, S. L., & Hargreaves, M. (2006). Exercise and skeletal muscle glucose transporter 4 expression: Molecular mechanisms. Clinical and Experimental Pharmacology and Physiology, 33(4), 395-399.
    McMurray, R. G., & Hackney, A. C. (2005). Interactions of metabolic hormones, adipose tissue and exercise. Sports Medicine, 35(5), 393-412.
    Mehl, K. A., Davis, J. M., Clements, J. M., Berger, F. G., Pena, M. M., & Carson, J. A. (2005). Decreased intestinal polyp multiplicity is related to exercise mode and gender in ApcMin/+ mice. Journal of Applied Physiology, 98(6), 2219-2225.
    Memmott, R. M., & Dennis, P. A. (2009). Akt-dependent and -independent mechanisms of mTOR regulation in cancer. Cellular Signalling, 21(5), 656-664.
    Memmott, R. M., Gills, J. J., Hollingshead, M., Powers, M. C., Chen, Z., Kemp, B., et al. (2008). Phosphatidylinositol ether lipid analogues induce AMP-activated protein kinase-dependent death in LKB1-mutant non small cell lung cancer cells. Cancer Research, 68(2), 580-588.
    Memmott, R. M., Mercado, J. R., Maier, C. R., Kawabata, S., Fox, S. D., & Dennis, P. A. (2010). Metformin prevents tobacco carcinogen--induced lung tumorigenesis. Cancer Prevention Research, 3(9), 1066-1076.
    Meyerhardt, J. A., Ogino, S., Kirkner, G. J., Chan, A. T., Wolpin, B., Ng, K., et al. (2009). Interaction of molecular markers and physical activity on mortality in patients with colon cancer. Clinical Cancer Research, 15(18), 5931-5936.
    Mirouse, V., Swick, L. L., Kazgan, N., St Johnston, D., & Brenman, J. E. (2007). LKB1 and AMPK maintain epithelial cell polarity under energetic stress. Journal of Cell Biology, 177(3), 387-392.
    Moller, N., & Jorgensen, J. O. (2009). Effects of growth hormone on glucose, lipid, and protein metabolism in human subjects. Endocrine Reviews, 30(2), 152-177.
    Moreno-Sanchez, R., Rodriguez-Enriquez, S., Marin-Hernandez, A., & Saavedra, E. (2007). Energy metabolism in tumor cells. The FEBS Journal, 274(6), 1393-1418.
    Motoshima, H., Goldstein, B. J., Igata, M., & Araki, E. (2006). AMPK and cell proliferation--AMPK as a therapeutic target for atherosclerosis and cancer. The Journal of Physiology, 574(Pt 1), 63-71.
    Murphy, E. A., Davis, J. M., Brown, A. S., Carmichael, M. D., Mayer, E. P., & Ghaffar, A. (2004). Effects of moderate exercise and oat beta-glucan on lung tumor metastases and macrophage antitumor cytotoxicity. Journal of Applied Physiology, 97(3), 955-959.
    Nagata, D., & Hirata, Y. (2010). The role of AMP-activated protein kinase in the cardiovascular system. Hypertension Research, 33(1), 22-28.
    Neff, M. J. (2004). ACS releases guidelines on nutrition and physical activity during and after cancer treatment. American Family Physician, 69(7), 1803-1805.
    Park, H. U., Suy, S., Danner, M., Dailey, V., Zhang, Y., Li, H., et al. (2009). AMP-activated protein kinase promotes human prostate cancer cell growth and survival. Molecular Cancer Therapeutics, 8(4), 733-741.
    Pathania, D., Millard, M., & Neamati, N. (2009). Opportunities in discovery and delivery of anticancer drugs targeting mitochondria and cancer cell metabolism. Advanced Drug Delivery Reviews, 61(14), 1250-1275.
    Pelicano, H., Martin, D. S., Xu, R. H., & Huang, P. (2006). Glycolysis inhibition for anticancer treatment. Oncogene, 25(34), 4633-4646.
    Petros, J. A., Baumann, A. K., Ruiz-Pesini, E., Amin, M. B., Sun, C. Q., Hall, J., et al. (2005). mtDNA mutations increase tumorigenicity in prostate cancer. Proceedings of the National Academy of Sciences of the United States of America, 102(3), 719-724.
    Pollard, P. J., Spencer-Dene, B., Shukla, D., Howarth, K., Nye, E., El-Bahrawy, M., et al. (2007). Targeted inactivation of fh1 causes proliferative renal cyst development and activation of the hypoxia pathway. Cancer Cell, 11(4), 311-319.
    Qin, Y., & Tian, Y. P. (2010). Exploring the molecular mechanisms underlying the potentiation of exogenous growth hormone on alcohol-induced fatty liver diseases in mice. Journal of Translational Medicine, 8, 120.
    Radak, Z., Gaal, D., Taylor, A. W., Kaneko, T., Tahara, S., Nakamoto, H., et al. (2002). Attenuation of the development of murine solid leukemia tumor by physical exercise. Antioxidants and Redox Signaling, 4(1), 213-219.
    Rajarajeswaran, P., & Vishnupriya, R. (2009). Exercise in cancer. Indian Journal of Medical and Paediatric Oncology, 30(2), 61-70.
    Rattan, R., Giri, S., Singh, A. K., & Singh, I. (2005). 5-Aminoimidazole-4-carboxamide-1-beta-D-ribofuranoside inhibits cancer cell proliferation in vitro and in vivo via AMP-activated protein kinase. Journal of Biological Chemistry, 280(47), 39582-39593.
    Richter, E. A., & Ruderman, N. B. (2009). AMPK and the biochemistry of exercise: Implications for human health and disease. Biochemical Journal, 418(2), 261-275.
    Rivera, N., Ramnanan, C. J., An, Z., Farmer, T., Smith, M., Farmer, B., et al. (2010). Insulin-induced hypoglycemia increases hepatic sensitivity to glucagon in dogs. Journal of Clinical Investigation, 120(12), 4425-4435.
    Rodriguez-Enriquez, S., Vital-Gonzalez, P. A., Flores-Rodriguez, F. L., Marin-Hernandez, A., Ruiz-Azuara, L., & Moreno-Sanchez, R. (2006). Control of cellular proliferation by modulation of oxidative phosphorylation in human and rodent fast-growing tumor cells. Toxicology and Applied Pharmacology, 215(2), 208-217.
    Rossignol, R., Gilkerson, R., Aggeler, R., Yamagata, K., Remington, S. J., & Capaldi, R. A. (2004). Energy substrate modulates mitochondrial structure and oxidative capacity in cancer cells. Cancer Research, 64(3), 985-993.
    Sanders, M. J., Grondin, P. O., Hegarty, B. D., Snowden, M. A., & Carling, D. (2007). Investigating the mechanism for AMP activation of the AMP-activated protein kinase cascade. Biochemical Journal, 403(1), 139-148.
    Scatena, R., Bottoni, P., Pontoglio, A., Mastrototaro, L., & Giardina, B. (2008). Glycolytic enzyme inhibitors in cancer treatment. Expert Opinion on Investigational Drugs, 17(10), 1533-1545.
    Schimmack, G., Defronzo, R. A., & Musi, N. (2006). AMP-activated protein kinase: Role in metabolism and therapeutic implications. Diabetes, Obesity and Metabolism, 8(6), 591-602.
    Schmitz, K. H., Courneya, K. S., Matthews, C., Demark-Wahnefried, W., Galvao, D. A., Pinto, B. M., et al. (2010). American College of Sports Medicine roundtable on exercise guidelines for cancer survivors. Medicine & Science in Sports & Exercise, 42(7), 1409-1426.
    Schneider, M. B., Matsuzaki, H., Haorah, J., Ulrich, A., Standop, J., Ding, X. Z., et al. (2001). Prevention of pancreatic cancer induction in hamsters by metformin. Gastroenterology, 120(5), 1263-1270.
    Selak, M. A., Armour, S. M., MacKenzie, E. D., Boulahbel, H., Watson, D. G., Mansfield, K. D., et al. (2005). Succinate links TCA cycle dysfunction to oncogenesis by inhibiting HIF-alpha prolyl hydroxylase. Cancer Cell, 7(1), 77-85.
    Semenza, G. L. (2003). Targeting HIF-1 for cancer therapy. Nature Reviews. Cancer, 3(10), 721-732.
    Seyfried, T. N., & Shelton, L. M. (2010). Cancer as a metabolic disease. Nutrition and Metabolism, 7, 7.
    Shackelford, D. B., & Shaw, R. J. (2009). The LKB1-AMPK pathway: Metabolism and growth control in tumour suppression. Nature Reviews. Cancer, 9(8), 563-575.
    Shaw, R. J. (2006). Glucose metabolism and cancer. Current Opinion in Cell Biology, 18(6), 598-608.
    Shay, J. W., Lorkowski, G., & Clark, M. A. (1981). Suppression of tumorigenicity in cybrids. Journal of Supramolecular Structure and Cellular Biochemistry, 16(1), 75-82.
    Shibahara, J., Goto, A., Niki, T., Tanaka, M., Nakajima, J., & Fukayama, M. (2004). Primary pulmonary paraganglioma: Report of a functioning case with immunohistochemical and ultrastructural study. American Journal of Surgical Pathology, 28(6), 825-829.
    Sinner, P., Folsom, A. R., Harnack, L., Eberly, L. E., & Schmitz, K. H. (2006). The association of physical activity with lung cancer incidence in a cohort of older women: The Iowa Women's Health Study. Cancer Epidemiology, Biomarkers and Prevention, 15(12), 2359-2363.
    Sonveaux, P., Vegran, F., Schroeder, T., Wergin, M. C., Verrax, J., Rabbani, Z. N., et al. (2008). Targeting lactate-fueled respiration selectively kills hypoxic tumor cells in mice. Journal of Clinical Investigation, 118(12), 3930-3942.
    Spruit, M. A., Janssen, P. P., Willemsen, S. C., Hochstenbag, M. M., & Wouters, E. F. (2006). Exercise capacity before and after an 8-week multidisciplinary inpatient rehabilitation program in lung cancer patients: a pilot study. Lung Cancer, 52(2), 257-260.
    Steenland, K., Nowlin, S., & Palu, S. (1995). Cancer incidence in the National Health and Nutrition Survey I. Follow-up data: diabetes, cholesterol, pulse and physical activity. Cancer Epidemiology, Biomarkers and Prevention, 4(8), 807-811.
    Su, M. Y., Hsieh, S. Y., Lee, Y. R., Chang, M. C., Yuan, T. T., & Chang, J. M. (2010). The relationship between energy status and AMP-activated protein kinase in human H460 lung cancer cells. Cell Biochemistry and Function, 28(7), 549-554.
    Swinnen, J. V., Beckers, A., Brusselmans, K., Organe, S., Segers, J., Timmermans, L., et al. (2005). Mimicry of a cellular low energy status blocks tumor cell anabolism and suppresses the malignant phenotype. Cancer Research, 65(6), 2441-2448.
    Tardon, A., Lee, W. J., Delgado-Rodriguez, M., Dosemeci, M., Albanes, D., Hoover, R., et al. (2005). Leisure-time physical activity and lung cancer: A meta-analysis. Cancer Causes and Control, 16(4), 389-397.
    Thaker, P. H., Han, L. Y., Kamat, A. A., Arevalo, J. M., Takahashi, R., Lu, C., et al. (2006). Chronic stress promotes tumor growth and angiogenesis in a mouse model of ovarian carcinoma. Nature Medicine, 12(8), 939-944.
    Thornton, J. R. (1985). Hormonal responses to exercise and training. Veterinary Clinics of North America. Equine Practice, 1(3), 477-496.
    Thune, I., & Lund, E. (1997). The influence of physical activity on lung-cancer risk: A prospective study of 81,516 men and women. International Journal of Cancer, 70(1), 57-62.
    Tong, X., Zhao, F., & Thompson, C. B. (2009). The molecular determinants of de novo nucleotide biosynthesis in cancer cells. Current Opinion in Genetics & Development, 19(1), 32-37.
    Vazquez-Martin, A., Oliveras-Ferraros, C., Cufi, S., Del Barco, S., Martin-Castillo, B., Lopez-Bonet, E., et al. (2011). The anti-diabetic drug metformin suppresses the metastasis-associated protein CD24 in MDA-MB-468 triple-negative breast cancer cells. Oncology Reports, 25(1), 135-140.
    Wan, Z., Thrush, A. B., Legare, M., Frier, B. C., Sutherland, L. N., Williams, D. B., et al. (2010). Epinephrine-mediated regulation of PDK4 mRNA in rat adipose tissue. American Journal of Physiology Cell Physiology, 299(5), C1162-1170.
    Wang, J. B., Erickson, J. W., Fuji, R., Ramachandran, S., Gao, P., Dinavahi, R., et al. (2010). Targeting mitochondrial glutaminase activity inhibits oncogenic transformation. Cancer Cell, 18(3), 207-219.
    Wang, W., & Guan, K. L. (2009). AMP-activated protein kinase and cancer. Acta Physiologica, 196(1), 55-63.
    Warburg, O., Wind, F., & Negelein, E. (1927). The metabolism of tumors in the body. Journal of General Physiology, 8(6), 519-530.
    Westerlind, K. C. (2003). Physical activity and cancer prevention--mechanisms. Medicine & Science in Sports & Exercise, 35(11), 1834-1840.
    Wigfield, S. M., Winter, S. C., Giatromanolaki, A., Taylor, J., Koukourakis, M. L., & Harris, A. L. (2008). PDK-1 regulates lactate production in hypoxia and is associated with poor prognosis in head and neck squamous cancer. British Journal of Cancer, 98(12), 1975-1984.
    Win, T., Jackson, A., Groves, A. M., Sharples, L. D., Charman, S. C., & Laroche, C. M. (2006). Comparison of shuttle walk with measured peak oxygen consumption in patients with operable lung cancer. Thorax, 61(1), 57-60.
    Wise, D. R., DeBerardinis, R. J., Mancuso, A., Sayed, N., Zhang, X. Y., Pfeiffer, H. K., et al. (2008). Myc regulates a transcriptional program that stimulates mitochondrial glutaminolysis and leads to glutamine addiction. Proceedings of the National Academy of Sciences of the United States of America, 105(48), 18782-18787.
    Wong, A. K., Howie, J., Petrie, J. R., & Lang, C. C. (2009). AMP-activated protein kinase pathway: a potential therapeutic target in cardiometabolic disease. Clinical Science, 116(8), 607-620.
    Wong, H. P., Ho, J. W., Koo, M. W., Yu, L., Wu, W. K., Lam, E. K., et al. (2011). Effects of adrenaline in human colon adenocarcinoma HT-29 cells. Life Sciences, 88(25-26), 1108-1112.
    Woodard, J., Joshi, S., Viollet, B., Hay, N., & Platanias, L. C. (2010). AMPK as a therapeutic target in renal cell carcinoma. Cancer Biology and Therapy, 10(11).
    Yabaluri, N., & Bashyam, M. D. (2010). Hormonal regulation of gluconeogenic gene transcription in the liver. Journal Biosciences, 35(3), 473-484.
    Young, A. (2005). Inhibition of glucagon secretion. Advances in Pharmacology, 52, 151-171.
    Yu, S. Y., Chan, D. W., Liu, V. W., & Ngan, H. Y. (2009). Inhibition of cervical cancer cell growth through activation of upstream kinases of AMP-activated protein kinase. Tumour Biology, 30(2), 80-85.
    Yun, Y. H., Lim, M. K., Won, Y. J., Park, S. M., Chang, Y. J., Oh, S. W., et al. (2008). Dietary preference, physical activity, and cancer risk in men: national health insurance corporation study. BioMed Central Cancer, 8, 366.
    Zakikhani, M., Dowling, R., Fantus, I. G., Sonenberg, N., & Pollak, M. (2006). Metformin is an AMP kinase-dependent growth inhibitor for breast cancer cells. Cancer Research, 66(21), 10269-10273.
    Zakikhani, M., Dowling, R. J., Sonenberg, N., & Pollak, M. N. (2008). The effects of adiponectin and metformin on prostate and colon neoplasia involve activation of AMP-activated protein kinase. Cancer Prevention Research, 1(5), 369-375.
    Zouhal, H., Jacob, C., Delamarche, P., & Gratas-Delamarche, A. (2008). Catecholamines and the effects of exercise, training and gender. Sports Medicine, 38(5), 401-423.
    Zu, X. L., & Guppy, M. (2004). Cancer metabolism: facts, fantasy, and fiction. Biochemical and Biophysical Research Communications, 313(3), 459-465.

    二、研究報告
    U. S. National Institutes of Health. (2010). Metformin Combined With Chemotherapy for Pancreatic Cancer (GEM) (No. NCT01210911). Retrieved from http://clinicaltrials.gov/ct2/results?term=NCT01210911.
    U. S. National Institutes of Health. (2009). Metformin Pre-Surgical Pilot Study (No. NCT00930579). Retrieved from http://clinicaltrials.gov/ct2/results?term=NCT00930579
    U. S. National Institutes of Health. (2009). A Study of Pre-operative Metformin in Prostate Cancer (No. NCT00881725). Retrieved from http://clinicaltrials.gov/ct2/results?term=NCT00881725

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