|
1. Kindt, T. J., Goldsby, R. A., Osborne, B. A., &; Kuby, J. (2007). Kuby immunology. Macmillan. 2. Fairey, A. S., Courneya, K. S., Field, C. J., &; Mackey, J. R. (2002). Physical exercise and immune system function in cancer survivors. Cancer, 94(2), 539-551. 3. Keast, D., Cameron, K., &; Morton, A. R. (1988). Exercise and the immune response. Sports Medicine, 5(4), 248-267. 4. Grubeck-Loebenstein, B., Della Bella, S., Iorio, A. M., Michel, J. P., Pawelec, G., &; Solana, R. (2009). Immunosenescence and vaccine failure in the elderly.Aging clinical and experimental research, 21(3), 201-209. 5. Pawelec, G. (2007). Immunosenescence comes of age. EMBO reports, 8(3), 220-223. 6. Spaulding, W. D., Reed, D., Sullivan, M., Richardson, C., &; Weiler, M. (1999). Effects of cognitive treatment in psychiatric rehabilitation. Schizophrenia bulletin, 25(4), 657. 7. Förster, R., Davalos-Misslitz, A. C., &; Rot, A. (2008). CCR7 and its ligands: balancing immunity and tolerance. Nature Reviews Immunology, 8(5), 362-371. 8. MacIver, N. J., Michalek, R. D., &; Rathmell, J. C. (2013). Metabolic regulation of T lymphocytes. Annual review of immunology, 31, 259. 9. Vander Heiden, M. G., Cantley, L. C., &; Thompson, C. B. (2009). Understanding the Warburg effect: the metabolic requirements of cell proliferation. science, 324(5930), 1029-1033. 10. Windt, G. J., &; Pearce, E. L. (2012). Metabolic switching and fuel choice during T‐cell differentiation and memory development. Immunological reviews, 249(1), 27-42. 11. Moholdt, T. T., Amundsen, B. H., Rustad, L. A., Wahba, A., Løvø, K. T., Gullikstad, L. R., ... &; Slørdahl, S. A. (2009). Aerobic interval training versus continuous moderate exercise after coronary artery bypass surgery: a randomized study of cardiovascular effects and quality of life. American heart journal, 158(6), 1031-1037. 12. Tjønna, A. E., Lee, S. J., Rognmo, Ø., Stølen, T. O., Bye, A., Haram, P. M., ... &; Wisløff, U. (2008). Aerobic Interval Training Versus Continuous Moderate Exercise as a Treatment for the Metabolic Syndrome A Pilot Study. Circulation,118(4), 346-354. 13. Van Hall, G., Lundby, C., Araoz, M., Calbet, J. A., Sander, M., &; Saltin, B. (2009). The lactate paradox revisited in lowlanders during acclimatization to 4100 m and in high‐altitude natives. The Journal of physiology, 587(5), 1117-1129. 14. Wang, J. S., Cheng, M. L., Yen, H. C., Lou, B. S., &; Liu, H. C. (2009). Vitamin E suppresses enhancement of factor VIII-dependent thrombin generation by systemic hypoxia. Stroke, 40(2), 656-659. 15. Weng, T. P., Huang, S. C., Chuang, Y. F., &; Wang, J. S. (2013). Effects of interval and continuous exercise training on CD4 lymphocyte apoptotic and autophagic responses to hypoxic stress in sedentary men. 16. Campbell, J. P., Riddell, N. E., Burns, V. E., Turner, M., van Zanten, J. J. V., Drayson, M. T., &; Bosch, J. A. (2009). Acute exercise mobilises CD8+ T lymphocytes exhibiting an effector-memory phenotype. Brain, behavior, and immunity, 23(6), 767-775. 17. Simpson, R. J., Florida-James, G. D., Cosgrove, C., Whyte, G. P., Macrae, S., Pircher, H., &; Guy, K. (2007). High-intensity exercise elicits the mobilization of senescent T lymphocytes into the peripheral blood compartment in human subjects. Journal of Applied Physiology, 103(1), 396-401. 18. Pham, T. H., Okada, T., Matloubian, M., Lo, C. G., &; Cyster, J. G. (2008). S1P 1 receptor signaling overrides retention mediated by Gα i-coupled receptors to promote T cell egress. Immunity, 28(1), 122-133. 19. Wisløff, U., Støylen, A., Loennechen, J. P., Bruvold, M., Rognmo, Ø., Haram, P. M., ... &; Skjærpe, T. (2007). Superior cardiovascular effect of aerobic interval training versus moderate continuous training in heart failure patients a randomized study. Circulation, 115(24), 3086-3094. 20. Slørdahl, S. A., Wang, E., Hoff, J., Kemi, O. J., Amundsen, B. H., &; Helgerud, J. (2005). Effective training for patients with intermittent claudication. Scandinavian Cardiovascular Journal, 39(4), 244-249. 21. Wang, J. S., Chen, W. L., &; Weng, T. P. (2011). Hypoxic exercise training reduces senescent T-lymphocyte subsets in blood. Brain, behavior, and immunity, 25(2), 270-278. 22. Green, K. J., Rowbottom, D. G., &; Mackinnon, L. T. (2003). Acute exercise and T-lymphocyte expression of the early activation marker CD69. Medicine and science in sports and exercise, 35(4), 582-588. 23. Greiner, E. F., Guppy, M., &; Brand, K. (1994). Glucose is essential for proliferation and the glycolytic enzyme induction that provokes a transition to glycolytic energy production. Journal of Biological Chemistry, 269(50), 31484-31490. 24. Simpson, R. J., Cosgrove, C., Ingram, L. A., Florida-James, G. D., Whyte, G. P., Pircher, H., &; Guy, K. (2008). Senescent T-lymphocytes are mobilised into the peripheral blood compartment in young and older humans after exhaustive exercise. Brain, behavior, and immunity, 22(4), 544-551. 25. Frauwirth, K. A., Riley, J. L., Harris, M. H., Parry, R. V., Rathmell, J. C., Plas, D. R., ... &; Thompson, C. B. (2002). The CD28 signaling pathway regulates glucose metabolism. Immunity, 16(6), 769-777. 26. Williams, M. S., &; Kwon, J. (2004). T cell receptor stimulation, reactive oxygen species, and cell signaling. Free Radical Biology and Medicine, 37(8), 1144-1151. 27. Jackson, S. H., Devadas, S., Kwon, J., Pinto, L. A., &; Williams, M. S. (2004). T cells express a phagocyte-type NADPH oxidase that is activated after T cell receptor stimulation. Nature immunology, 5(8), 818-827. 28. Chaudhri, G. E. E. T. A., Clark, I. A., Hunt, N. H., Cowden, W. B., &; Ceredig, R. (1986). Effect of antioxidants on primary alloantigen-induced T cell activation and proliferation. The Journal of Immunology, 137(8), 2646-2652. 29. Wang, R., Dillon, C. P., Shi, L. Z., Milasta, S., Carter, R., Finkelstein, D., ... &; Green, D. R. (2011). The transcription factor Myc controls metabolic reprogramming upon T lymphocyte activation. Immunity, 35(6), 871-882. 30. Pearce, E. L., Poffenberger, M. C., Chang, C. H., &; Jones, R. G. (2013). Fueling immunity: insights into metabolism and lymphocyte function. Science,342(6155), 1242454. 31. Devadas, S., Zaritskaya, L., Rhee, S. G., Oberley, L., &; Williams, M. S. (2002). Discrete Generation of Superoxide and Hydrogen Peroxide by T Cell Receptor Stimulation Selective Regulation of Mitogen-Activated Protein Kinase Activation and Fas Ligand Expression. The Journal of experimental medicine, 195(1), 59-70. 32. Wang, R., Dillon, C. P., Shi, L. Z., Milasta, S., Carter, R., Finkelstein, D., ... &; Green, D. R. (2011). The transcription factor Myc controls metabolic reprogramming upon T lymphocyte activation. Immunity, 35(6), 871-882. 33. Li, Y., &; Trush, M. A. (1998). Diphenyleneiodonium, an NAD (P) H oxidase inhibitor, also potently inhibits mitochondrial reactive oxygen species production. Biochemical and biophysical research communications, 253(2), 295-299. 34. Bruunsgaard, H., Jensen, M. S., Schjerling, P., Halkjær-Kristensen, J., Ogawa, K., Skinhøj, P., &; Pedersen, B. K. (1999). Exercise induces recruitment of lymphocytes with an activated phenotype and short telomeres in young and elderly humans. Life sciences, 65(24), 2623-2633. 35. Green, K. J., Rowbottom, D. G., &; Mackinnon, L. T. (2002). Exercise and T-lymphocyte function: a comparison of proliferation in PBMC and NK cell-depleted PBMC culture. Journal of Applied Physiology, 92(6), 2390-2395. 36. Nieman, D. C., Miller, A. R., Henson, D. A., Warren, B. J., Gusewitch, G., Johnson, R. L., ... &; Nehlsen-Cannarella, S. L. (1994). Effect of high-versus moderate-intensity exercise on lymphocyte subpopulations and proliferative response. International journal of sports medicine, 15(4), 199-206. 37. Nieman, D. C., Henson, D. A., McAnulty, S. R., McAnulty, L., Swick, N. S., Utter, A. C., ... &; Morrow, J. D. (2002). Influence of vitamin C supplementation on oxidative and immune changes after an ultramarathon. Journal of Applied Physiology, 92(5), 1970-1977. 38. Bankovich, A. J., Shiow, L. R., &; Cyster, J. G. (2010). CD69 suppresses sphingosine 1-phosophate receptor-1 (S1P1) function through interaction with membrane helix 4. Journal of Biological Chemistry, 285(29), 22328-22337. 39. Sebzda, E., Zou, Z., Lee, J. S., Wang, T., &; Kahn, M. L. (2008). Transcription factor KLF2 regulates the migration of naive T cells by restricting chemokine receptor expression patterns. Nature immunology, 9(3), 292-300. 40. Islam, S. A., &; Luster, A. D. (2012). T cell homing to epithelial barriers in allergic disease. Nature medicine, 18(5), 705-715. 41. Cyster, J. G. (2005). Chemokines, sphingosine-1-phosphate, and cell migration in secondary lymphoid organs. Annu. Rev. Immunol., 23, 127-159. 42. Okkenhaug, K., Wu, L., Garza, K. M., La Rose, J., Khoo, W., Odermatt, B., ... &; Rottapel, R. (2001). A point mutation in CD28 distinguishes proliferative signals from survival signals. Nature immunology, 2(4), 325-332. 43. Wood, K. L., Twigg III, H. L., &; Doseff, A. I. (2009). Dysregulation of CD8+ lymphocyte apoptosis, chronic disease, and immune regulation. Frontiers in bioscience: a journal and virtual library, 14, 3771. 44. Brenchley, J. M., Karandikar, N. J., Betts, M. R., Ambrozak, D. R., Hill, B. J., Crotty, L. E., ... &; Koup, R. A. (2003). Expression of CD57 defines replicative senescence and antigen-induced apoptotic death of CD8+ T cells. Blood,101(7), 2711-2720. 45. Focosi, D., Bestagno, M., Burrone, O., &; Petrini, M. (2010). CD57+ T lymphocytes and functional immune deficiency. Journal of leukocyte biology,87(1), 107-116. 46. Andersen, M. H., Schrama, D., thor Straten, P., &; Becker, J. C. (2006). Cytotoxic T cells. Journal of investigative dermatology, 126(1), 32-41.
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