Sinh học thời gian và ảnh hưởng của tuổi tác lên chức năng miễn dịch: Nền tảng dinh dưỡng và di truyền

Veterinary Research Communications - Tập 31 - Trang 109-113 - 2007
E. Mocchegiani1, R. Giacconi1, C. Cipriano1, M. Malavolta1
1Italian National Research Centres on Ageing (INRCA), Research Department, Section: Nutrigenomic and Immunosenescence, Ancona, Italy

Tóm tắt

Mocchegiani, E., Giacconi, R., Cipriano, C. và Malavolta, M., 2007. Sinh học thời gian và ảnh hưởng của tuổi tác lên chức năng miễn dịch: Nền tảng dinh dưỡng và di truyền. Tạp chí Nghiên cứu Thú y, 31(Suppl. 1), 109–113

Từ khóa

#sinh học thời gian #chức năng miễn dịch #tuổi tác #dinh dưỡng #di truyền

Tài liệu tham khảo

Abo T., Kawamura T. and Watanabe H., 2000. Physiological responses of extrathymic T cells in the liver. Immunology Review, 174, 135–149 Aravindakumar C.T., Ceulemans J. and De Ley M., 1999. Nitric oxide induces Zn2+ release from metallothionein by destroying zinc-sulphur clusters without concomitant formation of S-nitrosothiol. Biochemistry Journal, 344(Pt1), 253–258 Cipriano C., Malavolta M., Costarelli L., Giacconi R., Muti E., Gasparini N., Cardelli M., Monti D., Mariani E. and Mocchegiani E., 2006. Polymorphisms in MT1a gene coding region are associated with longevity in Italian Central female population. Biogerontology, 7(5–6), 357–365 Giacconi R., Cipriano C., Albanese F., Boccoli G., Saba V., Olivieri F., Franceschi C. and Mocchegiani E., 2004. The −174G/C polymorphism of IL-6 is useful to screen old subjects at risk for atherosclerosis or to reach successful ageing. Experimental Gerontology, 39(4), 621–628 Hadden J.W., Malec P.H., Coto J. and Hadden E.M., 1992. Thymic involution in aging. Prospects for correction. Annals New York Academy of Science, 673, 231–239 Leppard J.B., Dong Z., Mackey Z.B. and Tomkinson A.E., 2003. Physical and functional interaction between DNA ligase IIIalpha and poly(ADP-Ribose) polymerase 1 in DNA single-strand break repair. Molecular Cell Biology, 23(16), 5919–5927 Mocchegiani E., Muzzioli M., Cipriano C. and Giacconi R., 1998a. Zinc, T-cell pathways, aging: role of metallothioneins. Mechanisms of Ageing and Development, 106(1–2), 183–204 Mocchegiani E., Santarelli L., Tibaldi A., Muzzioli M., Bulian D., Cipriano K., Olivieri F. and Fabris N., 1998b. Presence of links between zinc and melatonin during the circadian cycle in old mice: effects on thymic endocrine activity and on the survival. Journal of Neuroimmunology, 86(2), 111–122 Mocchegiani E., Giacconi R., Cipriano C., Gasparini N., Bernardini G., Malavolta M., Menegazzi M., Cavalieri E., Muzzioli M., Ciampa A.R. and Suzuki H., 2004. The variations during the circadian cycle of liver CD1d-unrestricted NK1.1+TCR gamma/delta+ cells lead to successful ageing. Role of metallothionein/IL-6/gp130/PARP-1 interplay in very old mice. Experimental Gerontology, 39(5), 775–788 Mocchegiani E., Santarelli L., Costarelli L., Cipriano C., Muti E., Giacconi R. and Malavolta M., 2006. Plasticity of neuroendocrine-thymus interactions during ontogeny and ageing: Role of zinc and arginine. Ageing Research Review, 5(3), 281–309 Moldofsky H.J., 1994. Central nervous system and peripheral immune functions and the sleep-wake system. Psychiatry and Neuroscience, 19(5), 368–374 Sato M., Yamaki J., Hamaya M. and Hojo H., 1996. Synergistic induction of metallothionein synthesis by interleukin-6, dexamethasone and zinc in the rat. International Journal of Immunopharmacology, 18(2), 167–172 Williams P.D. and Day T., 2003. Antagonistic pleiotropy, mortality source interactions, and the evolutionary theory of senescence. Evolution International Journal of Organism Evolution, 57(7), 1478–1488