[177] Lecomte V.J., Sorci G., Cornet S., Jaeger A., Faivre B., Arnoux E., Gaillard M., Trouve C., Besson D., Chastel O., Weimerskirch H. (2010) Patterns of aging in the long-lived wandering albatross.
[178] Ledesma-Osuna A.I., Ramos-Clamont G., Vazquez-Moreno L. (2008) Characterization of bovine serum albumin glycated with glucose, galactose and lactose.
[179] Lee H.Y., Choi C.S., Birkenfeld A.L., Alves T.C., Jornayvaz F.R., Jurczak M.J., Zhang D., Woo D.K., Shadel G.S., Ladiges W., Rabinovitch P.S., Santos J.H., Petersen K.F., Samuel V.T., Shulman G.I. (2010) Targeted expression of catalase to mitochondria prevents age-associated reductions in mitochondrial function and insulin resistance.
[180] Lehmann G., Segal E., Muradian K.K., Fraifeld V.E. (2008) Do mitochondrial DNA and metabolic rate complement each other in determination of the mammalian maximum longevity?
[181] Lehrke M., Lazar M.A. (2005) The many faces of PPARgamma.
[182] Lens F., Smets E., Melzer S. (2012) Stem anatomy supports
[183] Leone T.C., Lehman J.J., Finck B.N., Schaeffer P.J., Wende A.R., Boudina S., Courtois M., Wozniak D.F., Sambandam N., Bernal-Mizrachi C., Chen Z., Holloszy J.O., Medeiros D.M., Schmidt R.E., Saffitz J.E., Abel E.D., Semenkovich C.F., Kelly D.P. (2005) PGC-1alpha deficiency causes multi-system energy metabolic derangements: muscle dysfunction, abnormal weight control and hepatic steatosis.
[184] Leopold A.C., Niedergangkamien E., Janick J. (1959) Experimental modification of plant senescence.
[185] Lewis K. (2000) Programmed death in bacteria.
[186] Li X.D., Rebrin I., Forster M.J., Sohal R.S. (2012) Effects of age and caloric restriction on mitochondrial protein oxidative damage in mice.
[187] Liang Y.X., Wang Z., Li D.D., Jiang J.M., Shao R.G. (2003) Effects of aging and advanced glycation on gene expression in cerebrum and spleen of mice.
[188] Liao C.Y., Rikke B.A., Johnson T.E., Diaz V., Nelson J.F. (2010) Genetic variation in the murine lifespan response to dietary restriction: from life extension to life shortening.
[189] Liberman E.A., Skulachev V.P. (1970) Conversion of biomembrane-produced energy into electric form. IV. General discussion.
[190] Liberman E.A., Topaly V.P., Tsofina L.M., Jasaitis A.A., Skulachev V.P. (1969) Mechanism of coupling of oxidative phosphorylation and the membrane potential of mitochondria.
[191] Libert S., Pletcher S.D. (2007) Modulation of longevity by environmental sensing.
[192] Libert S., Zwiener J., Chu X., Vanvoorhies W., Roman G., Pletcher 5. D. (2007) Regulation of
[193] Lin C.S., Sharpley M.S., Fan W., Waymire K.G., Sadun A.A., Carelli V., Ross-Cisneros F.N., Baciu P., Sung E., McManus M.J., Pan B.X., Gil D.W., Macgregor G.R., Wallace D.C. (2012) Mouse mtDNA mutant model of Leber hereditary optic neuropathy.
[194] Lin J., Handschin C., Spiegelman B.M. (2005) Metabolic control through the PGC-1 family of transcription coactivators.
[195] Lindoo S.J., Nooden L.D. (1977) Studies on behavior of senescence signal in anoka soybeans.
[196] Liu C., Li S., Liu T., Borjigin J., Lin J.D. (2007) Transcriptional coactivator PGC-1alpha integrates the mammalian clock and energy metabolism.
[197] Liu S.S. (1997) Generating, partitioning, targeting and functioning of superoxide in mitochondria.
[198] Liu S.S., Huang J.P. (1996) Coexistence of a “reactive oxygen cycle” with the Q cycle in the respiratory chain — a hypothesis for generating, partitioning and functioning of superoxide in mitochondria. Proc. Intern. Symp. Natural Antioxidants: Molecular Mechanism and Health Effects, 513–529, Champaign IL USA.
[199] Loison A., Festa-Blanchet, M., Gaillard, J-M., Jorgenson, J.T., Jullien, J-M. (1999) Age-specific survival in five populations of ungulates: evidence of senescence.
[200] Longo V.D., Mitteldorf J., Skulachev V.P. (2005) Programmed and altruistic ageing.