The naked mole-rat: a new long-living model for human aging research.
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[1] R. de Cabo,et al. Vitamin E and selenium deficiency induces expression of the ubiquinone‐dependent antioxidant system at the plasma membrane , 1998, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[2] J. Kirkland. Evolution and ageing. , 1989, Genome.
[3] M. Portero-Otín,et al. Mitochondrial membrane peroxidizability index is inversely related to maximum life span in mammals. , 1998, Journal of lipid research.
[4] E. Blackburn,et al. Telomeres and telomerase: their mechanisms of action and the effects of altering their functions , 2005, FEBS letters.
[5] Avril D. Woodhead,et al. Evolution of longevity in animals. A comparative approach. Proceedings of the 34th Brookhaven Symposium in Biology on Aging processes in animals. October 19-22, 1986, Upton, New York. Dedicated to George Sacher. , 1987, Basic life sciences.
[6] L. Keller,et al. Extraordinary lifespans in ants: a test of evolutionary theories of ageing , 1997, Nature.
[7] L. Hayflick. THE LIMITED IN VITRO LIFETIME OF HUMAN DIPLOID CELL STRAINS. , 1965, Experimental cell research.
[8] R. Buffenstein,et al. Metabolic and Body Temperature Changes during Pregnancy and Lactation in the Naked Mole Rat (Heterocephalus glaber) , 1995, Physiological Zoology.
[9] E. Douzery,et al. From the Old World to the New World: a molecular chronicle of the phylogeny and biogeography of hystricognath rodents. , 2001, Molecular phylogenetics and evolution.
[10] P. Sherman,et al. The Biology of the Naked Mole-Rat , 2017 .
[11] M. Lillo,et al. NUMBERS OF SPECIES OF ANTS IN FAUNAE OF DIFFERENT LATITUDES , 1957 .
[12] T. Kirkwood. Evolution of ageing , 1977, Nature.
[13] P. Sherman,et al. Extraordinary life spans of naked mole‐rats (Heterocephalus glaber) , 2002 .
[14] G. Barja. Rate of generation of oxidative stress-related damage and animal longevity. , 2002, Free radical biology & medicine.
[15] M. O'Riain,et al. A dispersive morph in the naked mole-rat , 1996, Nature.
[16] A. J. Hulbert,et al. Metabolic rate is not reduced by dietary-restriction or by lowered insulin/IGF-1 signalling and is not correlated with individual lifespan in Drosophila melanogaster , 2004, Experimental Gerontology.
[17] M. Smith-Wheelock,et al. Methionine‐deficient diet extends mouse lifespan, slows immune and lens aging, alters glucose, T4, IGF‐I and insulin levels, and increases hepatocyte MIF levels and stress resistance , 2005, Aging cell.
[18] A. J. Hulbert,et al. On the importance of fatty acid composition of membranes for aging. , 2005, Journal of theoretical biology.
[19] H. Cooke,et al. Evolution of African mammals , 1978 .
[20] R. Buffenstein. Ecophysiological responses to a subterranean habitat; a Bathyergid perspective. , 1996 .
[21] C. Finch,et al. Evolutionary Medicine: From Dwarf Model Systems to Healthy Centenarians? , 2003, Science.
[22] J. Jarvis,et al. Subterranean mole-rats naturally have an impoverished calciol status, yet synthesize calciol metabolites and calbindins. , 1994, European journal of endocrinology.
[23] R. Weindruch,et al. Concerns about rodent models for aging research. , 1991, Journal of gerontology.
[24] S. Austad,et al. Mammalian aging, metabolism, and ecology: evidence from the bats and marsupials. , 1991, Journal of gerontology.
[25] A. J. Hulbert,et al. The acyl composition of mammalian phospholipids: an allometric analysis. , 2002, Comparative biochemistry and physiology. Part B, Biochemistry & molecular biology.
[26] M. O'Riain,et al. The dynamics of growth in naked mole‐rats: the effects of litter order and changes in social structure , 1998 .
[27] J. Jarvis,et al. Prolonged longevity in naked mole-rats: age-related changes in metabolism, body composition and gastrointestinal function. , 2002, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[28] D. Harman. Aging: a theory based on free radical and radiation chemistry. , 1956, Journal of gerontology.
[29] George C. Williams,et al. PLEIOTROPY, NATURAL SELECTION, AND THE EVOLUTION OF SENESCENCE , 1957, Science of Aging Knowledge Environment.
[30] S. Austad,et al. An experimental paradigm for the study of slowly aging organisms , 2001, Experimental Gerontology.
[31] B. Bobek. Survival, turnover and production of small rodents in a beech forest , 1969 .
[32] J. Jarvis. Eusociality in a mammal: cooperative breeding in naked mole-rat colonies. , 1981, Science.
[33] B. Bobek. Net production of small rodents in deciduous forest , 1973 .
[34] S. Cadenas,et al. Low mitochondrial free radical production per unit O2 consumption can explain the simultaneous presence of high longevity and high aerobic metabolic rate in birds. , 1994, Free radical research.
[35] S. K. Morgan Ernest,et al. LIFE HISTORY CHARACTERISTICS OF PLACENTAL NONVOLANT MAMMALS , 2003 .
[36] Rochelle Buffenstein,et al. Is the naked mole-rat Hererocephalus glaber an endothermic yet poikilothermic mammal? , 1991 .
[37] Caleb E. Finch,et al. Longevity, senescence, and the genome , 1990 .
[38] R. Ricklefs. Evolutionary Theories of Aging: Confirmation of a Fundamental Prediction, with Implications for the Genetic Basis and Evolution of Life Span , 1998, The American Naturalist.
[39] S. Austad,et al. Longer Life Spans and Delayed Maturation in Wild-Derived Mice , 2002, Experimental biology and medicine.
[40] R. Lavocat. V: Rodentia and Lagomorpha , 1978 .
[41] M. Portero-Otín,et al. Membrane Fatty Acid Unsaturation, Protection against Oxidative Stress, and Maximum Life Span , 2002, Annals of the New York Academy of Sciences.
[42] W. Calder,et al. Body Size, Physiological Time, and Longevity of Homeothermic Animals , 1981, The Quarterly Review of Biology.
[43] C. G. Faulkes,et al. Evidence that primer pheromones do not cause social suppression of reproduction in male and female naked mole-rats (Heterocephalus glaber). , 1993, Journal of reproduction and fertility.
[44] J. Jarvis,et al. The naked mole rat--a new record for the oldest living rodent. , 2002, Science of aging knowledge environment : SAGE KE.
[45] C. Faulkes,et al. African Mole-Rats: Ecology and Eusociality , 2000 .
[46] R. Holman. Autoxidation of fats and related substances , 1954 .
[47] V. Monnier,et al. Nonenzymatic browning in vivo: possible process for aging of long-lived proteins. , 1981, Science.
[48] L. Bandini,et al. Effect of age on body composition and resting metabolic rate. , 1990, The American journal of physiology.
[49] A. Barden,et al. Advanced Glycation End Products: A Review , 2013 .
[50] J. Carey,et al. Life Span Extension in Humans is Self-Reinforcing: A General Theory of Longevity , 2001 .
[51] J. Speakman,et al. Living fast, dying when? The link between aging and energetics. , 2002, The Journal of nutrition.
[52] J. Cohen,et al. Rodentia and lagomorpha , 2001 .
[53] Rochelle Buffenstein,et al. The pancreas of the naked mole-rat (Heterocephalus glaber): an ultrastructural and immunocytochemical study of the endocrine component of thermoneutral and cold acclimated animals. , 2004, General and comparative endocrinology.
[54] Richard Weindruch,et al. The Retardation of Aging and Disease by Dietary Restriction , 1988 .
[55] M. Remple,et al. Somatosensory cortex dominated by the representation of teeth in the naked mole-rat brain , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[56] T. O'Connor,et al. Antioxidants do not explain the disparate longevity between mice and the longest-living rodent, the naked mole-rat , 2005, Mechanisms of Ageing and Development.
[57] B. G. Murray. THE ORIGINS OF ADAPTIVE INTERSPECIFIC TERRITORIALISM , 1981 .
[58] C. Roberts. IGF-1 and prostate cancer. , 2004, Novartis Foundation symposium.
[59] B. Brody,et al. Aging: A Natural History , 1995 .
[60] M. O'Riain,et al. Morphological castes in a vertebrate. , 2000, Proceedings of the National Academy of Sciences of the United States of America.