📚 Hub Books: Онлайн-чтение книгПсихологияЗагадка нестареющей медузы. Секреты природы и достижения науки, которые помогут приблизиться к вечной жизни - Никлас Брендборг

Загадка нестареющей медузы. Секреты природы и достижения науки, которые помогут приблизиться к вечной жизни - Никлас Брендборг

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Link between infection and atherosclerosis: Who are the culprits: Viruses, bacteria, both, or neither? Shah P., Circulation. 2001; 103: 5–6.

Identification of Periodontal Pathogens in Atheromatous Plaques, Haraszthy V., Zambon J., Trevisan M., Zeid M., Genco RJournal of Periodontology (2000) 71(10): 1554–1560.

Laboratory-confirmed respiratory infections as triggers for acute myocardial infarction and stroke: A selfcontrolled case series analysis of national linked datasets from Scotland, Warren-Gash C., Blackburn R., Whitaker H., McMenamin J., Hayward A., European Respiratory Journal (2018) 51(3) AR.

Viruses as modulators of mitochondrial functions, Anand S., Tikoo S., Advances in Virology (2013), 738794.

The role of mitochondria in apoptosis, Wang C., Youle R., Annual Review of Genetics, vol. 43, 2009 pp. 95–118.

Viruses as modulators of mitochondrial functions, Anand S., Tikoo S., Adv Virol. 2013; 2013: 738794.

Autophagy during viral infection — A double-edged sword, Choi Y., Bowman J., Jung J., Nat Rev Microbiol 16, 341–354 (2018).

Targeted interplay between bacterial pathogens and host autophagy, Sudhakar P. et al., Autophagy (2019) 15(9): 1620–1633.

Polyamines: Small Molecules with a Big Role in Promoting Virus Infection, Li M., MacDonald M., Cell Host & Microbe, vol. 20, 2, pp. 123–124, august 10, 2016.

Viral insulin-like peptides activate human insulin and IGF-1 receptor signaling: A paradigm shift for host—microbe interactions, Altindis E. et al., Proceedings of the National Academy of Sciences of the United States of America (2018) 115(10): 2461–2466.

The extracellular domain of Staphylococcus aureus LtaS binds insulin and induces insulin resistance during infection, Liu Y. et al., Nat Microbiol 3, 622–631 (2018).

Association of adenovirus infection with human obesity, Dhurandhar N., Obesity Research (1997) 5(5): 464–469.

Human adenovirus-36 is associated with increased body weight and paradoxical reduction of serum lipids, Atkinson R. L. et al., Int J Obes 29, 281–286 (2005).

Adenovirus 36 and Obesity: An Overview, Ponterio E & Gnessi L., Viruses 2015 Jul; 7(7): 3719–3740.

Regulation of life span by the gut microbiota in the short-lived african turquoise killifish, Smith P., Willemsen D., Popkes M., Metge F., Gandiwa E., Reichard M., Valenzano D., eLife (2017) 6.

Neurogenesis and prolongevity signaling in young germ-free mice transplanted with the gut microbiota of old mice, Kundu P. et al., Science Translational Medicine (2019) 11(518): 4760.

Microbiome evolution during host aging, Aleman F., Valenzano D., PLoS Pathogens (2019) 15(7).

Inflammaging and anti-inflammaging: A systemic perspective on aging and longevity emerged from studies in humans, Franceschi C. et al., Mechanisms of Ageing and Development (2007) 128(1): 92–105.

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The effect of retarded growth upon the length of life span and upon the ultimate body size, McCay C., Crowell M., Maynard L., The Journal of Nutrition, vol. 10, Issue 1, July 1935, pp. 63–79.

Aging, Longevity, and Diet: Historical Remarks on Calorie Intake Reduction, Schäfer D., Gerontology (2005) 51(2): 126–130.

Honoring Clive McCay and 75 years of calorie restriction research, McDonald R., Ramsey J., J Nutr. 2010 Jul; 140(7): 1205–1210.

Dietary restriction in mice beginning at 1 year of age: Effect on life-span and spontaneous cancer incidence, Weindruch R., Walford R., Science (1982) 215(4538): 1415–1418.

The retardation of aging in mice by dietary restriction: Longevity, cancer, immunity and lifetime energy intake, Weindruch R., Walford R., Fligiel S., Guthrie D., Journal of Nutrition (1986) 116(4): 641–654.

Calorie restriction in biosphere 2: Alterations in physiologic, hematologic, hormonal, and biochemical parameters in humans restricted for a 2-year period, Walford R., Mock D., Verdery R., MacCallum T., J Gerontol A Biol Sci Med Sci. 2002 Jun; 57(6): B211–24.

Caloric restriction improves health and survival of rhesus monkeys, Mattison J. et al., Nat Commun 8, 14063 (2017).

Caloric restriction delays disease onset and mortality in rhesus monkeys, Colman R., Anderson R., Johnson S., Kastman E., Kosmatka K., Beasley T., Allison D., Cruzen C., Simmons H., Kemnitz J., Weindruch R., Science (2009) 325(5937): 201–204.

Impact of caloric restriction on health and survival in rhesus monkeys from the NIA study, Mattison J. et al., Nature (2012) 489(7415): 318–321.

2 years of calorie restriction and cardiometabolic risk (CALERIE): exploratory outcomes of a multicentre, phase 2, randomised controlled trial, Kraus W. et al., The Lancet Diabetes and Endocrinology (2019) 7(9): 673–683.

Autophagy is required for dietary restriction-mediated life span extension in C. elegans, Jia K., Levine B., Autophagy (2007) 3(6): 597–599.

mTOR Signaling in Growth, Metabolism, and Disease, Saxton R., Sabatini D., Cell 2017 Mar 9; 168(6): 960–976.

A time to fast, Di Francesco A., Di Germanio C., Bernier M., De Cabo R., Science 16 Nov 2018.

Intermittent fasting dissociates beneficial effects of dietary restriction on glucose metabolism and neuronal resistance to injury from calorie intake, Michael Anson R. et al., Proceedings of the National Academy of Sciences of the United States of America (2003) 100(10): 6216–6220.

Daily Fasting Improves Health and Survival in Male Mice Independent of Diet Composition and Calories, Mitchell S. et al., Cell Metabolism (2019) 29(1): 221–228.e3.

Restricted feeding for 9 h in the active period partially abrogates the detrimental metabolic effects of a Western diet with liquid sugar consumption in mice, Woodie L., Luo Y., Wayne M., Graff E., Ahmed B., O’Neill A., Greene M., Metabolism: Clinical and Experimental (2018) 82: 1–13.

Apparent prolongation of the life span of rats by intermittent fasting, Carlson A., Hoelzel F., The Journal of Nutrition (1946) 31(3): 363–375.

Fasting-mimicking diet and markers/risk factors for aging, diabetes, cancer, and cardiovascular disease, Wei M. et al., Science Translational Medicine (2017) 9(377).

Features of a successful therapeutic fast of 382 days’ duration, Stewart W., Fleming L., Postgraduate Medical Journal (1973) 49(569): 203–209.

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