Кодекс долголетия. Что заставляет нас стареть, зачем это нужно и как «обмануть» эволюцию: пошаговое руководство — страница 60 из 65

9 B. P. Yu et al., “Nutritional influences on aging of Fischer 344 rats: I. Physical, metabolic, and longevity characteristics.” Journal of Gerontology 40, no. 6 (November 1985): 657–70.

10 S. Leto et al., “Dietary protein, life-span, and biochemical variables in female mice.” Journal of Gerontology 31, no. 2 (March 1976): 144–48.

11 M. Ross et al., “Food preference and length of life.” Science 190, no. 4210 (October 1975): 165–67.

12 J. P. Richie et al., “Methionine restriction increases blood glutathione and longevity in F344 rats.” FASEB Journal: Official Publication of the Federation of American Societies for Experimental Biology 8, no. 15 (December 1994): 1302–7.

13 M. López-Torres et al., “Lowered methionine ingestion as responsible for the decrease in rodent mitochondrial oxidative stress in protein and dietary restriction possible implications for humans.” Biochimica et biophysica acta 1780, no. 11 (November 2008): 1337–47.

14 D. Fau et al., “Effects of ingestion of high protein or excess methionine diets by rats for two years.” Journal of Nutrition 118, no. 1 (January 1988): 128–33.

15 S. M. Solon-Biet et al., “The ratio of macronutrients, not caloric intake, dictates cardiometabolic health, aging, and longevity in ad libitum-fed mice.” Cell Metabolism 19, no. 3 (March 2014): 418–30.

16 E. Parrella et al., “Protein restriction cycles reduce IGF-1 and phosphorylated Tau, and improve behavioral performance in an Alzheimer’s disease mouse model.” Aging Cell 12, no. 2 (April 2013): 257–68.

17 A. Pan et al., “Red meat consumption and mortality: results from 2 prospective cohort studies.” Archives of Internal Medicine 172, no. 7 (April 2012): 555–63.

18 S. Rohrmann et al., “Meat consumption and mortality – results from the European Prospective Investigation into Cancer and Nutrition.” BMC Medicine 11, no. 1 (January 2013): 63.

19 E. W.-T. Chong et al., “Red meat and chicken consumption and its association with age-related macular degeneration.” American Journal of Epidemiology 169, no. 7 (April 2009): 867–76.

20 M. E. Levine et al., “Low protein intake is associated with a major reduction in IGF-1, cancer, and overall mortality in the 65 and younger but not older population.” Cell Metabolism 19, no. 3 (March 2014): 407–17.

21 S. Zhang et al., “Dietary fat and protein in relation to risk of non-Hodgkin’s lymphoma among women.” JNCI Journal of the National Cancer Institute 91, no. 20 (October 1999): 1751–58.

22 E. Cho et al., “Red meat intake and risk of breast cancer among premenopausal women.” Archives of Internal Medicine 166, no. 20 (November 2006): 2253–59.

23 William Manner et al., “Effects of dietary regimen and tissue site on bovine fatty acid profiles.” Journal of Animal Science 59, no. 1 (February 1984): 109–21.

24 A. P. Simopoulos et al., “n-3 fatty acids in eggs from range-fed Greek chickens.” New England Journal of Medicine 321, no. 20 (November 1989): 1412.

25 C. B. Hauswirth et al., “High omega-3 fatty acid content in alpine cheese: the basis for an alpine paradox.” Circulation 109, no. 1 (January 2004): 103–7.

26 U. Ericson et al., “High intakes of protein and processed meat associate with increased incidence of type 2 diabetes.” British Journal of Nutrition 109, no. 6 (March 2013): 1143–53.

27 T. T. Fung et al., “Low-carbohydrate diets and all-cause and cause-specific mortality: two cohort studies.” Annals of Internal Medicine 153, no. 5 (September 2010): 289–98.

28 P. Lagiou et al., “Low carbohydrate-high protein diet and mortality in a cohort of Swedish women.” Journal of Internal Medicine 261, no. 4 (April 2007): 366–74.

29 P. Lagiou et al., “Low carbohydrate-high protein diet and incidence of cardiovascular diseases in Swedish women: prospective cohort study.” BMJ (Clinical Research Ed.) 344 (June 2012): e4026.

30 F. Tremblay et al., “Identification of IRS-1 Ser-1101 as a target of S6K1 in nutrient– and obesity-induced insulin resistance.” Proceedings of the National Academy of Sciences of the United States of America 104, no. 35 (August 2007): 14056–61.

31 F. Tremblay et al., “Overactivation of S6 kinase 1 as a cause of human insulin resistance during increased amino acid availability.” Diabetes 54, no. 9 (September 2005): 2674–84.

32 N. E. Allen et al., “The associations of diet with serum insulin-like growth factor I and its main binding proteins in 292 women meat-eaters, vegetarians, and vegans.” Cancer Epidemiology, Biomarkers and Prevention: A Publication of the American Association for Cancer Research, Cosponsored by the American Society of Preventive Oncology 11, no. 11 (December 2002): 1441–48.

33 M. J. Orlich et al., “Vegetarian dietary patterns and mortality in Adventist Health Study 2.” JAMA Internal Medicine 173, no. 13 (July 2013): 1230–38.

34 M. F. McCarty et al., “The low-methionine content of vegan diets may make methionine restriction feasible as a life extension strategy.” Medical Hypotheses 72, no. 2 (February 2009): 125–28.

35 S. S. Hall, “Longevity.” National Geographic, May 2013.

36 A. Fasano, “Surprises from celiac disease.” Scientific American 301, no. 2 (August 2009): 54–61.

37 A. N. Pedersen et al., “Health effects of protein intake in healthy elderly populations: a systematic literature review.” Food and Nutrition Research 58 (January 2014).

38 M. Holzenberger et al., “IGF-1 receptor regulates lifespan and resistance to oxidative stress in mice.” Nature 421, no. 6919 (January 2003): 182–87.

39 C. Hale, “Oldest living mouse dies at home in SIUC laboratory.” Southern Illinoisan, January 15, 2003.

40 L. Salaris et al., “Height and survival at older ages among men born in an inland village in Sardinia (Italy), 1866–2006.” Biodemography and Social Biology 58, no. 1 (January 2012): 1–13.

41 Q. He et al., “Shorter men live longer: association of height with longevity and FOXO3 genotype in American men of Japanese ancestry.” PloS One 9, no. 5 (January 2014): e94385.

42 J. Green et al., “Height and cancer incidence in the Million Women Study: prospective cohort, and meta-analysis of prospective studies of height and total cancer risk.” Lancet Oncology 12, no. 8 (August 2011): 785–94.

43 J. Guevara-Aguirre et al., “Growth hormone receptor deficiency is associated with a major reduction in pro-aging signaling, cancer, and diabetes in humans.” Science Translational Medicine 3, no. 70 (February 2011): 70ra13.

44 H. Gardener et al., “Diet soft drink consumption is associated with an increased risk of vascular events in the Northern Manhattan Study.” Journal of General Internal Medicine 27, no. 9 (September 2012): 1120–26.

45 Q. Yang et al., “Added sugar intake and cardiovascular diseases mortality among US adults.” JAMA Internal Medicine 174, no. 4 (April 2014): 516–24.

46 W. C. Willett et al., “Rebuilding the food pyramid.” Scientific American 288, no. 1 (January 2003): 64–71.

47 H. Wu et al., “Association between dietary whole grain intake and risk of mortality.” JAMA Internal Medicine 175, no. 3 (January 2015): 373–84.

48 E. W. Manheimer et al., “Paleolithic nutrition for metabolic syndrome: systematic review and meta-analysis.” American Journal of Clinical Nutrition 102, no. 4 (October 2015): 922–32.

49 E. L. Lim et al., “Reversal of type 2 diabetes: normalisation of beta cell function in association with decreased pancreas and liver triacylglycerol.” Diabetologia 54, no. 10 (October 2011): 2506–14.

50 “Beter eten en meer bewegen kunnen diabetes type 2 genezen” (Better nutrition and more exercise can cure type 2 diabetes). NOS News/Voeding Leeft, November 25, 2016.

51 R. D. Feinman et al., “Dietary carbohydrate restriction as the first approach in diabetes management: critical review and evidence base.” Nutrition 31, no. 1 (July 2014): 1–13.

52 S. Liu et al., “A prospective study of dietary glycemic load, carbohydrate intake, and risk of coronary heart disease in US women.” American Journal of Clinical Nutrition 71, no. 6 (June 2000): 1455–61.

53 J. W. J. Beulens et al., “High dietary glycemic load and glycemic index increase risk of cardiovascular disease among middle-aged women: a population-based follow-up study.” Journal of the American College of Cardiology 50, no. 1 (July 2007): 14–21.

54 S. Sieri et al., “Dietary glycemic load and glycemic index and risk of cerebrovascular disease in the EPICOR cohort.” PloS One 8, no. 5 (January 2013): e62625.

55 R. O. Roberts et al., “Relative intake of macronutrients impacts risk of mild cognitive impairment or dementia.” Journal of Alzheimer’s Disease 32, no. 2 (January 2012): 329–39.

56 N. Cherbuin et al., “Higher normal fasting plasma glucose is associated with hippocampal atrophy: the PATH Study.” Neurology 79, no. 10 (September 2012): 1019–26.

57 C. Enzinger et al., “Risk factors for progression of brain atrophy in aging: six-year follow-up of normal subjects.” Neurology 64, no. 10 (May 2005): 1704–11.

58 D. D. Perlmutter, Grain Brain (New York: Little, Brown, 2013).

59 S. Austad, Why We Age (Wiley, 1997).

60 D. Lieberman, The Story of the Human Body (New York: Pantheon, 2013).

61 J. Diamond, “The worst mistake in the history of the human race.” discovermagazine.com, May 1, 1999.

62 R. Villegas et al., “Prospective study of dietary carbohydrates, glycemic index, glycemic load, and incidence of type 2 diabetes mellitus in middle-aged Chinese women.” Archives of Internal Medicine