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Review Article| Volume 25, ISSUE 4, P733-743, November 2009

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Effects of Caloric Restriction on Cardiovascular Aging in Non-human Primates and Humans

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      References

        • Rosamond W.
        • Flegal K.
        • Friday G.
        • et al.
        Heart disease and stroke statistics—2007 update: a report from the American Heart Association Statistics Committee and Stroke Statistics Subcommittee.
        Circulation. 2007; 115: e69-e171
        • Odgen C.L.
        • Carroll M.D.
        • Curtin L.R.
        • et al.
        Prevalence of overweight and obesity in the United States, 1999–2004.
        JAMA. 2006; 295: 1549-1555
        • Rosamond W.
        • Flegal K.
        • Furie K.
        • et al.
        Heart disease and stroke statistics—2008 update: a report from the American Heart Association Statistics Committee and Stroke Statistics Subcommittee.
        Circulation. 2008; 117: e25-e146
        • Minino A.M.
        • Heron M.P.
        • Smith B.L.
        Deaths: preliminary data for 2004.
        Natl Vital Stat Rep. 2006; 54: 1-49
        • Ludwig D.S.
        Childhood obesity—the shape of things to come.
        N Engl J Med. 2007; 357: 2325-2327
        • von Haehling S.
        • Doehner W.
        • Anker S.D.
        Obesity and the heart: a weighty issue.
        J Am Coll Cardiol. 2006; 47: 2274-2276
        • United Nations
        Report of the second world assembly on aging.
        United Nations, Madrid (Spain)2002
        • US Census Bureau
        International database. Table 094. Midyear population, by age and sex.
        (Available at:) (Accessed June 24, 2009)
        • Chobanian A.V.
        • Bakris G.L.
        • Black H.R.
        • et al.
        The Seventh Report of the Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure: the JNC 7 report.
        JAMA. 2003; 289: 2560-2572
        • Daniels S.R.
        Obesity in the pediatric patient: cardiovascular complications.
        Prog Pediatr Cardiol. 2001; 12: 161-167
        • Rabbia F.
        • Silke B.
        • Conterno A.
        • et al.
        Assessment of cardiac autonomic modulation during adolescent obesity.
        Obes Res. 2003; 11: 541-548
        • Gidding S.S.
        Clinical and epidemiological significance of left ventricular mass assessed in children and adolescents.
        Circulation. 1998; 97: 1893-1894
        • Lorch S.M.
        • Sharkey A.
        Myocardial velocity, strain, and strain rate abnormalities in healthy obese children.
        J Cardiometab Syndr. 2007; 2: 30-34
      1. Barrett J. The price of childhood obesity: why the costs could catastrophic if we don’t stop the epidemic now. Newsweek. Accessed December 5, 2007.

        • Schonfeld-Warden N.
        • Warden C.
        Pediatric obesity: an overview of etiology and treatment.
        Pediatr Clin North Am. 1997; 44: 339-361
        • Chinalli M.
        • De Simone G.
        • Roman M.
        • et al.
        Impact of obesity on cardiac geometry and function in a population of adolescents: the strong heart study.
        J Am Col Cardiol. 2006; 47 ([commentary]): 2267-2276
        • Friberg P.
        • Allansdotter-Johnsson A.
        • Ambring A.
        • et al.
        Increased left ventricular mass in obese adolescents.
        Eur Heart J. 2004; 25: 987-992
        • Shub C.
        • Klein A.L.
        • Zachariah P.K.
        • et al.
        Determination of left ventricular mass by echocardiography in a normal population: effect of age and sex in addition to body size.
        Mayo Clin Proc. 1994; 69: 205-211
        • Foppa M.
        • Duncan B.B.
        • Rohde L.E.
        Echocardiography-based left ventricular mass estimation. How should we define hypertrophy?.
        Cardiovasc Ultrasound. 2005; 3: 17
        • Bosy-Westphal A.
        • Geisler C.
        • Onur S.
        • et al.
        Value of body fat mass vs anthropometric obesity indices in the assessment of metabolic risk factors.
        Int J Obes (Lond). 2006; 30: 475-483
        • Iacobellis G.
        • Sharma A.M.
        Obesity and the heart: redefinition of the relationship.
        Obes Rev. 2007; 8: 35-39
        • Wong C.
        • Moore-Sullivan T.
        • Leano R.
        • et al.
        Alterations of left ventricular myocardial characteristics associated with obesity.
        Circulation. 2004; 110: 3081-3087
        • Ferreira I.
        • Snijder M.B.
        • Twisk J.W.
        • et al.
        Central fat mass versus peripheral fat and lean mass: opposite (adverse versus favorable) associations with arterial stiffness? The Amsterdam Growth and Health Longitudinal Study.
        J Clin Endocrinol Metab. 2004; 89: 2632-2639
        • Eckel R.H.
        • Grundy S.M.
        • Zimmet P.Z.
        The metabolic syndrome.
        Lancet. 2005; 365: 1415-1428
        • Reaven G.M.
        Banting lecture 1988. Role of insulin resistance in human disease; 1988.
        Nutrition. 1997; 13 ([discussion: 64, 66]): 65
      2. The IDF consensus worldwide definition of the metabolic syndrome.
        (Available at:) (Accessed June 24, 2009)
        • Alberti K.G.
        • Zimmet P.Z.
        Definition, diagnosis, and classification of diabetes mellitus and its complications. Part 1: diagnosis and classification of diabetes mellitus, provisional report of a WHO consultation.
        Diabet Med. 1998; 15: 539-553
        • Balkau B.
        • Charles M.A.
        Comment on the provisional report from the WHO consultation. European Group for the Study of Insulin Resistance (EGIR).
        Diabet Med. 1999; 16: 442-443
        • Einhorn D.
        • Reaven G.M.
        • Cobin R.H.
        • et al.
        American College of Endocrinology position statement on the insulin resistance syndrome.
        Endocr Pract. 2003; 9: 237-252
        • Grundy S.M.
        • Brewer Jr., H.B.
        • Cleeman J.I.
        • et al.
        Definition of metabolic syndrome: report of the National Heart, Lung, and Blood Institute/American Heart Association conference on scientific issues related to definition.
        Arterioscler Thromb Vasc Biol. 2004; 24: e13-e18
        • Grundy S.M.
        • Cleeman J.I.
        • Daniels S.R.
        • et al.
        Diagnosis and management of the metabolic syndrome: an American Heart Association/National Heart, Lung, and Blood Institute Scientific Statement.
        Circulation. 2005; 112: 2735-2752
        • Day C.
        Metabolic syndrome, or what you will: definitions and epidemiology.
        Diab Vasc Dis Res. 2007; 4: 32-38
        • Gami A.S.
        • Witt B.J.
        • Howard D.E.
        • et al.
        Metabolic syndrome and risk of incident cardiovascular events and death: a systematic review and meta-analysis of longitudinal studies.
        J Am Coll Cardiol. 2007; 49: 403-414
        • Penno G.
        • Miccoli R.
        • Pucci L.
        • et al.
        The metabolic syndrome: beyond the insulin resistance syndrome.
        Pharmacol Res. 2006; 53: 457-468
        • Sutherland J.P.
        • McKinley B.
        • Eckel R.H.
        The metabolic syndrome and inflammation.
        Metab Syndr Relat Disord. 2004; 2: 82-104
        • Tataranni P.A.
        • Ortega E.
        A burning question: does an adipokine-induced activation of the immune system mediate the effect of overnutrition on type 2 diabetes?.
        Diabetes. 2005; 54: 917-927
        • Di Gregorio G.B.
        • Yao-Borengasser A.
        • Rasouli N.
        • et al.
        Expression of CD68 and macrophage chemoattractant protein-1 genes in human adipose and muscle tissues: association with cytokine expression, insulin resistance, and reduction by pioglitazone.
        Diabetes. 2005; 54: 2305-2313
        • Weisberg S.P.
        • McCann D.
        • Desai M.
        • et al.
        Obesity is associated with macrophage accumulation in adipose tissue.
        J Clin Invest. 2003; 112: 1796-1808
        • Xu H.
        • Barnes G.T.
        • Yang Q.
        • et al.
        Chronic inflammation in fat plays a crucial role in the development of obesity-related insulin resistance.
        J Clin Invest. 2003; 112: 1821-1830
        • Chapidze G.
        • Dolidze N.
        • Enquobahrie D.A.
        • et al.
        Metabolic syndrome and C-reactive protein among cardiology patients.
        Arch Med Res. 2007; 38: 783-788
        • Festa A.
        • D’Agostino Jr., R.
        • Howard G.
        • et al.
        Chronic subclinical inflammation as part of the insulin resistance syndrome: the Insulin Resistance Atherosclerosis Study (IRAS).
        Circulation. 2000; 102: 42-47
        • Gustafson B.
        • Hammarstedt A.
        • Andersson C.X.
        • et al.
        Inflamed adipose tissue: a culprit underlying the metabolic syndrome and atherosclerosis.
        Arterioscler Thromb Vasc Biol. 2007; 27: 2276-2283
        • Ridker P.M.
        • Buring J.E.
        • Cook N.R.
        • et al.
        C-reactive protein, the metabolic syndrome, and risk of incident cardiovascular events: an 8-year follow-up of 14,719 initially healthy American women.
        Circulation. 2003; 107: 391-397
        • Rutter M.K.
        • Meigs J.B.
        • Sullivan L.M.
        • et al.
        C-reactive protein, the metabolic syndrome, and prediction of cardiovascular events in the Framingham Offspring Study.
        Circulation. 2004; 110: 380-385
        • Ye X.
        • Yu Z.
        • Li H.
        • et al.
        Distributions of C-reactive protein and its association with metabolic syndrome in middle-aged and older Chinese people.
        J Am Coll Cardiol. 2007; 49: 1798-1805
        • Han T.S.
        • Sattar N.
        • Williams K.
        • et al.
        Prospective study of C-reactive protein in relation to the development of diabetes and metabolic syndrome in the Mexico City Diabetes Study.
        Diabet Care. 2002; 25: 2016-2021
        • Laaksonen D.E.
        • Niskanen L.
        • Nyyssonen K.
        • et al.
        C-reactive protein and the development of the metabolic syndrome and diabetes in middle-aged men.
        Diabetologia. 2004; 47: 1403-1410
        • Esposito K.
        • Ciotola M.
        • Sasso F.C.
        • et al.
        Effect of a single high-fat meal on endothelial function in patients with the metabolic syndrome: role of tumor necrosis factor-alpha.
        Nutr Metab Cardiovasc Dis. 2007; 17: 274-279
        • Masoro E.J.
        Dietary restriction: current status.
        Aging. 2001; 13: 261-262
        • Masoro E.J.
        Overview of caloric restriction and ageing.
        Mech Ageing Dev. 2005; 126: 913-922
        • Weindruch R.
        • Walford R.L.
        The retardation of aging and disease by dietary restriction.
        Charles C. Thomas, Springfield (IL)1988
        • Yu B.P.
        How diet influences the aging process of the rat.
        Proc Soc Exp Biol Med. 2004; 205: 97-105
        • Kealy R.D.
        • Lawler D.F.
        • Ballam J.M.
        • et al.
        Effects of diet restriction on life span and age-related changes in dogs.
        J Am Vet Med Assoc. 2002; 220: 1315-1320
        • Lawler D.F.
        • Larson B.T.
        • Ballam J.M.
        • et al.
        Diet restriction and ageing in the dog: major observations over two decades.
        Br J Nutr. 2008; 99: 793-805
        • Bontrop R.E.
        Nonhuman primates: essential partners in biomedical research.
        Immunol Rev. 2001; 183: 5-9
        • King F.A.
        • Yarbrough C.J.
        • Anderson D.C.
        • et al.
        Primates.
        Science. 1988; 240: 1475-1482
        • Sibley C.G.
        • Ahlquist J.E.
        DNA hybridization evidence of hominoid phylogeny: results from an expanded data set.
        J Mol Evol. 1987; 26: 99-121
        • Sibley C.G.
        • Comstock J.A.
        • Ahlquist J.E.
        DNA hybridization evidence of hominoid phylogeny: a reanalysis of the data.
        J Mol Evol. 1990; 30: 202-236
        • Colman R.J.
        • Binkley N.
        Skeletal aging in macaque monkeys.
        in: Erwin J.M. Hof P.R. Aging in nonhuman primates. Interdisciplinary topics in gerontology. Karger, Basel (Switzerland)2002: 32-47
        • Colman R.J.
        • Kemnitz J.W.
        Aging experiments in nonhuman primates.
        in: Yu B.P. Methods in aging research. CRC Press, Boca Raton (FL)1998: 249-267
        • Bodkin N.L.
        • Pill J.
        • Meyer K.
        • et al.
        The effects of K-111, a new insulin-sensitizer, on metabolic syndrome in obese prediabetic rhesus monkeys.
        Horm Metab Res. 2003; 35: 617-624
        • Hannah J.S.
        • Verdery R.B.
        • Bodkin N.L.
        • et al.
        Changes in lipoprotein concentrations during the development of noninsulin-dependent diabetes mellitus in obese rhesus monkeys (Macaca mulatta).
        J Clin Endocrinol Metab. 1991; 72: 1067-1072
        • Hansen B.C.
        • Bodkin N.L.
        Heterogeneity of insulin responses: phases leading to type 2 (noninsulin-dependent) diabetes mellitus in the rhesus monkey.
        Diabetologia. 1986; 29: 713-719
        • Hamm Jr., T.E.
        • Kaplan J.R.
        • Clarkson T.B.
        • et al.
        Effects of gender and social behavior on the development of coronary artery atherosclerosis in cynomolgus macaques.
        Atherosclerosis. 1983; 48: 221-233
        • Pick R.
        • Johnson P.J.
        • Glick G.
        Deleterious effects of hypertension on the development of aortic and coronary atherosclerosis in stumptail macaques (Macaca speciosa) on an atherogenic diet.
        Circ Res. 1974; 35: 472-482
        • Taylor C.B.
        • Cox G.E.
        • Manalo-Estrella P.
        • et al.
        Atherosclerosis in rhesus monkeys. II. Arterial lesions associated with hypercholesteremia induced by dietary fat and cholesterol.
        Arch Pathol. 1962; 74: 16-34
        • Lane M.A.
        • Black A.
        • Handy A.
        • et al.
        Caloric restriction in primates.
        Ann N Y Acad Sci. 2001; 928: 287-295
        • Mattison J.A.
        • Roth G.S.
        • Lane M.A.
        • et al.
        Dietary restriction in aging nonhuman primates.
        Interdiscip Top Gerontol. 2007; 35: 137-158
        • Kemnitz J.W.
        • Weindruch R.
        • Roecker E.B.
        • et al.
        Dietary restriction of adult male rhesus monkeys: design, methodology, and preliminary findings from the first year of study.
        J Gerontol. 1993; 48: B17-B26
        • Ramsey J.J.
        • Colman R.J.
        • Binkley N.C.
        • et al.
        Dietary restriction and aging in rhesus monkeys: the University of Wisconsin study.
        Exp Gerontol. 2000; 35: 1131-1149
        • Bodkin N.L.
        • Alexander T.M.
        • Ortmeyer H.K.
        • et al.
        Mortality and morbidity in laboratory-maintained rhesus monkeys and effects of long-term dietary restriction.
        J Gerontol. 2003; 58: 212-219
        • Cefalu W.T.
        • Wagner J.D.
        • Wang Z.Q.
        • et al.
        A study of caloric restriction and cardiovascular aging in cynomolgus monkeys (Macaca fascicularis): a potential model for aging research.
        J Gerontol A Biol Sci Med Sci. 1997; 52: B10-B19
        • Colman R.J.
        • Ramsey J.J.
        • Roecker E.B.
        • et al.
        Body fat distribution with long-term dietary restriction in adult male rhesus macaques.
        J Gerontol Biol Sci. 1999; 54A: B283-B290
        • Cefalu W.T.
        • Wang Z.Q.
        • Bell-Farrow A.D.
        • et al.
        Caloric restriction and cardiovascular aging in cynomolgus monkeys (Macaca fascicularis): metabolic, physiologic, and atherosclerotic measures from a 4-year intervention trial.
        J Gerontol A Biol Sci Med Sci. 2004; 59: 1007-1014
        • Gresl T.A.
        • Colman R.J.
        • Havighurst T.C.
        • et al.
        Dietary restriction and beta-cell sensitivity to glucose in adult male rhesus monkeys.
        J Gerontol A Biol Sci Med Sci. 2003; 58: 598-610
        • Gresl T.A.
        • Colman R.J.
        • Roecker E.B.
        • et al.
        Dietary restriction and glucose regulation in aging rhesus monkeys: a follow-up report at 8.5 yr.
        Am J Physiol Endocrinol Metab. 2001; 281: E757-E765
        • Kemnitz J.W.
        • Roecker E.B.
        • Weindruch R.
        • et al.
        Dietary restriction increases insulin sensitivity and lowers blood glucose in rhesus monkeys.
        Am J Physiol. 1994; 266: E540-E547
        • Lane M.A.
        • Ball S.S.
        • Ingram D.K.
        • et al.
        Diet restriction in rhesus monkeys lowers fasting and glucose-stimulated glucoregulatory end points.
        Am J Physiol. 1995; 268: E941-E948
        • Bodkin N.L.
        • Ortmeyer H.K.
        • Hansen B.C.
        Long-term dietary restriction in older-aged rhesus monkeys: effects on insulin resistance.
        J Gerontol A Biol Sci Med Sci. 1995; 50: B142-B147
        • Cefalu W.T.
        • Wagner J.D.
        • Bell-Farrow A.D.
        • et al.
        Influence of caloric restriction on the development of atherosclerosis in nonhuman primates: progress to date.
        Toxicol Sci. 1999; 52: 49-55
        • Hansen B.C.
        • Bodkin N.L.
        Primary prevention of diabetes mellitus by prevention of obesity in monkeys.
        Diabetes. 1993; 42: 1809-1814
        • Lane M.A.
        • Black A.
        • Ingram D.K.
        • et al.
        Calorie restriction in nonhuman primates: implications for age-related disease risk.
        J Antiaging Med. 1998; 1: 315-326
        • Edwards I.J.
        • Rudel L.L.
        • Terry J.G.
        • et al.
        Caloric restriction in rhesus monkeys reduces low-density lipoprotein interaction with arterial proteoglycans.
        J Gerontol A Biol Sci Med Sci. 1998; 53: B443-B448
        • Edwards I.J.
        • Rudel L.L.
        • Terry J.G.
        • et al.
        Caloric restriction lowers plasma lipoprotein (a) in male but not female rhesus monkeys.
        Exp Gerontol. 2001; 36: 1413-1418
        • Verdery R.B.
        • Ingram D.K.
        • Roth G.S.
        • et al.
        Caloric restriction increases HDL2 levels in rhesus monkeys (Macaca mulatta).
        Am J Physiol. 1997; 273: E714-E719
        • Colman R.J.
        • Anderson R.M.
        • Johnson S.C.
        • et al.
        Caloric restriction delays disease onset and mortality in rhesus monkeys.
        Science. 2009; 325: 201-204
        • Lee I.M.
        • Blair S.N.
        • Allison D.B.
        • et al.
        Epidemiologic data on the relationships of caloric intake, energy balance, and weight gain over the life span with longevity and morbidity.
        J Gerontol. 2001; 56: 7-19
        • Weindruch R.
        • Sohal R.S.
        Seminars in medicine of the Beth Israel Deaconess Medical Center. Caloric intake and aging.
        N Engl J Med. 1997; 337: 986-994
        • Walford R.L.
        • Harris S.B.
        • Gunion M.W.
        The calorically restricted low-fat nutrient-dense diet in Biosphere 2 significantly lowers blood glucose, total leukocyte count, cholesterol, and blood pressure in humans.
        Proc Natl Acad Sci U S A. 1992; 89: 11533-11537
        • Walford R.L.
        • Mock D.
        • MacCallum T.
        • et al.
        Physiologic changes in humans subjected to severe, selective calorie restriction for two years in Biosphere 2: health, aging, and toxicological perspectives.
        Toxicol Sci. 1999; 52: 61-65
        • Walford R.L.
        • Mock D.
        • Verdery R.
        • et al.
        Calorie restriction in biosphere 2: alterations in physiologic, hematologic, hormonal, and biochemical parameters in humans restricted for a 2-year period.
        J Gerontol A Biol Sci Med Sci. 2002; 57: B211-B224
        • Fontana L.
        • Meyer T.E.
        • Klein S.
        • et al.
        Long-term calorie restriction is highly effective in reducing the risk for atherosclerosis in humans.
        Proc Natl Acad Sci U S A. 2004; 101: 6659-6663
        • Racette S.B.
        • Weiss E.P.
        • Villareal D.T.
        • et al.
        One year of caloric restriction in humans: feasibility and effects on body composition and abdominal adipose tissue.
        J Gerontol A Biol Sci Med Sci. 2006; 61: 943-950
        • Redman L.M.
        • Heilbronn L.K.
        • Martin C.K.
        • et al.
        Effect of calorie restriction with or without exercise on body composition and fat distribution.
        J Clin Endocrinol Metab. 2007; 92: 865-872
        • Fontana L.
        • Villareal D.T.
        • Weiss E.P.
        • et al.
        Calorie restriction or exercise: effects on coronary heart disease risk factors. A randomized, controlled trial.
        Am J Physiol Endocrinol Metab. 2007; 293: E197-E202
        • Heilbronn L.K.
        • de Jonge L.
        • Frisard M.I.
        • et al.
        Effect of 6-month calorie restriction on biomarkers of longevity, metabolic adaptation, and oxidative stress in overweight individuals: a randomized controlled trial.
        JAMA. 2006; 295: 1539-1548
        • Larson-Meyer D.E.
        • Heilbronn L.K.
        • Redman L.M.
        • et al.
        Effect of calorie restriction with or without exercise on insulin sensitivity, beta-cell function, fat cell size, and ectopic lipid in overweight subjects.
        Diabetes Care. 2006; 29: 1337-1344
        • Lefevre M.
        • Redman L.M.
        • Heilbronn L.K.
        • et al.
        Caloric restriction alone and with exercise improves CVD risk in healthy nonobese individuals.
        Atherosclerosis. 2009; 203: 206-213
        • Lane M.A.
        • Ingram D.K.
        • Cutler R.G.
        • et al.
        Dietary restriction in nonhuman primates: progress report on the NIA study.
        Ann N Y Acad Sci. 1992; 673: 36-45
        • Lane M.A.
        • Ingram D.K.
        • Roth G.S.
        Calorie restriction in nonhuman primates: effects on diabetes and cardiovascular disease risk.
        Toxicol Sci. 1999; 52: 41-48
        • Colman R.J.
        • Roecker E.B.
        • Ramsey J.J.
        • et al.
        The effect of dietary restriction on body composition in adult male and female rhesus macaques.
        Aging (Milano). 1998; 10: 83-92
        • Verdery R.B.
        • Walford R.L.
        Changes in plasma lipids and lipoproteins in humans during a 2-year period of dietary restriction in Biosphere 2.
        Arch Intern Med. 1998; 158: 900-906
        • Rezzi S.
        • Martin F.P.
        • Shanmuganayagam D.
        • et al.
        Metabolic shifts due to long-term caloric restriction revealed in nonhuman primates.
        Exp Gerontol. 2009; 44: 356-362