The Impact of Nutrition on Cognition in the Elderly (original) (raw)
References
Lee L, Kang SA, Lee HO, Lee BH, Park JS, Kim JH, Jung IK, Park YJ, Lee JE (2001) Relationships between dietary intake and cognitive function level in Korean elderly people. Public Health 115(2):133–138 ArticlePubMedCAS Google Scholar
Requejo AM, Ortega RM, Robles F, Navia B, Faci M, Aparicio A (2003) Influence of nutrition on cognitive function in a group of elderly, independently living people. Eur J Clin Nutr 57(Suppl 1):S54–S57 ArticlePubMedCAS Google Scholar
Trichopoulou A, Costacou T, Bamia C, Trichopoulos D (2003) Adherence to a Mediterranean diet and survival in a Greek population. N Engl J Med 348(26):2599–2608 ArticlePubMed Google Scholar
Scarmeas N, Stern Y, Tang MX, Mayeux R, Luchsinger JA (2006) Mediterranean diet and risk for Alzheimer’s disease. Ann Neurol 59(6):912–921 ArticlePubMed Google Scholar
Morris MC, Evans DA, Bienias JL, Tangney CC, Bennett DA, Wilson RS, Aggarwal N, Schneider J (2003) Consumption of fish and n-3 fatty acids and risk of incident Alzheimer disease. Arch Neurol 60(7):940–946 ArticlePubMed Google Scholar
Morris MC, Evans DA, Tangney CC, Bienias JL, Wilson RS (2005) Fish consumption and cognitive decline with age in a large community study. Arch Neurol 62(12):1849–1853 ArticlePubMed Google Scholar
Kalmijn S, Launer LJ, Ott A, Witteman JC, Hofman A, Breteler MM (1997) Dietary fat intake and the risk of incident dementia in the Rotterdam Study. Ann Neurol 42(5):776–782 ArticlePubMedCAS Google Scholar
Kalmijn S, Feskens EJ, Launer LJ, Kromhout D (1997) Polyunsaturated fatty acids, antioxidants, and cognitive function in very old men. Am J Epidemiol 145(1):33–41 PubMedCAS Google Scholar
Morris MC, Evans DA, Bienias JL, Tangney CC, Bennett DA, Aggarwal N, Schneider J, Wilson RS (2003) Dietary fats and the risk of incident Alzheimer disease. Arch Neurol 60(2):194–200 ArticlePubMed Google Scholar
Solfrizzi V, Panza F, Torres F, Mastroianni F, Del Parigi A, Venezia A, Capurso A (1999) High monounsaturated fatty acids intake protects against age-related cognitive decline. Neurology 52(8):1563–1569 PubMedCAS Google Scholar
Solfrizzi V, Colacicco AM, D’Introno A, Capurso C, Torres F, Rizzo C, Capurso A, Panza F (2006) Dietary intake of unsaturated fatty acids and age-related cognitive decline: A 8.5-year follow-up of the Italian Longitudinal Study on Aging. Neurobiol Aging. Available online 26 October 2005
Solfrizzi V, Colacicco AM, D’Introno A, Capurso C, Del Parigi A, Capurso SA, Argentieri G, Capurso A, Panza F (2006) Dietary fatty acid intakes and rate of mild cognitive impairment. The Italian Longitudinal Study on Aging. Exp Gerontol 41(6):619–627 ArticlePubMedCAS Google Scholar
Whalley LJ, Fox HC, Wahle KW, Starr JM, Deary IJ (2004) Cognitive aging, childhood intelligence, and the use of food supplements: possible involvement of n-3 fatty acids. Am J Clin Nutr 80(6):1650–1657 PubMedCAS Google Scholar
Manzato E, Roselli della Rovere G, Zambon S, Romanato G, Corti MC, Sartori L, Baggio G, Crepaldi G (2003) Cognitive functions are not affected by dietary fatty acids in elderly subjects in the Pro. V.A. study population. Aging Clin Exp Res 15(1):83–86 PubMed Google Scholar
Engelhart MJ, Geerlings MI, Ruitenberg A, Van Swieten JC, Hofman A, Witteman JC, Breteler MM (2002) Diet and risk of dementia: does fat matter?: the Rotterdam Study. Neurology 59(12):1915–1921 ArticlePubMedCAS Google Scholar
White LR, Petrovitch H, Ross GW et al (2000) Brain aging and midlife tofu consumption. J Am Coll Nutr 19: 242–255 PubMedCAS Google Scholar
File SE, Jarret N, Fluck E, Duffy R, Casey K, Wiseman H (2001) Eating soya improves human memory. Psychopharmacology (Berl) 157:430–436 ArticleCAS Google Scholar
File Se, Duffy R, Wiseman H (2002) Soya improves human memory. Soy & Health. The Queen Elizabeth II Conference Center, London
Casini ML, Marelli G, Papaleo E, Ferrari A, D’Ambrosio F, Unfer V (2006) Psychological assessment of the effects of treatment with phytoestrogens on postmenopausal women: a randomized, double-blind, crossover, placebo-controlled study. Fertil Steril 85(4):972–978 ArticlePubMedCAS Google Scholar
Kritz-Silverstein D, Von Muhlen D, Barrett-Connor E, Bressel MA (2003) Isoflavones and cognitive function in older women: the SOy and Health In Aging (SOPHIA) Study. Menopause 10(3):196–202 ArticlePubMed Google Scholar
File SE, Hartley DE, Elsabagh S, Duffy R, Wiseman H (2005) Cognitive improvement after 6 weeks of soy supplements in postmenopausal women is limited to frontal lobe function. Menopause 12(2):193–201 ArticlePubMed Google Scholar
Kreijkamp-Kaspers S, Kok L, Grobbee DE, de Haan EH, Aleman A, Lampe JW, van der Schouw YT (2004) Effect of soy protein containing isoflavones on cognitive function, bone mineral density, and plasma lipids in postmenopausal women: a randomized controlled trial. JAMA 292(1):65–74 ArticlePubMedCAS Google Scholar
Stein D, Sano M Anti-oxidant drugs in the treatment and prevention of Alzheimer’s disease and cognitive loss. In: Ritchie CW, Ames DJ, Masters CL, Cummings (eds) Therapeutic strategies. Dementia Atlas Medical Publishing Ltd Hertforshire, UK, 2006 (in press)
Stampfer MJ, Kang JH, Chen J, Cherry R, Grodstein F (2005) Effects of moderate alcohol consumption on cognitive function in women. N Engl J Med 352(3):245–253 ArticlePubMedCAS Google Scholar
Leibovici D, Ritchie K, Ledesert B, Touchon J (1999) The effects of wine and tobacco consumption on cognitive performance in the elderly: a longitudinal study of relative risk. Int J Epidemiol 28(1):77–81 ArticlePubMedCAS Google Scholar
Orgogozo JM, Dartigues JF, Lafont S, Letenneur L, Commenges D, Salamon R, Renaud S, Breteler MB (1997) Wine consumption and dementia in the elderly: a prospective community study in the Bordeaux area. Rev Neurol (Paris) 153(3):185–192 CAS Google Scholar
Truelsen T, Thudium D, Gronbaek M (2002) Copenhagen City Heart Study. Amount and type of alcohol and risk of dementia: the Copenhagen City Heart Study. Neurology 59(9):1313–1319 PubMed Google Scholar
Savaskan E, Olivieri G, Meier F, Seifritz E, Wirz-Justice A, Muller-Spahn F (2003) Red wine ingredient resveratrol protects from beta-amyloid neurotoxicity. Gerontology 49(6):380–383 ArticlePubMedCAS Google Scholar
Jang JH, Surh YJ (2003) Protective effect of resveratrol on beta-amyloid-induced oxidative PC12 cell death. Free Radic Biol Med 34(8):1100–1110 ArticlePubMedCAS Google Scholar
Blass J, Gibson GE (2006) Correlations of disability and biologic alterations in Alzheimer brain and test of significance by a therapeutic trial in humans. J Alzheimers Dis 9(2):207–218 PubMed Google Scholar
Kang JH, Ascherio A, Grodstein F (2005) Fruit and vegetable consumption and cognitive decline in aging women. Ann Neurol 57(5):713–720 ArticlePubMed Google Scholar
Dai Q, Borenstein AR, Wu Y, Jackson JC, Larson EB (2006) Fruit and vegetable juices and Alzheimer’s disease: the Kame Project. Am J Med 119(9):751–759 ArticlePubMed Google Scholar
Engelhart MJ, Geerlings MI et al (2002) Dietary intake of antioxidants and risk of Alzheimer disease. JAMA 287(24): 3223–3229 ArticlePubMedCAS Google Scholar
Morris MC, Evans DA et al (2002) Dietary intake of antioxidant nutrients and the risk of incident Alzheimer disease in a biracial community study. JAMA 287(24):3230–3237 ArticlePubMedCAS Google Scholar
Morris MC, Evans DA, Tangney CC, Bienias JL, Wilson RS, Aggarwal NT, Scherr PA (2005) Relation of the tocopherol forms to incident Alzheimer disease and to cognitive change. Am J Clin Nutr 81(2):508–514 PubMedCAS Google Scholar
Grodstein F, Chen J, Willett WC (2003) High-dose antioxidant supplements and cognitive function in community-dwelling elderly women. Am J Clin Nutr 77(4):975–984 PubMedCAS Google Scholar
Petersen RC, Thomas RG, Grundman M, Bennett D, Doody R, Ferris S, Galasko D, Jin S, Kaye J, Levey A, Pfeiffer E, Sano M, van Dyck CH, Thal LJ (2005) Alzheimer’s Disease Cooperative Study Group. Vitamin E and donepezil for the treatment of mild cognitive impairment. N Engl J Med 352(23):2379–2388 (Epub 2005 Apr 13) ArticlePubMedCAS Google Scholar
Thomas A, Iacono D, Bonanni L, D’Andreamatteo G, Onofrj M (2001) Donepezil, rivastigmine, and vitamin E in Alzheimer disease: a combined P300 event-related potentials/neuropsychologic evaluation over 6 months. Clin Neuropharmacol 24(1):31–42 ArticlePubMedCAS Google Scholar
Onofrj M, Thomas A, Luciano AL, Iacono D, Di Rollo A, D’Andreamatteo G, Di Iorio A (2002) Donepezil versus vitamin E in Alzheimer’s disease: Part 2: mild versus moderate-severe Alzheimer’s disease. Clin Neuropharmacol 25(4):207–215 ArticlePubMed Google Scholar
Thal LJ, Grundman M, Berg J, Ernstrom K, Margolin R, Pfeiffer E, Weiner MF, Zamrini E, Thomas RG (2003) Idebenone treatment fails to slow cognitive decline in Alzheimer’s disease. Neurology 61(11):1498–1502 PubMedCAS Google Scholar
Gutzmann H, Kuhl KP, Hadler D, Rapp MA (2002) Safety and efficacy of idebenone versus tacrine in patients with Alzheimer’s disease: results of a randomized, double-blind, parallel-group multicenter study. Pharmacopsychiatry 35(1):12–18 ArticlePubMedCAS Google Scholar
Thomas A, Iacono D, Bonanni L, D’Andreamatteo G, Onofrj M (2001) Donepezil, rivastigmine, and vitamin E in Alzheimer disease: a combined P300 event-related potentials/neuropsychologic evaluation over 6 months. Clin Neuropharmacol 24(1):31–42 ArticlePubMedCAS Google Scholar
Miller ER 3rd, Pastor-Barriuso R, Dalal D, Riemersma RA, Appel LJ, Guallar E (2005) Meta-analysis: high-dosage vitamin E supplementation may increase all-cause mortality. Ann Intern Med 142(1):37–46 (Epub 2004 Nov 10) PubMedCAS Google Scholar
Lonn E, Bosch J, Yusuf S, Sheridan P, Pogue J, Arnold JM, Ross C, Arnold A,Sleight P, Probstfield J, Dagenais GR (2005) HOPE and HOPE-TOO Trial Investigators. Effects of long-term vitamin E supplementation on cardiovascular events and cancer: a randomized controlled trial. JAMA 293(11):1338–1347 ArticlePubMed Google Scholar
Wannamethee SG, Lowe GD, Rumley A, Bruckdorfer KR, Whincup PH (2006) Associations of vitamin C status, fruit and vegetable intakes, and markers of inflammation and hemostasis. Am J Clin Nutr 83(3):567–574 (quiz 726–727) PubMedCAS Google Scholar
de Craen AJ, Gussekloo J, Vrijsen B, Westendorp RG (2005) Meta-analysis of nonsteroidal antiinflammatory drug use and risk of dementia. Am J Epidemiol 161(2):114–120 ArticlePubMed Google Scholar
Durga J, van Boxtel MP, Schouten EG, Bots ML, Kok FJ, Verhoef P (2006) Folate and the methylenetetrahydrofolate reductase 677C→T mutation correlate with cognitive performance. Neurobiol Aging 27(2):334–343 (Epub 2005 Feb 24) ArticlePubMedCAS Google Scholar
Ramos MI, Allen LH, Mungas DM, Jagust WJ, Haan MN, Green R, Miller JW (2005) Low folate status is associated with impaired cognitive function and dementia in the Sacramento Area Latino Study on Aging. Am J Clin Nutr 82(6):1346–1352 PubMedCAS Google Scholar
Mooijaart SP, Gussekloo J, Frolich M, Jolles J, Stott DJ, Westendorp RG, de Craen AJ (2005) Homocysteine, vitamin B-12, and folic acid and the risk of cognitive decline in old age: the Leiden 85-Plus study. Am J Clin Nutr 82(4):866–871 PubMedCAS Google Scholar
Quadri P, Fragiacomo C, Pezzati R, Zanda E, Tettamanti M, Lucca U (2005) Homocysteine and B vitamins in mild cognitive impairment and dementia. Clin Chem Lab Med 43(10):1096–1100 ArticlePubMedCAS Google Scholar
Tucker KL, Qiao N, Scott T, Rosenberg I, Spiro A 3rd (2005) High homocysteine and low B vitamins predict cognitive decline in aging men: the Veterans Affairs Normative Aging Study. Am J Clin Nutr. 82(3):627–635 PubMedCAS Google Scholar
Bryan J, Calvaresi E (2004) Associations between dietary intake of folate and vitamins B-12 and B-6 and self-reported cognitive function and psychological well-being in Australian men and women in midlife. J Nutr Health Aging 8(4):226–232 PubMedCAS Google Scholar
Morris MC, Evans DA, Bienias JL, Scherr PA, Tangney CC, Hebert LE, Bennett DA, Wilson RS, Aggarwal N (2004) Dietary niacin and the risk of incident Alzheimer’s disease and of cognitive decline. J Neurol Neurosurg Psychiatry 75(8):1093–1099 ArticlePubMedCAS Google Scholar
Quadri P, Fragiacomo C, Pezzati R, Zanda E, Forloni G, Tettamanti M, Lucca U (2004) Homocysteine, folate, and vitamin B-12 in mild cognitive impairment, Alzheimer disease, and vascular dementia. Am J Clin Nutr 80(1):114–122 PubMedCAS Google Scholar
Whyte EM, Mulsant BH, Butters MA, Qayyum M, Towers A, Sweet RA, Klunk W, Wisniewski S, DeKosky ST (2002) Cognitive and behavioral correlates of low vitamin B12 levels in elderly patients with progressive dementia. Am J Geriatr Psychiatry 10(3):321–327 ArticlePubMed Google Scholar
Duthie SJ, Whalley LJ, Collins AR, Leaper S, Berger K, Deary IJ (2002) Homocysteine, B vitamin status, and cognitive function in the elderly. Am J Clin Nutr 75(5):908–913 PubMedCAS Google Scholar
Robins Wahlin TB, Wahlin A, Winblad B, Backman L (2001) The influence of serum vitamin B12 and folate status on cognitive functioning in very old age. Biol Psychol 56(3):247–265 ArticlePubMedCAS Google Scholar
Wang HX, Wahlin A, Basun H, Fastbom J, Winblad B, Fratiglioni L (2001) Vitamin B(12) and folate in relation to the development of Alzheimer’s disease. Neurology 56(9):1188–1194 PubMedCAS Google Scholar
Ravaglia G, Forti P, Maioli F, Vettori C, Grossi G, Bargossi AM, Caldarera M, Franceschi C, Facchini A, Mariani E, Cavalli G (2000) Elevated plasma homocysteine levels in centenarians are not associated with cognitive impairment. Mech Ageing Dev 121(1–3):251–261 PubMedCAS Google Scholar
Meins W, Muller-Thomsen T, Meier-Baumgartner HP (2000) Subnormal serum vitamin B12 and behavioural and psychological symptoms in Alzheimer’s disease. Int J Geriatr Psychiatry 15(5):415–418 ArticlePubMedCAS Google Scholar
Lindeman RD, Romero LJ, Koehler KM, Liang HC, LaRue A, Baumgartner RN, Garry PJ (2000) Serum vitamin B12, C and folate concentrations in the New Mexico elder health survey: correlations with cognitive and affective functions. J Am Coll Nutr 19(1):68–76 PubMedCAS Google Scholar
Morris MC, Evans DA, Schneider JA, Tangney CC, Bienias JL, Aggarwal NT (2006) Dietary folate and vitamins B-12 and B-6 not associated with incident Alzheimer’s disease. J Alzheimers Dis 9(4):435–443 PubMed Google Scholar
Bryan J, Calvaresi E, Hughes D (2002) Short-term folate, vitamin B-12 or vitamin B-6 supplementation slightly affects memory performance but not mood in women of various ages. J Nutr 132(6):1345–1356 PubMedCAS Google Scholar
Wolters M, Hickstein M, Flintermann A, Tewes U, Hahn A (2005) Cognitive performance in relation to vitamin status in healthy elderly German women-the effect of 6-month multivitamin supplementation. Prev Med 41(1):253–259 ArticlePubMed Google Scholar
Salas-Salvado J, Torres M, Planas M, Altimir S, Pagan C, Gonzalez ME, Johnston S, Puiggros C, Bonada A, Garcia-Lorda P (2005) Effect of oral administration of a whole formula diet on nutritional and cognitive status in patients with Alzheimer’s disease. Clin Nutr 24(3):390–397 ArticlePubMedCAS Google Scholar
Wouters-Wesseling W, Wagenaar LW, Rozendaal M, Deijen JB, de Groot LC, Bindels JG, van Staveren WA (2005) Effect of an enriched drink on cognitive function in frail elderly persons. J Gerontol A Biol Sci Med Sci 60(2):265–270 PubMed Google Scholar
Bergmann C, Sano M (2006) Cardiac risk factors and potential treatments in Alzheimer’s disease. Neurol Res 28(6):595–604 ArticlePubMed Google Scholar