Short and medium-term effects of a multicomponent physical exercise program with a Mediterranean diet on bone mineral density, gait, balance, and fall risk for patients with Alzheimer disease: Randomized controlled clinical trial study protocol

Ana Silvia Puente-González, Felipe Sánchez-González, Juan Elicio Hernández-Xumet, María Carmen Sánchez-Sánchez, Fausto José Barbero-Iglesias, Roberto Méndez-Sánchez, Ana Silvia Puente-González, Felipe Sánchez-González, Juan Elicio Hernández-Xumet, María Carmen Sánchez-Sánchez, Fausto José Barbero-Iglesias, Roberto Méndez-Sánchez

Abstract

Introduction: Reduced bone mineral density and increased risk of falls are related with Alzheimer disease, and these increase likelihood of bone osteoporotic fractures causing serious complications such as disability, fear of falling, loss autonomy, decreased quality of life, and anticipated mortality in elderly patients. Gait and balance disturb are 2 factors to favor falls in elderly, and in patients with cognitive impairment, the risk of falls increases to double. Exercise and Mediterranean diet produce beneficial effects for aging, cognitive decline, and are widely recommended to reduce the effects of osteoporosis, fall risk, and related fragility fractures. The primary objective of this study is to evaluate the short and medium-term effects during 6 months, of a multicomponent physical exercise program with a Mediterranean diet on bone mineral density, fall risk, balance, and gait by a controlled clinical trial in patients with Alzheimer disease.

Methods: The study is a 6-month, randomized controlled parallel-group, single-blinded clinical trial. Institutionalized patients with Alzheimer disease will be included. The intervention group will perform a multicomponent physical exercise program in reduced groups, with a frequency of 3 sessions per week, associated with a Mediterranean diet. This program includes strength, balance, and aerobic resistance exercises, and in the main part of the session, also ludic exercises to improve agility, coordination, and balance. The control group will receive usual care. The outcomes to assess are the change of physical functions, such as gait and balance, and the change of bone mineral density by calcaneal quantitative ultrasound, during the study follow-up at 1, 3, and 6 months. This clinical trial will generate more and new evidence on the effects of a multicomponent physical exercise program and Mediterranean diet in patients with Alzheimer disease on risk of falls and osteoporotic fractures, the relation of these with bone mineral density, gait and balance, and the correlations between them.

Ethics and dissemination: This study protocol has been approved by the Ethics Committee of the University of Salamanca. The results will be published in peer-reviewed journals and disseminated in national and international conferences, to the participants and their families, and the general public through the associations of people with AD.

Trial registration id: ClínicalTrials.gov ID: NCT04439097.

Conflict of interest statement

FS-G receives honoraria from the company for his services as physiotherapist. RM-S and ASP-G received fees, from the University of Salamanca, for services rendered to THERMA SL as physiotherapist (art. 83 LOU) during 2019. For the remaining authors, no conflicts were declared.

Figures

Figure 1
Figure 1
Flowchart of participants in the study.
Figure 2
Figure 2
Structure of sessions in the multicomponent physical exercise program.

References

    1. Garre-Olmo J. Epidemiology of Alzheimer's disease and other dementias. Rev Neurol 2018;66:377–86..
    1. McGurran H, Glenn JM, Madero EN, et al. Prevention and treatment of Alzheimer's disease: biological mechanisms of exercise. J Alzheimers Dis 2019;69:311–38..
    1. Santana-Sosa E, Barriopedro MI, López-Mojares LM, et al. Exercise training is beneficial for Alzheimer's patients. Int J Sports Med 2008;29:845–50..
    1. Prince M, Wimo A, Guerchet M, et al. World Alzheimer Report 2015. The global impact of dementia an analysis of prevalence, incidence, cost and trends. Available at: . Accessed March 2, 2020.
    1. Wimo A, Guerchet M, Ali GC, et al. The worldwide costs of dementia 2015 and comparisons with 2010. Alzheimer's Dement 2017;13:1–7..
    1. Robertson DA, Savva GM, Coen RF, et al. Cognitive function in the prefrailty and frailty syndrome. J Am Geriatr Soc 2014;62:2118–24..
    1. Casas-Herrero A, Anton-Rodrigo I, Zambom-Ferraresi F, et al. Effect of a multicomponent exercise programme (VIVIFRAIL) on functional capacity in frail community elders with cognitive decline: study protocol for a randomized multicentre control trial. Trials 2019;20:362.
    1. Pu Z, Tang X, Fei Y, et al. Bone metabolic biomarkers and bone mineral density in male patients with early-stage Alzheimer's disease. Eur Geriatr Med 2020;11:403–8..
    1. Looker AC, Borrud LG, Dawson-Hughes B, et al. Osteoporosis or low bone mass at the femur neck or lumbar spine in older adults: United States , 2005–2008. NCHS Data Brief 2012;93:1–8..
    1. Laudisio A, Fontana DO, Rivera C, et al. Bone mineral density and cognitive decline in elderly women: results from the InCHIANTI study. Calcif Tissue Int 2016;98:479–88..
    1. Chang KH, Chung CJ, Lin CL, et al. Increased risk of dementia in patients with osteoporosis: a population-based retrospective cohort analysis. Age (Dordr) 2014;36:967–75..
    1. Amouzougan A, Lafaie L, Marotte H, et al. High prevalence of dementia in women with osteoporosis. Joint Bone Spine 2017;84:611–4..
    1. Bonafede M, Shi N, Barron R, et al. Predicting imminent risk for fracture in patients aged 50 or older with osteoporosis using US claims data. Arch Osteoporos 2016;11:26.
    1. Dengler-Crish CM, Ball HC, Lin L, et al. Evidence of Wnt/b-catenin alterations in brain and bone of a tauopathy mouse model of Alzheimer's disease. Neurobiol Aging 2018;67:148–58..
    1. Bailly S, Haesebaert J, Decullier E, et al. Mortality and profiles of community-dwelling fallers. Results from the EPIDOS cohort. Maturitas 2014;79:334–9..
    1. Castrillo A, Olmos LM, Rodríguez F, et al. Gait disorder in a cohort of patients with mild and moderate Alzheimer's disease. Am J Alzheimers Dis Other Demen 2016;31:257–62..
    1. Mazoteras Muñoz V, Abellan van Kan G, Cantet C, et al. Gait and balance impairments in Alzheimer disease patients. Alzheimer Dis Assoc Disord 2010;24:79–84..
    1. Wolfson L. Gait and balance dysfunction: a model of the interaction of age and disease. Neuroscientist 2001;7:178–83..
    1. Shaw FE, Bond J, Richardson DA, et al. Multifactorial intervention after a fall in older people with cognitive impairment and dementia presenting to the accident and emergency department: randomised controlled trial. BMJ 2003;326:73.
    1. Isik AT, Soysal P, Usarel C. Effects of acetylcholinesterase inhibitors on balance and gait functions and orthostatic hypotension in elderly patients with Alzheimer disease. Am J Alzheimers Dis Other Demen 2016;31:580–4..
    1. Yoon B, Choi SH, Jeong JH, et al. Balance and mobility performance along the Alzheimer's disease spectrum. J Alzheimers Dis 2020;73:633–44..
    1. Allan LM, Ballard CG, Burn DJ, et al. Prevalence and severity of gait disorders in Alzheimer's and non-Alzheimer's dementias. J Am Geriatr Soc 2005;53:1681–7..
    1. Franssen EH, Souren LE, Torossian CL, et al. Equilibrium and limb coordination in mild cognitive impairment and mild Alzheimer's disease. J Am Geriatr Soc 1999;47:463–9..
    1. Padala KP, Padala PR, Lensing SY, et al. Home-based exercise program improves balance and fear of falling in community-dwelling older adults with mild Alzheimer's disease: a pilot study. J Alzheimers Dis 2017;59:565–74..
    1. Alexander NB, Mollo JM, Giordani B, et al. Maintenance of balance, gait patterns, and obstacle clearance in Alzheimer's disease. Neurology 1995;45:908–14..
    1. Martin K, Thomson R, Blizzard L, et al. Visuospatial ability and memory are associated with falls risk in older people: a population-based study. Dement Geriatr Cogn Disord 2009;27:451–7..
    1. Tangen GG, Engedal K, Bergland A, et al. Relationships between balance and cognition in patients with subjective cognitive impairment, mild cognitive impairment, and Alzheimer disease. Phys Ther 2014;94:1123–34..
    1. Woollacott M, Shumway-Cook A. Attention and the control of posture and gait: a review of an emerging area of research. Gait Posture 2002;16:1–4..
    1. Cedervall Y, Halvorsen K, Aberg AC. A longitudinal study of gait function and characteristics of gait disturbance in individuals with Alzheimer's disease. Gait Posture 2014;39:1022–7..
    1. Manckoundia P, Taroux M, Kubicki A, et al. Impact of ambulatory physiotherapy on motor abilities of elderly subjects with Alzheimer's disease. Geriatr Gerontol Int 2014;14:167–75..
    1. Rolland Y, Pillard F, Klapouszczak A, et al. Exercise program for nursing home residents with Alzheimer's disease: a 1-year randomized, controlled trial. J Am Geriatr Soc 2007;55:158–65..
    1. Rolland Y, Abellan van Kan G, Nourhashemi F, et al. An abnormal “one-leg balance” test predicts cognitive decline during Alzheimer's disease. J Alzheimers Dis 2009;16:525–31..
    1. Braun T, Thiel C, Schulz RJ, et al. Reliability of mobility measures in older medical patients with cognitive impairment. BMC Geriatr 2019;19:20.
    1. Duncan P, Weiner D, Chandler J, et al. Functional reach: a new clinical measure of balance. J Gerontol 1990;45:M192–7..
    1. Jia RX, Liang JH, Xu Y, et al. Effects of physical activity and exercise on the cognitive function of patients with Alzheimer disease: a meta-analysis. BMC Geriatr 2019;19:181.
    1. Biazus-Sehn LF, Schuch FB, Firth J, et al. Effects of physical exercise on cognitive function of older adults with mild cognitive impairment: a systematic review and meta-analysis. Arch Gerontol Geriatr 2020;89:104048.
    1. Herrmann N, Chau SA, Kircanski I, et al. Current and emerging drug treatment options for Alzheimer's disease: a systematic review. Drugs 2011;71:2031–65..
    1. National Institute on Aging. Alzheimer's Disease Medications Fact Sheet. NIH Publication No. 18-AG-3431. 2018. Available at: . Accessed March 18, 2020.
    1. Fiuza-Luces C, Garatachea N, Berger NA, et al. Exercise is the real polyplill. Physiology (Bethesda) 2013;28:330–58..
    1. Hernández SS, Sandreschi PF, da Silva FC, et al. What are the benefits of exercise for Alzheimer's disease? A systematic review of the past 10 years. J Aging Phys Act 2015;23:659–68..
    1. Tobeiha M, Moghadasian MH, Amin N, et al. RANKL/RANK/OPG pathway: a mechanism involved in exercise-induced bone remodeling. Biomed Res Int 2020;2020:6910312.
    1. Brookmeyer R, Johnson E, Ziegler-Graham K, et al. Forecasting the global burden of Alzheimer's disease. Alzheimers Dement 2007;3:186–91..
    1. Livingston G, Sommerlad A, Orgeta V, et al. Dementia prevention, intervention, and care. Lancet 2017;390:2673–734..
    1. McMaster M, Kim S, Clare L, et al. Body, Brain, Life for Cognitive Decline (BBL-CD): protocol for a multidomain dementia risk reduction randomized controlled trial for subjective cognitive decline and mild cognitive impairment. Clin Interv Aging 2018;13:2397–406..
    1. Xu W, Tan L, Wang HF, et al. Meta-analysis of modifiable risk factors for Alzheimer's disease. J Neurol Neurosurg Psychiatry 2015;86:1299–306..
    1. Baumgart M, Snyder HM, Carrillo MC, et al. Summary of the evidence on modifiable risk factors for cognitive decline and dementia: a population-based perspective. Alzheimers Dement 2015;11:718–26..
    1. Davis C, Bryan J, Hodgson J, et al. Definition of the Mediterranean diet; a literature review. Nutrients 2015;7:9139–53..
    1. Jennings A, Mulligan AA, Khaw KT, et al. A Mediterranean diet is positively associated with bone and muscle health in a non-Mediterranean region in 25,450 men and women from EPIC-Norfolk. Nutrients 2020;12:1154.
    1. Capurso C, Bellanti F, Lo Buglio A, et al. The Mediterranean diet slows down the progression of aging and helps to prevent the onset of frailty: a narrative review. Nutrients 2019;12:35.
    1. Thompson PD, Arena R, Riebe D, et al. American College of Sports Medicine. ACSM's New preparticipation health screening recommendations from ACSM's guidelines for exercise testing and prescription, ninth edition. Curr Sports Med Rep 2013;12:215–7..
    1. World Health Organization. Global Strategy on Diet, Physical Activity and Health. Physical Activity and Older Adults. Recommended Levels of Physical Activity for Adults Aged 65 and Above. 2010. Available at: . Accessed June 20, 2020.
    1. Cadore EL, Rodriguez-Manas L, Sinclair A, et al. Effects of different exercise interventions on risk of falls, gait ability, and balance in physically frail older adults: a systematic review. Rejuvenation Res 2013;16:105–14..
    1. Barnett A, Smith B, Lord SR, et al. Community-based group exercise improves balance and reduces falls in at-risk older: a randomized controlled trial. Age Ageing 2003;32:407–14..
    1. Villareal DT, Smith GI, Sinacore DR, et al. Regular multicomponent exercise increases physical fitness and muscle protein anabolism in frail, obese, older adults. Obesity (Silver Spring) 2011;19:312–8..
    1. Liu-Ambrose T, Nagamatsu LS, Graf P, et al. Resistance training and executive functions: a 12-month randomized controlled trial. Arch Intern Med 2010;170:170–8..
    1. Cadore EL, Moneo AB, Mensat MM, et al. Positive effects of resistance training in frail elderly patients with dementia after long-term physical restraint. Age (Dordr) 2014;36:801–11..
    1. Sherrington C, Tiedemann A, Fairhall N, et al. Exercise to prevent falls in older adults: an updated meta-analysis and best practice recommendations. N S W Public Health Bull 2011;22:78–83..
    1. Burton E, Cavalheri V, Adams R, et al. Effectiveness of exercise programs to reduce falls in older people with dementia living in the community: a systematic review and meta-analysis. Clin Interv Aging 2015;10:421–34..
    1. Gonzalo-Encabo P, McNeil J, Boyne DJ, et al. Dose-response effects of exercise on bone mineral density and content in post-menopausal women. Scand J Med Sci Sports 2019;29:1121–9..
    1. Russo CR. The effects of exercise on bone. Basic concepts and implications for the prevention of fractures. Clin Cases Miner Bone Metab 2009;6:223–8..
    1. Palombaro KM, Black JD, Buchbinder R, et al. Effectiveness of exercise for managing osteoporosis in women postmenopause. Phys Ther 2013;93:1021–5..
    1. Hong AR, Kim SW. Effects of resistance exercise on bone health. Endocrinol Metab (Seoul) 2018;33:435–44..
    1. Qi Z, Liu W, Lu J. The mechanisms underlying the beneficial effects of exercise on bone remodeling: Roles of bone-derived cytokines and microRNAs. Prog Biophys Mol Biol 2016;122:131–9..
    1. Burke SM, Carron AV, Eys MA, et al. Group versus individual approach? A meta-analysis of the effectiveness of interventions to promote physical activity. Sport Exerc Psychol Rev 2006;2:1–3..
    1. Jakobsen MD, Sundstrup E, Brandt M, et al. Effect of workplace- versus home-based physical exercise on musculoskeletal pain among healthcare workers: a cluster randomized controlled trial. Scand J Work Environ Health 2015;41:153–63..
    1. Chan AW, Tetzlaff JM, Gøtzsche PC, et al. SPIRIT 2013 explanation and elaboration: guidance for protocols of clinical trials. BMJ 2013;346:e7586.
    1. Moher D, Hopewell S, Schulz KF, et al. CONSORT 2010 explanation and elaboration: updated guidelines for reporting parallel group randomised trials. BMJ 2010;340:c869.
    1. Llamas Velasco S, Llorente Ayuso L, Contador I, et al. Versiones en español del Minimental State Examination (MMSE). Cuestiones para su uso en la práctica clínica. Rev Neurol 2015;61:363–71..
    1. Izquierdo M, Rodriguez-Mañas L, Sinclair AJ. What is new in exercise regimes for frail older people: how does the erasmus vivifrail project take us forward? J Nutr Health Aging 2016;20:736–7..
    1. Freiberger E, Haberle L, Spirduso WW, et al. Long-term effects of three multicomponent exercise interventions on physical performance and fallrelated psychological outcomes in community-dwelling older adults: a randomized controlled trial. J Am Geriatr Soc 2012;60:437–46..
    1. Vieira ER, Palmer RC, Chaves PH. Prevention of falls in older people living in the community. BMJ 2016;353:i1419.
    1. Stanghelle B, Bentzen H, Giangregorio L, et al. Effect of a resistance and balance exercise programme for women with osteoporosis and vertebral fracture- study protocol for a randomized controlled trial. BMC Musculoskelet Disord 2018;19:100.
    1. Giangregorio LM, Papaioannou A, Macintyre NJ, et al. Too fit to fracture: exercise recommendations for individuals with osteoporosis or osteoporotic vertebral fracture. Osteoporos Int 2014;25:821–35..
    1. Bonaiuti D, Arioli G, Diana G, et al. SIMFER rehabilitation treatment guidelines in postmenopausal and senile osteoporosis. EuraMedicophys 2005;41:315–37..
    1. Chodzko-Zajko WJ, Proctor DN, Fiatarone Singh MA, et al. American College of Sports Medicine position stand. Exercise and physical activity for older adults. Med Sci Sports Exerc 2009;41:1510–30..
    1. Galán-Martín MA, Montero-Cuadrado F, Lluch-Girbes E, et al. Pain neuroscience education and physical exercise for patients with chronic spinal pain in primary healthcare: a randomised trial protocol. BMC Musculoskelet Disord 2019;20:505.
    1. Galan-Martin MA, Montero-Cuadrado F, Lluch-Girbes E, et al. Pain neuroscience education and physical therapeutic exercise for patients with chronic spinal pain in Spanish physiotherapy primary care: a pragmatic randomized controlled trial. J Clin Med 2020;9:1201.
    1. Reisberg B, Ferris SH, de Leon MJ, et al. The Global Deterioration Scale for assessment of primary degenerative dementia. Am J Psychiatry 1982;139:1136–9..
    1. Rothenberg RJ, Boyd JL, Holcomb JP. Quantitative ultrasound of the calcaneus as a screening tool to detect osteoporosis: different reference ranges for Caucasian women, African American women, and Caucasian men. J Clin Densitom 2004;7:101–10..
    1. Chin KY, Ima-Nirwana S. Calcaneal quantitative ultrasound as a determinant of bone health status: what properties of bone does it reflect? Int J Med Sci 2013;10:1778–83..
    1. Guglielmi G, de Terlizzi F. Quantitative ultrasound in the assessment of osteoporosis. Eur J Radiol 2009;71:425–31..
    1. Faber MJ, Bosscher RJ, van Wieringen PC. Clinimetric properties of the performance-oriented mobility assessment. Phys Ther 2006;86:944–54..
    1. Tinetti ME. Performance-oriented assessment of mobility problems in elderly patients. J Am Geriatr Soc 1986;34:119–26..
    1. Podsiadlo D, Richardson S. The timed “Up & Go”: a test of basic functional mobility for frail elderly persons. J Am Geriatr Soc 2000;48:104–5..
    1. Bischoff HA, Stahelin HB, Monsch AU, et al. Identifying a cut-off point for normal mobility: a comparison of the timed “up and go” test in community-dwelling and institutionalised elderly women. Age Ageing 2003;32:315–20..
    1. Iseme RA, McEvoy M, Kelly B, et al. A cross-sectional study of the association between autoantibodies and qualitative ultrasound index of bone in an elderly sample without clinical autoimmune disease. J Immunol Res 2018;2018:9407971.
    1. Vellas BJ, Wayne SJ, Romero L, et al. One-leg balance is an important predictor of injurious falls in older persons. J Am Geriatr Soc 1997;45:735–8..
    1. Weiner D, Duncan P, Chandler J, et al. Functional reach: a marker of physical frailty. J Am Geriatr Soc 1992;40:203–7..
    1. Vidán MT, Vellas B, Montemayor T, et al. WHO questionnaire for the study of falls in the elderly [Spanish]. Rev Esp Geriatr Gerontol 1993;28:41–8..
    1. Kuhn JE, Greenfield ML, Wojtys EM. A statistics primer. Prevalence, incidence, relative risks, and odds ratios: some epidemiologic concepts in the sports medicine literature. Am J Sports Med 1997;25:414–6..
    1. Jang JW, Kim Y, Choi YH, et al. Association of nutritional status with cognitive stage in the elderly Korean population: the Korean Brain Aging Study for the early diagnosis and prediction of Alzheimer's disease. J Clin Neurol 2019;15:292–300..
    1. Craig P, Dieppe P, Macintyre S, et al. Developing and evaluating complex interventions: the new Medical Research Council guidance. Int J Nurs Stud 2013;50:587–92..

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